-
1
-
-
0000155801
-
Phenomenology of an inducible mutagenic DNA repair pathway in Escherichia coli: SOS repair hypothesis
-
Radman M, Sherman S, Miller M, Lawrence C, Tabor WH, Springfield IL, Thomas CC. Phenomenology of an inducible mutagenic DNA repair pathway in Escherichia coli: SOS repair hypothesis. Molecular and Environmental aspects of mutagenesis 1974, 128-142.
-
(1974)
Molecular and Environmental aspects of mutagenesis
, pp. 128-142
-
-
Radman, M.1
Sherman, S.2
Miller, M.3
Lawrence, C.4
Tabor, W.H.5
Springfield, I.L.6
Thomas, C.C.7
-
2
-
-
19344374975
-
Error-prone DNA repair and translesion DNA synthesis: II: The inducible SOS hypothesis
-
Bridges BA. Error-prone DNA repair and translesion DNA synthesis: II: The inducible SOS hypothesis. DNA Repair 2005, 4:725-739.
-
(2005)
DNA Repair
, vol.4
, pp. 725-739
-
-
Bridges, B.A.1
-
3
-
-
0027299142
-
Two complementary approaches to study peroxisome biogenesis in Saccharomyces cerevisiae: Forward and reversed genetics
-
Kunau WH, Beyer A, Franken T, Götte K, Marzioch M, Saidowsky J, Skaletz-Rorowski A, Wiebel FF. Two complementary approaches to study peroxisome biogenesis in Saccharomyces cerevisiae: Forward and reversed genetics. Biochimie 1993, 75:209-224.
-
(1993)
Biochimie
, vol.75
, pp. 209-224
-
-
Kunau, W.H.1
Beyer, A.2
Franken, T.3
Götte, K.4
Marzioch, M.5
Saidowsky, J.6
Skaletz-Rorowski, A.7
Wiebel, F.F.8
-
4
-
-
5144223072
-
Comparative genomics of the FtsK-HerA superfamily of pumping ATPases: Implications for the origins of chromosome segregation, cell division and viral capsid packaging
-
Iyer LM, Makarova KS, Koonin EV, Aravind L. Comparative genomics of the FtsK-HerA superfamily of pumping ATPases: Implications for the origins of chromosome segregation, cell division and viral capsid packaging. Nucleic Acids Res 2004, 32:5260-5279.
-
(2004)
Nucleic Acids Res
, vol.32
, pp. 5260-5279
-
-
Iyer, L.M.1
Makarova, K.S.2
Koonin, E.V.3
Aravind, L.4
-
5
-
-
34147123766
-
DNA packaging and delivery machines in tailed bacteriophages
-
Johnson JE, Chiu W. DNA packaging and delivery machines in tailed bacteriophages. Curr Opin Struct Biol 2007, 17:237-243.
-
(2007)
Curr Opin Struct Biol
, vol.17
, pp. 237-243
-
-
Johnson, J.E.1
Chiu, W.2
-
6
-
-
17044440108
-
Virus maturation: Dynamics and mechanism of a stabilizing structural transition that leads to infectivity
-
Steven AC, Heymann JB, Cheng N, Trus BL, Conway JF. Virus maturation: Dynamics and mechanism of a stabilizing structural transition that leads to infectivity. Curr Opin Struct Biol 2005, 15:227-236.
-
(2005)
Curr Opin Struct Biol
, vol.15
, pp. 227-236
-
-
Steven, A.C.1
Heymann, J.B.2
Cheng, N.3
Trus, B.L.4
Conway, J.F.5
-
7
-
-
0032582665
-
Assembly of a tailed bacterial virus and its genome release studied in three dimensions
-
Tao Y, Olson NH, Xu W, Anderson DL, Rossmann MG, Baker TS. Assembly of a tailed bacterial virus and its genome release studied in three dimensions. Cell 1998, 95:431-437.
-
(1998)
Cell
, vol.95
, pp. 431-437
-
-
Tao, Y.1
Olson, N.H.2
Xu, W.3
Anderson, D.L.4
Rossmann, M.G.5
Baker, T.S.6
-
9
-
-
27144474906
-
Rebuilt AAA + motors reveal operating principles for ATP-fuelled machines
-
Martin A, Baker TA, Sauer RT. Rebuilt AAA + motors reveal operating principles for ATP-fuelled machines. Nature 2005, 437:1115-1120.
-
(2005)
Nature
, vol.437
, pp. 1115-1120
-
-
Martin, A.1
Baker, T.A.2
Sauer, R.T.3
-
10
-
-
84884504887
-
Discovery of a new motion mechanism of biomotors similar to the earth revolving around the sun without rotation
-
Guo P, Schwartz C, Haak J, Zhao Z. Discovery of a new motion mechanism of biomotors similar to the earth revolving around the sun without rotation. Virology 2013, 446:133-143.
-
(2013)
Virology
, vol.446
, pp. 133-143
-
-
Guo, P.1
Schwartz, C.2
Haak, J.3
Zhao, Z.4
-
11
-
-
0023225629
-
A small viral RNA is required for in vitro packaging of bacteriophage phi29 DNA
-
Guo P, Erickson S, Anderson D. A small viral RNA is required for in vitro packaging of bacteriophage phi29 DNA. Science 1987, 236:690-694.
-
(1987)
Science
, vol.236
, pp. 690-694
-
-
Guo, P.1
Erickson, S.2
Anderson, D.3
-
12
-
-
84880948085
-
Ultrastable pRNA hexameric ring gearing hexameric phi29 DNA-packaging motor by revolving without rotating and coiling
-
Schwartz C, Guo P. Ultrastable pRNA hexameric ring gearing hexameric phi29 DNA-packaging motor by revolving without rotating and coiling. Curr Opin Biotechnol 2013, 24:581-590.
-
(2013)
Curr Opin Biotechnol
, vol.24
, pp. 581-590
-
-
Schwartz, C.1
Guo, P.2
-
13
-
-
0036301072
-
Detailed architecture of a DNA translocating machine: the high-resolution structure of the bacteriophage φ29 connector particle
-
Guasch A, Pous J, Ibarra B, Gomis-Rüth FX, Valpuesta JM, Sousa N, Carrascosa JL, Coll M. Detailed architecture of a DNA translocating machine: the high-resolution structure of the bacteriophage φ29 connector particle. J Mol Biol 2002, 315:663-676.
-
(2002)
J Mol Biol
, vol.315
, pp. 663-676
-
-
Guasch, A.1
Pous, J.2
Ibarra, B.3
Gomis-Rüth, F.X.4
Valpuesta, J.M.5
Sousa, N.6
Carrascosa, J.L.7
Coll, M.8
-
14
-
-
0022927155
-
Computer graphic display method for visualizing three-dimensional biological structures
-
Jimenez J, Santisteban A, Carazo JM, Carrascosa JL. Computer graphic display method for visualizing three-dimensional biological structures. Science 1986, 232:1113-1115.
-
(1986)
Science
, vol.232
, pp. 1113-1115
-
-
Jimenez, J.1
Santisteban, A.2
Carazo, J.M.3
Carrascosa, J.L.4
-
15
-
-
84896522348
-
Elastic properties and heterogeneous stiffness of the phi29 motor connector channel
-
Kumar R, Grubmüller H. Elastic properties and heterogeneous stiffness of the phi29 motor connector channel. Biophys J 2014, 106:1338-1348.
-
(2014)
Biophys J
, vol.106
, pp. 1338-1348
-
-
Kumar, R.1
Grubmüller, H.2
-
16
-
-
84879785627
-
The ATPase of the phi29 DNA packaging motor is a member of the hexameric AAA+ superfamily
-
Schwartz C, De Donatis GM, Fang H, Guo P. The ATPase of the phi29 DNA packaging motor is a member of the hexameric AAA+ superfamily. Virology 2013, 443:20-27.
-
(2013)
Virology
, vol.443
, pp. 20-27
-
-
Schwartz, C.1
De Donatis, G.M.2
Fang, H.3
Guo, P.4
-
17
-
-
84878292282
-
Mechanism of one-way traffic of hexameric Phi19 DNA packaging motor with four electropositive relaying layers facilitating antiparallel revolution
-
Zhao Z, Khisamutdinov E, Schwartz C, Guo P. Mechanism of one-way traffic of hexameric Phi19 DNA packaging motor with four electropositive relaying layers facilitating antiparallel revolution. ACS Nano 2013, 7:4082-4092.
-
(2013)
ACS Nano
, vol.7
, pp. 4082-4092
-
-
Zhao, Z.1
Khisamutdinov, E.2
Schwartz, C.3
Guo, P.4
-
18
-
-
84859298657
-
Sequential action of ATPase, ATP, ADP, Pi and dsDNA in procapsid-free system to enlighten mechanism in viral dsDNA packaging
-
Schwartz C, Fang H, Huang L, Guo P. Sequential action of ATPase, ATP, ADP, Pi and dsDNA in procapsid-free system to enlighten mechanism in viral dsDNA packaging. Nucleic Acids Res 2012, 40:2577-2586.
-
(2012)
Nucleic Acids Res
, vol.40
, pp. 2577-2586
-
-
Schwartz, C.1
Fang, H.2
Huang, L.3
Guo, P.4
-
19
-
-
0031060313
-
Magnesium-induced conformational change of packaging RNA for procapsid recognition and binding during phage phi29 DNA encapsidation
-
Chen C, Guo P. Magnesium-induced conformational change of packaging RNA for procapsid recognition and binding during phage phi29 DNA encapsidation. J Virol 1997, 71:495-500.
-
(1997)
J Virol
, vol.71
, pp. 495-500
-
-
Chen, C.1
Guo, P.2
-
20
-
-
58749087869
-
Intersubunit coordination in a homomeric ring ATPase
-
Moffitt JR, Chemla YR, Aathavan K, Grimes S, Jardine PJ, Anderson DL, Bustamante C. Intersubunit coordination in a homomeric ring ATPase. Nature 2009, 457:446-450.
-
(2009)
Nature
, vol.457
, pp. 446-450
-
-
Moffitt, J.R.1
Chemla, Y.R.2
Aathavan, K.3
Grimes, S.4
Jardine, P.J.5
Anderson, D.L.6
Bustamante, C.7
-
21
-
-
0023660940
-
Prohead and DNA-gp3-dependent ATPase activity of the DNA packaging protein gp16 of bacteriophage φ29
-
Guo P, Peterson C, Anderson D. Prohead and DNA-gp3-dependent ATPase activity of the DNA packaging protein gp16 of bacteriophage φ29. J Mol Biol 1987, 197:229-236.
-
(1987)
J Mol Biol
, vol.197
, pp. 229-236
-
-
Guo, P.1
Peterson, C.2
Anderson, D.3
-
22
-
-
57649228017
-
The structure of the Phage T4 DNA packaging motor suggests a mechanism dependent on electrostatic forces
-
Sun S, Kondabagil K, Draper B, Alam TI, Bowman VD, Bowman VD, Zhang Z, Hegde S, Fokine A, Rossmann MG, Rao VB. The structure of the Phage T4 DNA packaging motor suggests a mechanism dependent on electrostatic forces. Cell 2008, 135:251-1262.
-
(2008)
Cell
, vol.135
, pp. 251-1262
-
-
Sun, S.1
Kondabagil, K.2
Draper, B.3
Alam, T.I.4
Bowman, V.D.5
Bowman, V.D.6
Zhang, Z.7
Hegde, S.8
Fokine, A.9
Rossmann, M.G.10
Rao, V.B.11
-
23
-
-
33746987484
-
Double-stranded DNA translocation: Structure and mechanism of hexameric FtsK
-
Massey TH, Mercogliano CP, Yates J, Sherratt DJ, Löwe J. Double-stranded DNA translocation: Structure and mechanism of hexameric FtsK. Mol Cell 2006, 23:457-469.
-
(2006)
Mol Cell
, vol.23
, pp. 457-469
-
-
Massey, T.H.1
Mercogliano, C.P.2
Yates, J.3
Sherratt, D.J.4
Löwe, J.5
-
24
-
-
84879787373
-
Revolution rather than rotation of AAA+ hexameric phi29 nanomotor for viral dsDNA packaging without coiling
-
Schwartz C, De Donatis GM, Zhang H, Fang H, Guo P. Revolution rather than rotation of AAA+ hexameric phi29 nanomotor for viral dsDNA packaging without coiling. Virology 2013, 443:28-39.
-
(2013)
Virology
, vol.443
, pp. 28-39
-
-
Schwartz, C.1
De Donatis, G.M.2
Zhang, H.3
Fang, H.4
Guo, P.5
-
25
-
-
54949139647
-
Inducible SOS response system of DNA repair and mutagenesis in Escherichia coli
-
Janion C. Inducible SOS response system of DNA repair and mutagenesis in Escherichia coli. Int J Biol Sci 2008, 23:338-344.
-
(2008)
Int J Biol Sci
, vol.23
, pp. 338-344
-
-
Janion, C.1
-
26
-
-
0001537072
-
Induction of mutation in a bacterial virus
-
Weigle J. Induction of mutation in a bacterial virus. Proc Natl Acad Sci U S A 1953, 39:628-636.
-
(1953)
Proc Natl Acad Sci U S A
, vol.39
, pp. 628-636
-
-
Weigle, J.1
-
27
-
-
0001475218
-
The transfer of irradiation elicited induction in a lysogenic organism
-
Borek E, Ryan A. The transfer of irradiation elicited induction in a lysogenic organism. Proc Natl Acad Sci 1958, 44:374-377.
-
(1958)
Proc Natl Acad Sci
, vol.44
, pp. 374-377
-
-
Borek, E.1
Ryan, A.2
-
28
-
-
0014219069
-
Transduction studies on the role of a rec+ gene in the ultraviolet induction of prophage lambda
-
Hertman I, Luria SE. Transduction studies on the role of a rec+ gene in the ultraviolet induction of prophage lambda. J Mol Biol 1967, 23:117-133.
-
(1967)
J Mol Biol
, vol.23
, pp. 117-133
-
-
Hertman, I.1
Luria, S.E.2
-
29
-
-
0015012109
-
Ultraviolet reactivation and ultraviolet mutagenesis of lambda in different genetic systems
-
Defais M, Fauquet P, Radman M, Errera M. Ultraviolet reactivation and ultraviolet mutagenesis of lambda in different genetic systems. Virology 1971, 43:495-503.
-
(1971)
Virology
, vol.43
, pp. 495-503
-
-
Defais, M.1
Fauquet, P.2
Radman, M.3
Errera, M.4
-
30
-
-
0019840804
-
Function of nucleoside triphosphate and polynucleotide in Escherichia coli recA protein-directed cleavage of phage lambda repressor
-
Craig NL, Roberts JW. Function of nucleoside triphosphate and polynucleotide in Escherichia coli recA protein-directed cleavage of phage lambda repressor. J Biol Chem 1981, 256:8039-8044.
-
(1981)
J Biol Chem
, vol.256
, pp. 8039-8044
-
-
Craig, N.L.1
Roberts, J.W.2
-
31
-
-
0014452955
-
Ultraviolet-induced mutation and DNA repair
-
Witkin EM. Ultraviolet-induced mutation and DNA repair. Annu Rev Microbiol 1969, 23:487-514.
-
(1969)
Annu Rev Microbiol
, vol.23
, pp. 487-514
-
-
Witkin, E.M.1
-
32
-
-
0013915149
-
Three loci in Escerichia coli K-12 that control the excision of pyrimidine dimers and certain other mutagen products from DNA
-
Howard-Flanders P, Boyce RP, Theriot L. Three loci in Escerichia coli K-12 that control the excision of pyrimidine dimers and certain other mutagen products from DNA. Genetics 1966, 53:1119-1136.
-
(1966)
Genetics
, vol.53
, pp. 1119-1136
-
-
Howard-Flanders, P.1
Boyce, R.P.2
Theriot, L.3
-
33
-
-
0025810994
-
Mechanism of specific LexA cleavage: Autodigestion and the role of RecA coprotease
-
Little JW. Mechanism of specific LexA cleavage: Autodigestion and the role of RecA coprotease. Biochimie 1991, 73:411-421.
-
(1991)
Biochimie
, vol.73
, pp. 411-421
-
-
Little, J.W.1
-
35
-
-
0035023305
-
Comparative gene expression profiles following UV exposure in wilde-type and SOS-deficient Escherichia coli
-
Courcelle J, Khodursky A, Peter B, Brown PO, Hanawalt PC. Comparative gene expression profiles following UV exposure in wilde-type and SOS-deficient Escherichia coli. Genetics 2001, 158:41-64.
-
(2001)
Genetics
, vol.158
, pp. 41-64
-
-
Courcelle, J.1
Khodursky, A.2
Peter, B.3
Brown, P.O.4
Hanawalt, P.C.5
-
36
-
-
0038401982
-
Identification of additional genes belonging to the LexA regulon in Escherichia coli
-
de Henestrosa AR F, Ogi T, Aoyagi S, Chafin D, Hayes JJ, Ohmori H, Woodgate R. Identification of additional genes belonging to the LexA regulon in Escherichia coli. Mol Microbiol 2000, 35:1560-1572.
-
(2000)
Mol Microbiol
, vol.35
, pp. 1560-1572
-
-
de Henestrosa AR, F.1
Ogi, T.2
Aoyagi, S.3
Chafin, D.4
Hayes, J.J.5
Ohmori, H.6
Woodgate, R.7
-
37
-
-
0018605087
-
Identification of the lexA gene product of Escherichia coli K-12
-
Little JW, Harper JE. Identification of the lexA gene product of Escherichia coli K-12. Proc Natl Acad Sci 1979, 76:6147-6151.
-
(1979)
Proc Natl Acad Sci
, vol.76
, pp. 6147-6151
-
-
Little, J.W.1
Harper, J.E.2
-
38
-
-
33847795537
-
Regulation of bacterial RecA protein function
-
Cox MM. Regulation of bacterial RecA protein function. Crit Rev Biochem Mol Biol 2007, 42:41-63.
-
(2007)
Crit Rev Biochem Mol Biol
, vol.42
, pp. 41-63
-
-
Cox, M.M.1
-
39
-
-
44349162159
-
Mechanism of homologous recombination from the RecA-ssDNA/dsDNA structures
-
Chen Z, Yang H, Pavletich NP. Mechanism of homologous recombination from the RecA-ssDNA/dsDNA structures. Nature 2008, 453:489-494.
-
(2008)
Nature
, vol.453
, pp. 489-494
-
-
Chen, Z.1
Yang, H.2
Pavletich, N.P.3
-
40
-
-
35449007348
-
Aeons of distress: an evolutionary perspective on the bacterial SOS response
-
Erill I, Campoy S, Barbé J. Aeons of distress: an evolutionary perspective on the bacterial SOS response. FEMS Microbiol Rev 2007, 31:637-656.
-
(2007)
FEMS Microbiol Rev
, vol.31
, pp. 637-656
-
-
Erill, I.1
Campoy, S.2
Barbé, J.3
-
42
-
-
0034602330
-
Role of Bacillus subtilis SpoIIIE in DNA transport across the mother cell-prespore division septum
-
Bath J, Wu LJ, Errington J, Wang JC. Role of Bacillus subtilis SpoIIIE in DNA transport across the mother cell-prespore division septum. Science 2000, 5493:995-997.
-
(2000)
Science
, vol.5493
, pp. 995-997
-
-
Bath, J.1
Wu, L.J.2
Errington, J.3
Wang, J.C.4
-
43
-
-
0035252083
-
The bacterial conjugation protein TrwB resembles ring helicases and F1-ATPase
-
Gomis-Ruth FX, Moncalian G, Perez-Luque R, Gonzalez A, Cabezon E, de la Cruz F, Coll M. The bacterial conjugation protein TrwB resembles ring helicases and F1-ATPase. Nature 2001, 409:637-641.
-
(2001)
Nature
, vol.409
, pp. 637-641
-
-
Gomis-Ruth, F.X.1
Moncalian, G.2
Perez-Luque, R.3
Gonzalez, A.4
Cabezon, E.5
de la Cruz, F.6
Coll, M.7
-
44
-
-
84873108850
-
Genetic manipulation in Sulfolobus islandicus and functional analysis of DNA repair genes
-
Zhang C, Tian B, Li S, Ao X, Dalgaard K, Gökce S, Liang Y, She Q. Genetic manipulation in Sulfolobus islandicus and functional analysis of DNA repair genes. Biochem Soc Trans 2013, 41:405-410.
-
(2013)
Biochem Soc Trans
, vol.41
, pp. 405-410
-
-
Zhang, C.1
Tian, B.2
Li, S.3
Ao, X.4
Dalgaard, K.5
Gökce, S.6
Liang, Y.7
She, Q.8
-
45
-
-
84867538324
-
Wing Richard A, Eliason William K, Wang J, Steitz Thomas A: The hexameric helicase DnaB adopts a nonplanar conformation during translocation
-
Itsathitphaisarn O. Wing Richard A, Eliason William K, Wang J, Steitz Thomas A: The hexameric helicase DnaB adopts a nonplanar conformation during translocation. Cell 2012, 151:267-277.
-
(2012)
Cell
, vol.151
, pp. 267-277
-
-
Itsathitphaisarn, O.1
-
46
-
-
0033548710
-
DnaB from Thermus aquaticus unwinds forked duplex DNA with an asymmetric tail length dependence
-
Kaplan DL, Steitz TA. DnaB from Thermus aquaticus unwinds forked duplex DNA with an asymmetric tail length dependence. J Biol Chem 1999, 274:6889-6897.
-
(1999)
J Biol Chem
, vol.274
, pp. 6889-6897
-
-
Kaplan, D.L.1
Steitz, T.A.2
-
47
-
-
0022977660
-
The Escherichia coli dnaB replication protein is a DNA helicase
-
LeBowitz JH, McMacken R. The Escherichia coli dnaB replication protein is a DNA helicase. J Biol Chem 1986, 261:4738-4748.
-
(1986)
J Biol Chem
, vol.261
, pp. 4738-4748
-
-
LeBowitz, J.H.1
McMacken, R.2
-
48
-
-
0029995337
-
Processing the holliday junction in homologous recombination
-
Shinagawa H, Iwasaki H. Processing the holliday junction in homologous recombination. Trends Biochem Sci 1996, 21:107-111.
-
(1996)
Trends Biochem Sci
, vol.21
, pp. 107-111
-
-
Shinagawa, H.1
Iwasaki, H.2
-
49
-
-
0028839886
-
A new Escherichia coli cell division gene, ftsK
-
Begg KJ, Dewar SJ, Donachie WD. A new Escherichia coli cell division gene, ftsK. J Bacteriol 1995, 177:6211-6222.
-
(1995)
J Bacteriol
, vol.177
, pp. 6211-6222
-
-
Begg, K.J.1
Dewar, S.J.2
Donachie, W.D.3
-
50
-
-
0030923499
-
A mutation in the ftsK gene of Escherichia coli affects cell-cell separation, stationary-phase survival, stress adaptation, and expression of the gene encoding the stress protein UspA
-
Diez AA, Farewell A, Nannmark U, Nyström T. A mutation in the ftsK gene of Escherichia coli affects cell-cell separation, stationary-phase survival, stress adaptation, and expression of the gene encoding the stress protein UspA. J Bacteriol 1997, 179:5878-5883.
-
(1997)
J Bacteriol
, vol.179
, pp. 5878-5883
-
-
Diez, A.A.1
Farewell, A.2
Nannmark, U.3
Nyström, T.4
-
51
-
-
0031949032
-
FtsK is an essential cell division protein that is localized to the septum and induced as part of the SOS response
-
Wang L, Lutkenhaus J. FtsK is an essential cell division protein that is localized to the septum and induced as part of the SOS response. Mol Microbiol 1998, 29:731-740.
-
(1998)
Mol Microbiol
, vol.29
, pp. 731-740
-
-
Wang, L.1
Lutkenhaus, J.2
-
52
-
-
0033722463
-
The SOS promoter dinH is essential for ftsK transcription during cell division
-
Dorazi R, Dewar SJ. The SOS promoter dinH is essential for ftsK transcription during cell division. Microbiology 2000, 146:2891-2899.
-
(2000)
Microbiology
, vol.146
, pp. 2891-2899
-
-
Dorazi, R.1
Dewar, S.J.2
-
53
-
-
0036187422
-
FtsK: Maxwell's demon?
-
Donachie WD. FtsK: Maxwell's demon?. Mol Cell 2002, 9:206-207.
-
(2002)
Mol Cell
, vol.9
, pp. 206-207
-
-
Donachie, W.D.1
-
55
-
-
0033457304
-
Conservation of xer site-specific recombination genes in bacteria
-
Recchia GD, Sherratt DJ. Conservation of xer site-specific recombination genes in bacteria. Mol Microbiol 1999, 34:1146-1148.
-
(1999)
Mol Microbiol
, vol.34
, pp. 1146-1148
-
-
Recchia, G.D.1
Sherratt, D.J.2
-
56
-
-
0025945415
-
Escherichia coli XerC recombinase is required for chromosomal segregation at cell division
-
Blakely G, Colloms S, May G, Burke M, Sherratt D. Escherichia coli XerC recombinase is required for chromosomal segregation at cell division. New Biol 1991, 3:789-798.
-
(1991)
New Biol
, vol.3
, pp. 789-798
-
-
Blakely, G.1
Colloms, S.2
May, G.3
Burke, M.4
Sherratt, D.5
-
57
-
-
0027422093
-
Two related recombinases are required for site-specific recombination at dif and cer in E. coli K12
-
Blakely G, May G, McCulloch R, Arciszewska LK, Burke M, Lovett ST, Sherratt DJ. Two related recombinases are required for site-specific recombination at dif and cer in E. coli K12. Cell 1993, 75:351-361.
-
(1993)
Cell
, vol.75
, pp. 351-361
-
-
Blakely, G.1
May, G.2
McCulloch, R.3
Arciszewska, L.K.4
Burke, M.5
Lovett, S.T.6
Sherratt, D.J.7
-
58
-
-
0025602270
-
Recombination at ColE1 cer requires the Escherichia coli xerC gene product, a member of the lambda integrase family of site-specific recombinases
-
Colloms SD, Sykora P, Szatmari G, Sherratt DJ. Recombination at ColE1 cer requires the Escherichia coli xerC gene product, a member of the lambda integrase family of site-specific recombinases. J Bacteriol 1990, 172:6973-6980.
-
(1990)
J Bacteriol
, vol.172
, pp. 6973-6980
-
-
Colloms, S.D.1
Sykora, P.2
Szatmari, G.3
Sherratt, D.J.4
-
59
-
-
0025954366
-
Dif, a recA-independent recombination site in the terminus region of the chromosome of Escherichia coli
-
Kuempel PL, Henson JM, Dircks L, Tecklenburg M, Lim DF. dif, a recA-independent recombination site in the terminus region of the chromosome of Escherichia coli. New Biol 1991, 3:799-811.
-
(1991)
New Biol
, vol.3
, pp. 799-811
-
-
Kuempel, P.L.1
Henson, J.M.2
Dircks, L.3
Tecklenburg, M.4
Lim, D.F.5
-
60
-
-
0037169328
-
FtsK Is a DNA motor protein that activates chromosome dimer resolution by switching the catalytic state of the XerC and XerD recombinases
-
Aussel L, Barre F-X, Aroyo M, Stasiak A, Stasiak AZ, Sherratt D. FtsK Is a DNA motor protein that activates chromosome dimer resolution by switching the catalytic state of the XerC and XerD recombinases. Cell 2002, 108:195-205.
-
(2002)
Cell
, vol.108
, pp. 195-205
-
-
Aussel, L.1
Barre, F.-X.2
Aroyo, M.3
Stasiak, A.4
Stasiak, A.Z.5
Sherratt, D.6
-
61
-
-
2442543553
-
Asymmetric activation of Xer site-specific recombination by FtsK
-
Massey TH, Aussel L, Barre F-X, Sherratt DJ. Asymmetric activation of Xer site-specific recombination by FtsK. EMBO Rep 2004, 5:399-404.
-
(2004)
EMBO Rep
, vol.5
, pp. 399-404
-
-
Massey, T.H.1
Aussel, L.2
Barre, F.-X.3
Sherratt, D.J.4
-
62
-
-
0041853780
-
Spatial and temporal organization of replicating Escherichia coli chromosomes
-
Lau IF, Filipe SR, Søballe B, Økstad O-A, Barre F-X, Sherratt DJ. Spatial and temporal organization of replicating Escherichia coli chromosomes. Mol Microbiol 2003, 49:731-743.
-
(2003)
Mol Microbiol
, vol.49
, pp. 731-743
-
-
Lau, I.F.1
Filipe, S.R.2
Søballe, B.3
Økstad, O.-A.4
Barre, F.-X.5
Sherratt, D.J.6
-
63
-
-
0242606194
-
Segregation of the Escherichia coli chromosome terminus
-
Li Y, Youngren B, Sergueev K, Austin S. Segregation of the Escherichia coli chromosome terminus. Mol Microbiol 2003, 50:825-834.
-
(2003)
Mol Microbiol
, vol.50
, pp. 825-834
-
-
Li, Y.1
Youngren, B.2
Sergueev, K.3
Austin, S.4
-
64
-
-
0347504849
-
Decatenation of DNA circles by FtsK-dependent Xer site-specific recombination
-
Ip SCY, Bregu M, Barre F-X, Sherratt DJ. Decatenation of DNA circles by FtsK-dependent Xer site-specific recombination. EMBO J 2003, 22:6399-6407.
-
(2003)
EMBO J
, vol.22
, pp. 6399-6407
-
-
Ip, S.C.Y.1
Bregu, M.2
Barre, F.-X.3
Sherratt, D.J.4
-
65
-
-
3242699635
-
Fast, DNA-sequence independent translocation by FtsK in a single-molecule experiment
-
Saleh OA, Perals C, Barre F-X, Allemand J-F. Fast, DNA-sequence independent translocation by FtsK in a single-molecule experiment. EMBO J 2004, 23:2430-2439.
-
(2004)
EMBO J
, vol.23
, pp. 2430-2439
-
-
Saleh, O.A.1
Perals, C.2
Barre, F.-X.3
Allemand, J.-F.4
-
66
-
-
12844282326
-
Sequence-directed DNA translocation by purified FtsK
-
Pease PJ, Levy O, Cost GJ, Gore J, Ptacin JL, Sherratt D, Bustamante C, Cozzarelli NR. Sequence-directed DNA translocation by purified FtsK. Science 2005, 307:586-590.
-
(2005)
Science
, vol.307
, pp. 586-590
-
-
Pease, P.J.1
Levy, O.2
Cost, G.J.3
Gore, J.4
Ptacin, J.L.5
Sherratt, D.6
Bustamante, C.7
Cozzarelli, N.R.8
-
67
-
-
0033636814
-
FtsK functions in the processing of a Holliday junction intermediate during bacterial chromosome segregation
-
Barre F-X, Aroyo M, Colloms SD, Helfrich A, Cornet F, Sherratt DJ. FtsK functions in the processing of a Holliday junction intermediate during bacterial chromosome segregation. Genes Dev 2000, 14:2976-2988.
-
(2000)
Genes Dev
, vol.14
, pp. 2976-2988
-
-
Barre, F.-X.1
Aroyo, M.2
Colloms, S.D.3
Helfrich, A.4
Cornet, F.5
Sherratt, D.J.6
-
68
-
-
0031786575
-
Role of the C terminus of FtsK in Escherichia coli chromosome segregation
-
Yu X-C, Weihe EK, Margolin W. Role of the C terminus of FtsK in Escherichia coli chromosome segregation. J Bacteriol 1998, 180:6424-6428.
-
(1998)
J Bacteriol
, vol.180
, pp. 6424-6428
-
-
Yu, X.-C.1
Weihe, E.K.2
Margolin, W.3
-
69
-
-
78049300491
-
FtsK DNA translocase: the fast motor that knows where it's going
-
Crozat E, Grainge I. FtsK DNA translocase: the fast motor that knows where it's going. ChemBio Chem 2010, 11:2232-2243.
-
(2010)
ChemBio Chem
, vol.11
, pp. 2232-2243
-
-
Crozat, E.1
Grainge, I.2
-
70
-
-
77951499045
-
Separating speed and ability to displace roadblocks during DNA translocation by FtsK
-
Crozat E, Meglio A, Allemand J-F, Chivers CE, Howarth M, Vénien-Bryan C, Grainge I, Sherratt DJ. Separating speed and ability to displace roadblocks during DNA translocation by FtsK. EMBO J 2010, 29:1423-1433.
-
(2010)
EMBO J
, vol.29
, pp. 1423-1433
-
-
Crozat, E.1
Meglio, A.2
Allemand, J.-F.3
Chivers, C.E.4
Howarth, M.5
Vénien-Bryan, C.6
Grainge, I.7
Sherratt, D.J.8
-
71
-
-
1842349395
-
The induction of mitotic recombination by mitomycin C in ustilago and saccharomyces
-
Holliday R. The induction of mitotic recombination by mitomycin C in ustilago and saccharomyces. Genetics 1964, 50:323-335.
-
(1964)
Genetics
, vol.50
, pp. 323-335
-
-
Holliday, R.1
-
72
-
-
0031453378
-
Processing of recombination intermediates by the RuvABC proteins
-
West SC. Processing of recombination intermediates by the RuvABC proteins. Annu Rev Genet 1997, 31:213-244.
-
(1997)
Annu Rev Genet
, vol.31
, pp. 213-244
-
-
West, S.C.1
-
73
-
-
0024296285
-
Nucleotide sequencing of the ruv region of Escherichia coli K-12 reveals a LexA regulated operon encoding two genes
-
Benson F, Illing G, Sharples G, Lloyd R. Nucleotide sequencing of the ruv region of Escherichia coli K-12 reveals a LexA regulated operon encoding two genes. Nucleic Acids Res 1998, 16:1541-1549.
-
(1998)
Nucleic Acids Res
, vol.16
, pp. 1541-1549
-
-
Benson, F.1
Illing, G.2
Sharples, G.3
Lloyd, R.4
-
74
-
-
0034114498
-
Mutational analysis of the functional motifs of RuvB, an AAA+ class helicase and motor protein for Holliday junction branch migration
-
Iwasaki H, Han Y-W, Okamoto T, Ohnishi T, Yoshikawa M, Yamada K, Toh H, Daiyasu H, Ogura T, Shinagawa H. Mutational analysis of the functional motifs of RuvB, an AAA+ class helicase and motor protein for Holliday junction branch migration. Mol Microbiol 2000, 36:528-538.
-
(2000)
Mol Microbiol
, vol.36
, pp. 528-538
-
-
Iwasaki, H.1
Han, Y.-W.2
Okamoto, T.3
Ohnishi, T.4
Yoshikawa, M.5
Yamada, K.6
Toh, H.7
Daiyasu, H.8
Ogura, T.9
Shinagawa, H.10
-
75
-
-
0032969563
-
AAA+: A class of chaperone-like ATPases associated with the assembly, operation, and disassembly of protein complexes
-
Neuwald AF, Aravind L, Spouge JL, Koonin EV. AAA+: A class of chaperone-like ATPases associated with the assembly, operation, and disassembly of protein complexes. Genome Res 1999, 9:27-43.
-
(1999)
Genome Res
, vol.9
, pp. 27-43
-
-
Neuwald, A.F.1
Aravind, L.2
Spouge, J.L.3
Koonin, E.V.4
-
76
-
-
33746796409
-
Direct observation of DNA rotation during branch migration of Holliday junction DNA by Escherichia coli RuvA-RuvB protein complex
-
Han Y-W, Tani T, Hayashi M, Hishida T, Iwasaki H, Shinagawa H, Harada Y. Direct observation of DNA rotation during branch migration of Holliday junction DNA by Escherichia coli RuvA-RuvB protein complex. Proc Natl Acad Sci 2006, 103:11544-11548.
-
(2006)
Proc Natl Acad Sci
, vol.103
, pp. 11544-11548
-
-
Han, Y.-W.1
Tani, T.2
Hayashi, M.3
Hishida, T.4
Iwasaki, H.5
Shinagawa, H.6
Harada, Y.7
-
77
-
-
0015954847
-
Isolation and characterization of an Eschericia coli ruv mutant which forms nonseptate filaments after low doses of ultraviolet light irradiation
-
Otsuji N, Iyehara H, Hideshima Y. Isolation and characterization of an Eschericia coli ruv mutant which forms nonseptate filaments after low doses of ultraviolet light irradiation. J Bacteriol 1974, 117:337-344.
-
(1974)
J Bacteriol
, vol.117
, pp. 337-344
-
-
Otsuji, N.1
Iyehara, H.2
Hideshima, Y.3
-
78
-
-
0025332556
-
Molecular and functional analysis of the ruv region of Escherichia coli K-12 reveals three genes involved in DNA repair and recombination
-
Sharples G, Benson F, Illing G, Lloyd R. Molecular and functional analysis of the ruv region of Escherichia coli K-12 reveals three genes involved in DNA repair and recombination. Mol Gen Genet 1990, 221:219-226.
-
(1990)
Mol Gen Genet
, vol.221
, pp. 219-226
-
-
Sharples, G.1
Benson, F.2
Illing, G.3
Lloyd, R.4
-
79
-
-
0024076249
-
Structure and regulation of the Escherichia coli ruv operon involved in DNA repair and recombination
-
Shinagawa H, Makino K, Amemura M, Kimura S, Iwasaki H, Nakata A. Structure and regulation of the Escherichia coli ruv operon involved in DNA repair and recombination. J Bacteriol 1988, 170:4322-4329.
-
(1988)
J Bacteriol
, vol.170
, pp. 4322-4329
-
-
Shinagawa, H.1
Makino, K.2
Amemura, M.3
Kimura, S.4
Iwasaki, H.5
Nakata, A.6
-
80
-
-
0025940780
-
Molecular analysis of the Escherichia coli ruvC gene, which encodes a Holliday junction-specific endonuclease
-
Takahagi M, Iwasaki H, Nakata A, Shinagawa H. Molecular analysis of the Escherichia coli ruvC gene, which encodes a Holliday junction-specific endonuclease. J Bacteriol 1991, 173:5747-5753.
-
(1991)
J Bacteriol
, vol.173
, pp. 5747-5753
-
-
Takahagi, M.1
Iwasaki, H.2
Nakata, A.3
Shinagawa, H.4
-
81
-
-
0020024650
-
Damage to DNA induces expression of the ruv gene of Escherichia coli
-
Shurvinton CE, Lloyd RG. Damage to DNA induces expression of the ruv gene of Escherichia coli. Mol Gen Genet 1982, 185:352-355.
-
(1982)
Mol Gen Genet
, vol.185
, pp. 352-355
-
-
Shurvinton, C.E.1
Lloyd, R.G.2
-
82
-
-
0025720560
-
Resolution of Holliday junctions in Escherichia coli: identification of the ruvC gene product as a 19-kilodalton protein
-
Sharples GJ, Lloyd RG. Resolution of Holliday junctions in Escherichia coli: identification of the ruvC gene product as a 19-kilodalton protein. J Bacteriol 1991, 173:7711-7715.
-
(1991)
J Bacteriol
, vol.173
, pp. 7711-7715
-
-
Sharples, G.J.1
Lloyd, R.G.2
-
83
-
-
0028924441
-
Molecular mechanisms of Holliday junction processing in Escherichia coli
-
Shinagawa H. Molecular mechanisms of Holliday junction processing in Escherichia coli. Adv Biophys 1995, 31:49-65.
-
(1995)
Adv Biophys
, vol.31
, pp. 49-65
-
-
Shinagawa, H.1
-
84
-
-
0028965153
-
Branch migration during homologous recombination: assembly of a RuvAB-Holliday junction complex in vitro
-
Hiom K, West S. Branch migration during homologous recombination: assembly of a RuvAB-Holliday junction complex in vitro. Cell 1995, 80:787-793.
-
(1995)
Cell
, vol.80
, pp. 787-793
-
-
Hiom, K.1
West, S.2
-
85
-
-
0028968305
-
Structure of a multisubunit complex that promotes DNA branch migration
-
Parsons C, Stasiak A, Bennett R, West S. Structure of a multisubunit complex that promotes DNA branch migration. Nature 1995, 374:375-378.
-
(1995)
Nature
, vol.374
, pp. 375-378
-
-
Parsons, C.1
Stasiak, A.2
Bennett, R.3
West, S.4
-
86
-
-
0029103324
-
Characterisation of RuvAB-Holliday junction complexes by glycerol gradient sedimentation
-
Hiom K, West S. Characterisation of RuvAB-Holliday junction complexes by glycerol gradient sedimentation. Nucleic Acids Res 1995, 23:3621-3626.
-
(1995)
Nucleic Acids Res
, vol.23
, pp. 3621-3626
-
-
Hiom, K.1
West, S.2
-
87
-
-
0030133293
-
The directionality of RuvAB-mediated branch migration: in vitro studies with three-armed junctions
-
Hiom K, Tsaneva I, West S. The directionality of RuvAB-mediated branch migration: in vitro studies with three-armed junctions. Genes Cells 1996, 1:443-451.
-
(1996)
Genes Cells
, vol.1
, pp. 443-451
-
-
Hiom, K.1
Tsaneva, I.2
West, S.3
-
88
-
-
0030596061
-
Interactions between RuvA and RuvC at Holliday junctions: inhibition of junction cleavage and formation of a RuvA-RuvC-DNA complex
-
Whitby MC, Bolt EL, Chan SN, Lloyd RG. Interactions between RuvA and RuvC at Holliday junctions: inhibition of junction cleavage and formation of a RuvA-RuvC-DNA complex. J Mol Biol 1996, 264:878-890.
-
(1996)
J Mol Biol
, vol.264
, pp. 878-890
-
-
Whitby, M.C.1
Bolt, E.L.2
Chan, S.N.3
Lloyd, R.G.4
-
89
-
-
0034714309
-
Cleavage of holliday junctions by the Escherichia coli RuvABC complex
-
Eggleston A, West S. Cleavage of holliday junctions by the Escherichia coli RuvABC complex. J Biol Chem 2000, 275:26467-26476.
-
(2000)
J Biol Chem
, vol.275
, pp. 26467-26476
-
-
Eggleston, A.1
West, S.2
-
90
-
-
0028043495
-
Dissociation of RecA filaments from duplex DNA by the RuvA and RuvB DNA repair proteins
-
Adams D, Tsaneva I, West S. Dissociation of RecA filaments from duplex DNA by the RuvA and RuvB DNA repair proteins. Proc Natl Acad Sci U S A 1994, 91:9901-9905.
-
(1994)
Proc Natl Acad Sci U S A
, vol.91
, pp. 9901-9905
-
-
Adams, D.1
Tsaneva, I.2
West, S.3
-
91
-
-
0031581811
-
Structure and subunit composition of the RuvAB-Holliday junction complex
-
Yu X, West S, Egelman E. Structure and subunit composition of the RuvAB-Holliday junction complex. J Mol Biol 1997, 266:217-222.
-
(1997)
J Mol Biol
, vol.266
, pp. 217-222
-
-
Yu, X.1
West, S.2
Egelman, E.3
-
92
-
-
1842861596
-
Three-dimensional structural views of branch migration and resolution in DNA homologous recombination
-
Yamada K, Ariyoshi M, Morikawa K. Three-dimensional structural views of branch migration and resolution in DNA homologous recombination. Curr Opin Struct Biol 2004, 14:130-137.
-
(2004)
Curr Opin Struct Biol
, vol.14
, pp. 130-137
-
-
Yamada, K.1
Ariyoshi, M.2
Morikawa, K.3
-
93
-
-
18644379392
-
Crystal structure of the RuvA-RuvB complex: A structural basis for the Holliday junction migrating motor machinery
-
Yamada K, Miyata T, Tsuchiya D, Oyama T, Fujiwara Y, Ohnishi T, Iwasaki H, Shinagawa H, Ariyoshi M, Mayanagi K, Morikawa K. Crystal structure of the RuvA-RuvB complex: A structural basis for the Holliday junction migrating motor machinery. Mol Cell 2002, 10:671-681.
-
(2002)
Mol Cell
, vol.10
, pp. 671-681
-
-
Yamada, K.1
Miyata, T.2
Tsuchiya, D.3
Oyama, T.4
Fujiwara, Y.5
Ohnishi, T.6
Iwasaki, H.7
Shinagawa, H.8
Ariyoshi, M.9
Mayanagi, K.10
Morikawa, K.11
-
94
-
-
35748973583
-
Model for RuvAB-mediated branch migration of Holliday junctions
-
Xie P. Model for RuvAB-mediated branch migration of Holliday junctions. J Theor Biol 2007, 249:566-573.
-
(2007)
J Theor Biol
, vol.249
, pp. 566-573
-
-
Xie, P.1
-
95
-
-
0032582794
-
RuvAB acts at arrested replication forks
-
Seigneur M, Bidnenko V, Ehrlich SD, Michel B. RuvAB acts at arrested replication forks. Cell 1998, 95:419-430.
-
(1998)
Cell
, vol.95
, pp. 419-430
-
-
Seigneur, M.1
Bidnenko, V.2
Ehrlich, S.D.3
Michel, B.4
-
96
-
-
0034659679
-
Characterisation of the catalytically active form of RecG helicase
-
McGlynn P, Mahdi AA, Lloyd RG. Characterisation of the catalytically active form of RecG helicase. Nucleic Acids Res 2000, 28:2324-2332.
-
(2000)
Nucleic Acids Res
, vol.28
, pp. 2324-2332
-
-
McGlynn, P.1
Mahdi, A.A.2
Lloyd, R.G.3
-
97
-
-
33749411110
-
RuvABC is required to resolve holliday junctions that accumulate following replication on damaged templates in Escherichia coli
-
Donaldson J, Courcelle C, Courcelle J. RuvABC is required to resolve holliday junctions that accumulate following replication on damaged templates in Escherichia coli. J Biol Chem 2006, 281:28811-28821.
-
(2006)
J Biol Chem
, vol.281
, pp. 28811-28821
-
-
Donaldson, J.1
Courcelle, C.2
Courcelle, J.3
-
98
-
-
84884193802
-
Characterization of the ATPase activity of RecG and RuvAB on model fork structures reveals insight into stalled DNA replication fork repair
-
Abd Wahab S, Choi M, Bianco P. Characterization of the ATPase activity of RecG and RuvAB on model fork structures reveals insight into stalled DNA replication fork repair. J Biol Chem 2013, 288:26397-26409.
-
(2013)
J Biol Chem
, vol.288
, pp. 26397-26409
-
-
Abd Wahab, S.1
Choi, M.2
Bianco, P.3
-
99
-
-
84903815590
-
New and Notable: Biophysical studies reveal new evidence for one-way revolution mechanism of bacteriophage φ 29 DNA packaging motor
-
Guo P. New and Notable: Biophysical studies reveal new evidence for one-way revolution mechanism of bacteriophage φ 29 DNA packaging motor. Biophys J 2014, 106:1-2.
-
(2014)
Biophys J
, vol.106
, pp. 1-2
-
-
Guo, P.1
-
100
-
-
84901951285
-
Common mechanisms of DNA translocation motors in bacteria and viruses using one-way revolution mechanism without rotation
-
Guo P, Zhao Z, Haak J, Wang S, Wu D, Meng B, Weitao T. Common mechanisms of DNA translocation motors in bacteria and viruses using one-way revolution mechanism without rotation. Biotechnol Adv 2014, 32:853-872.
-
(2014)
Biotechnol Adv
, vol.32
, pp. 853-872
-
-
Guo, P.1
Zhao, Z.2
Haak, J.3
Wang, S.4
Wu, D.5
Meng, B.6
Weitao, T.7
-
101
-
-
34548213103
-
A common mechanism of cellular death induced by bactericidal antibiotics
-
Kohanski MA, Dwyer DJ, Hayete B, Lawrence CA, Collins JJ. A common mechanism of cellular death induced by bactericidal antibiotics. Cell 2007, 130:797-810.
-
(2007)
Cell
, vol.130
, pp. 797-810
-
-
Kohanski, M.A.1
Dwyer, D.J.2
Hayete, B.3
Lawrence, C.A.4
Collins, J.J.5
-
102
-
-
70349816733
-
Role of reactive oxygen species in antibiotic action and resistance
-
Dwyer DJ, Kohanski MA, Collins JJ. Role of reactive oxygen species in antibiotic action and resistance. Curr Opin Microbiol 2009, 12:482-489.
-
(2009)
Curr Opin Microbiol
, vol.12
, pp. 482-489
-
-
Dwyer, D.J.1
Kohanski, M.A.2
Collins, J.J.3
-
103
-
-
84874720377
-
Killing by bactericidal antibiotics does not depend on reactive oxygen species
-
Keren I, Wu Y, Inocencio J, Mulcahy LR, Lewis K. Killing by bactericidal antibiotics does not depend on reactive oxygen species. Science 2013, 339:1213-1216.
-
(2013)
Science
, vol.339
, pp. 1213-1216
-
-
Keren, I.1
Wu, Y.2
Inocencio, J.3
Mulcahy, L.R.4
Lewis, K.5
-
104
-
-
84889093911
-
Motility of Pseudomonas aeruginosa contributes to the SOS-inducible biofilm formation
-
Chellappa ST, Maredia R, Phipps K, Haskins WE, Weitao T. Motility of Pseudomonas aeruginosa contributes to the SOS-inducible biofilm formation. Res Microbiol 2013, 164:1019-1027.
-
(2013)
Res Microbiol
, vol.164
, pp. 1019-1027
-
-
Chellappa, S.T.1
Maredia, R.2
Phipps, K.3
Haskins, W.E.4
Weitao, T.5
-
105
-
-
79952202238
-
SOS involvement in stress-inducible biofilm formation
-
Gotoh H, Gotoh H, Kasaraneni N, Devineni N, Dallo SF, Weitao T. SOS involvement in stress-inducible biofilm formation. Biofouling 2010, 26:603-611.
-
(2010)
Biofouling
, vol.26
, pp. 603-611
-
-
Gotoh, H.1
Gotoh, H.2
Kasaraneni, N.3
Devineni, N.4
Dallo, S.F.5
Weitao, T.6
-
106
-
-
44649169783
-
Pseudomonas aeruginosa under DNA replication inhibition tends to form biofilms via Arr
-
Gotoh H, Zhang Y, Dallo SF, Hong S, Kasaraneni N, Weitao T. Pseudomonas aeruginosa under DNA replication inhibition tends to form biofilms via Arr. Res Microbiol 2008, 159:294-302.
-
(2008)
Res Microbiol
, vol.159
, pp. 294-302
-
-
Gotoh, H.1
Zhang, Y.2
Dallo, S.F.3
Hong, S.4
Kasaraneni, N.5
Weitao, T.6
-
107
-
-
84863229745
-
Vesiculation from Pseudomonas aeruginosa under SOS
-
Maredia R, Devineni N, Lentz P, Dallo SF, Yu JJ, Guentzel N, Chambers J, Arulanandam B, Haskins WE, Weitao T. Vesiculation from Pseudomonas aeruginosa under SOS. ISRN Mol Biol 2012, 2012:402919.
-
(2012)
ISRN Mol Biol
, vol.2012
, pp. 402919
-
-
Maredia, R.1
Devineni, N.2
Lentz, P.3
Dallo, S.F.4
Yu, J.J.5
Guentzel, N.6
Chambers, J.7
Arulanandam, B.8
Haskins, W.E.9
Weitao, T.10
-
108
-
-
58149328734
-
Multicellularity of a unicellular organism in response to DNA replication stress
-
Weitao T. Multicellularity of a unicellular organism in response to DNA replication stress. Res Microbiol 2009, 160:87-88.
-
(2009)
Res Microbiol
, vol.160
, pp. 87-88
-
-
Weitao, T.1
-
109
-
-
60449095362
-
Bacteria form biofilms against cancer metastasis
-
Weitao T. Bacteria form biofilms against cancer metastasis. Medical Hypothesis 2009, 72:477-478.
-
(2009)
Medical Hypothesis
, vol.72
, pp. 477-478
-
-
Weitao, T.1
-
110
-
-
84931418232
-
Can bacteria evolve anticancer phenotypes?
-
Netherlands: Springer Science Publisher, Khan AA, 11:245-256
-
Devineni N, Maredia R, Weitao T. Can bacteria evolve anticancer phenotypes?. Bacteria and Cancer 2012, Netherlands: Springer Science Publisher, Khan AA, 11:245-256.
-
(2012)
Bacteria and Cancer
-
-
Devineni, N.1
Maredia, R.2
Weitao, T.3
-
111
-
-
77749298131
-
Bacteria under SOS evolve anticancer phenotypes
-
Dallo SF, Weitao T. Bacteria under SOS evolve anticancer phenotypes. Infect Agents Canc 2010, 5:3.
-
(2010)
Infect Agents Canc
, vol.5
, pp. 3
-
-
Dallo, S.F.1
Weitao, T.2
|