-
2
-
-
85030352346
-
-
Washington, DC: ASM press
-
Gross CA: Function and regulation of the heat shock proteins. In Escherichia Coli and Salmonella: Cellular and Molecular Biology. Edited by Neidhardt FC, et al.: Washington, DC: ASM press; 1996:1382-1399.
-
-
-
Neidhardt, F.C.1
-
3
-
-
0013545044
-
-
Gross CA: Function and regulation of the heat shock proteins. In Escherichia Coli and Salmonella: Cellular and Molecular Biology. Edited by Neidhardt FC, et al.: Washington, DC: ASM press; 1996:1382-1399.
-
(1996)
, pp. 1382-1399
-
-
-
4
-
-
0027385183
-
Regulation of heat shock response in bacteria
-
Yura T: Regulation of heat shock response in bacteria. Annu Rev Microbiol 1993, 47:321-350.
-
(1993)
Annu Rev Microbiol
, vol.47
, pp. 321-350
-
-
Yura, T.1
-
5
-
-
0027319272
-
Regulation of the Escherichia coli heat-shock response
-
Bukau B: Regulation of the Escherichia coli heat-shock response. Mol Microbiol 1993, 9:671-680.
-
(1993)
Mol Microbiol
, vol.9
, pp. 671-680
-
-
Bukau, B.1
-
6
-
-
0000757557
-
Properties of the heat shock proteins of Escherichia coli and the autoregulation of the heat shock response
-
Edited by Morimoto RI, Tissieres A, Georgopoulos C. New York: Cold Spring Harbor Laboratory Press
-
Georgopoulos C, LibereK K, Zylicz M, Ang D: Properties of the heat shock proteins of Escherichia coli and the autoregulation of the heat shock response. In The Biology of Heat Shock Proteins and Molecular Chaperones. Edited by Morimoto RI, Tissieres A, Georgopoulos C. New York: Cold Spring Harbor Laboratory Press; 1994:209-249.
-
(1994)
The Biology of Heat Shock Proteins and Molecular Chaperones
, pp. 209-249
-
-
Georgopoulos, C.1
Liberek, K.2
Zylicz, M.3
Ang, D.4
-
7
-
-
0002532009
-
Heat shock regulation
-
Edited by Lin ECC, Lynch AS. New York: RG Landes Company
-
Missiakas, D, Raina, S, Georgopoulos, C: Heat shock regulation. In Regulation of Gene Expression in Escherichia Coli. Edited by Lin ECC, Lynch AS. New York: RG Landes Company; 1996:481-501.
-
(1996)
Regulation of Gene Expression in Escherichia Coli
, pp. 481-501
-
-
Missiakas, D.1
Raina, S.2
Georgopoulos, C.3
-
8
-
-
0028843890
-
32 homologs from Gram-negative bacteria: Conserved mRNA and protein segments for heat shock regulation
-
32 homologs from Gram-negative bacteria: Conserved mRNA and protein segments for heat shock regulation. Nucl Acids Res 1995, 23:4383-4390.
-
(1995)
Nucl Acids Res
, vol.23
, pp. 4383-4390
-
-
Nakahigashi, K.1
Yanagi, H.2
Yura, T.3
-
10
-
-
0031968254
-
32 homologs from Gram-negative bacteria: Serratia marcescens, Proteus mirabilis, Pseudomonas aeruginosa, and Agrobacterium tumefaciens
-
32 from Proteus mirabilis was normally stable and further stabilized upon heat shock.
-
(1998)
J Bacteriol
, vol.180
, pp. 2402-2408
-
-
Nakahigashi, K.1
Yanagi, H.2
Yura, T.3
-
12
-
-
0028292919
-
CIRCE, a novel heat shock element involved in regulation of heat shock operon dnaK of Bacillus subtilis
-
Zuber U, Schumann W: CIRCE, a novel heat shock element involved in regulation of heat shock operon dnaK of Bacillus subtilis. J Bacteriol 1994, 176:1359-1363.
-
(1994)
J Bacteriol
, vol.176
, pp. 1359-1363
-
-
Zuber, U.1
Schumann, W.2
-
13
-
-
0028882778
-
Expression of heat shock genes in Clostridium acetobutylicum
-
Bahl H, Muller H, Behrens S, Joseph H, Narberhaus F: Expression of heat shock genes in Clostridium acetobutylicum. FEMS Microbiol Rev 1995, 17:341-348.
-
(1995)
FEMS Microbiol Rev
, vol.17
, pp. 341-348
-
-
Bahl, H.1
Muller, H.2
Behrens, S.3
Joseph, H.4
Narberhaus, F.5
-
14
-
-
0030034307
-
Heat-shock and general stress response in Bacillus subtilis
-
Hecker M, Schumann W, Volker U: Heat-shock and general stress response in Bacillus subtilis. Mol Microbiol 1996, 19:417-428.
-
(1996)
Mol Microbiol
, vol.19
, pp. 417-428
-
-
Hecker, M.1
Schumann, W.2
Volker, U.3
-
15
-
-
0029984172
-
Regulation and organization of the groE and dnaK operons in Eubacteria
-
Segal R, Ron EZ: Regulation and organization of the groE and dnaK operons in Eubacteria. FEMS Microbiol Lett 1996, 138:1-10.
-
(1996)
FEMS Microbiol Lett
, vol.138
, pp. 1-10
-
-
Segal, R.1
Ron, E.Z.2
-
16
-
-
0031793242
-
Levels of DnaK and DnaJ provide tight control of heat shock gene expression and protein repair in Escherichia coli
-
32 and HSPs at physiological temperature and faster (or slower) shut-off of the heat-shock response.
-
(1998)
Mol Microbiol
, vol.30
, pp. 567-581
-
-
Tomoyasu, T.1
Ogura, T.2
Tatsuta, T.3
Bukau, B.4
-
18
-
-
0028985616
-
32, the heat shock regulator in Escherichia coli, is governed by HflB
-
32, the heat shock regulator in Escherichia coli, is governed by HflB. Proc Natl Acad Sci USA 1995, 92:3516-3520.
-
(1995)
Proc Natl Acad Sci USA
, vol.92
, pp. 3516-3520
-
-
Herman, C.1
Thevenet, D.2
D'Ari, R.3
Bouloc, P.4
-
19
-
-
0029060112
-
32
-
32. EMBO J 1995, 14:2551-2560.
-
(1995)
EMBO J
, vol.14
, pp. 2551-2560
-
-
Tomoyasu, T.1
Gamer, J.2
Bukau, B.3
Kanemori, M.4
Mori, H.5
Rutman, A.J.6
Oppenheim, A.B.7
Yura, T.8
Yamanaka, K.9
Niki, H.10
-
20
-
-
0030613795
-
32 and abnormal proteins in Escherichia coli
-
32 in vivo. This raises an intriguing possibility that a set of ATP-dependent proteases as well as the DnaK chaperone system are involved in modulating the heat-shock response in E. coli.
-
(1997)
J Bacteriol
, vol.179
, pp. 7219-7225
-
-
Kanemori, M.1
Nishihara, K.2
Yanagi, H.3
Yura, T.4
-
21
-
-
0028173076
-
32 polypeptide is involved in DnaK-mediated negative control of the heat shock response in Escherichia coli
-
32 polypeptide is involved in DnaK-mediated negative control of the heat shock response in Escherichia coli. Proc Natl Acad Sci USA 1994, 91:10280-10284.
-
(1994)
Proc Natl Acad Sci USA
, vol.91
, pp. 10280-10284
-
-
Nagai, H.1
Yuzawa, H.2
Kanemori, M.3
Yura, T.4
-
22
-
-
0029996090
-
32, constitutes a DnaK binding site and is conserved among eubacteria
-
32, constitutes a DnaK binding site and is conserved among eubacteria. J Mol Biol 1996, 256:829-837.
-
(1996)
J Mol Biol
, vol.256
, pp. 829-837
-
-
McCarty, J.S.1
Rudiger, S.2
Schonfeld, H.J.3
Schneider-Mergener, J.4
Nakahigashi, K.5
Yura, T.6
Bukau, B.7
-
24
-
-
0030903131
-
Hsc66 and Hsc20, a new heat shock cognate molecular chaperone system from Escherichia coli
-
Vickery LE, Silberg JJ, Ta DT: Hsc66 and Hsc20, a new heat shock cognate molecular chaperone system from Escherichia coli. Protein Sci 1997, 6:1047-1056.
-
(1997)
Protein Sci
, vol.6
, pp. 1047-1056
-
-
Vickery, L.E.1
Silberg, J.J.2
Ta, D.T.3
-
25
-
-
0032541496
-
Role of the DnaK and HscS homologs of Hsp70 chaperones in protein folding in E. coli
-
Hesterkamp T, Bukau B: Role of the DnaK and HscA homologs of Hsp70 chaperones in protein folding in E. Coli. EMBO J 1998, 17:4818-4828.
-
(1998)
EMBO J
, vol.17
, pp. 4818-4828
-
-
Hesterkamp, T.1
Bukau, B.2
-
26
-
-
0032497244
-
Hsc62, a new DnaK homologue of Escherichia coli
-
Yoshimune K, Yoshimura T, Esaki N: Hsc62, a new DnaK homologue of Escherichia coli. Biochem Biophys Res Commun 1998, 250:115-118.
-
(1998)
Biochem Biophys Res Commun
, vol.250
, pp. 115-118
-
-
Yoshimune, K.1
Yoshimura, T.2
Esaki, N.3
-
27
-
-
0032079487
-
The small heat-shock protein IbpB from Escherichia coli stabilizes stress-denatured proteins for subsequent refolding by a multichaperone network
-
Veinger L, Diamant S, Buchner J, Goloubinoff P: The small heat-shock protein IbpB from Escherichia coli stabilizes stress-denatured proteins for subsequent refolding by a multichaperone network. J Biol Chem 1998, 273:11032-11037.
-
(1998)
J Biol Chem
, vol.273
, pp. 11032-11037
-
-
Veinger, L.1
Diamant, S.2
Buchner, J.3
Goloubinoff, P.4
-
28
-
-
0031705810
-
Roles of Escherichia coli small heat shock proteins IbpA and IbpB in thermal stress management: Comparison with ClpA, ClpB, and HtpG in vivo
-
Thomas JG, Baneyx F: Roles of Escherichia coli small heat shock proteins IbpA and IbpB in thermal stress management: Comparison with ClpA, ClpB, and HtpG in vivo. J Bacteriol 1998, 180:5165-5172.
-
(1998)
J Bacteriol
, vol.180
, pp. 5165-5172
-
-
Thomas, J.G.1
Baneyx, F.2
-
29
-
-
0032959546
-
32 in Escherichia coli: Structural and functional dissection of rpoH mRNA secondary structure
-
32 mediated by mRNA secondary structure has been directly substantiated by structural probing using chemical and enzymatic probes and by deletion analysis trying to assess possible roles of each of the stem-loop structures for regulation. The results show not only the primary importance of some of the base pairings but also the requirement of appropriate stability of mRNA secondary structure for thermoregulation.
-
(1999)
J Bacteriol
, vol.181
, pp. 401-410
-
-
Morita, M.1
Kanemori, M.2
Yanagi, H.3
Yura, T.4
-
30
-
-
0031867829
-
32, is negatively controlled by the cAMP-CRP/CytR nucleoprotein complex
-
32, is negatively controlled by the cAMP-CRP/CytR nucleoprotein complex. Mol Microbiol 1998, 29:1091-1099.
-
(1998)
Mol Microbiol
, vol.29
, pp. 1091-1099
-
-
Kallipolitis, B.H.1
Valentin-Hansen, P.2
-
33
-
-
0031004835
-
Expression and control of an operon from an intracellular symbiont which is homologous to the groE operon
-
Sato S, Ishikawa H: Expression and control of an operon from an intracellular symbiont which is homologous to the groE operon. J Bacteriol 1997, 179:2300-2304.
-
(1997)
J Bacteriol
, vol.179
, pp. 2300-2304
-
-
Sato, S.1
Ishikawa, H.2
-
35
-
-
0032571119
-
Isolation and characterization of the Xanthomonas campestris rpoH gene coding for a 32-kDa heat shock sigma factor
-
Huang L-H, Tseng Y-H, Yang M-T: Isolation and characterization of the Xanthomonas campestris rpoH gene coding for a 32-kDa heat shock sigma factor. Biochem Biophys Res Commun 1998, 244:854-860.
-
(1998)
Biochem Biophys Res Commun
, vol.244
, pp. 854-860
-
-
Huang, L.-H.1
Tseng, Y.-H.2
Yang, M.-T.3
-
36
-
-
0032512051
-
The genome sequence of Rickettsia prowazekii and the origin of mitochondria
-
Andersson SGE, Zomorodipour A, Andersson JO, Sicheritz-Ponten T, Alsmark UCM, Podowski RM, Naslund AK, Eriksson A-S, Winkler HH, Kurland CG: The genome sequence of Rickettsia prowazekii and the origin of mitochondria. Nature 1998, 396:133-140.
-
(1998)
Nature
, vol.396
, pp. 133-140
-
-
Andersson, S.G.E.1
Zomorodipour, A.2
Andersson, J.O.3
Sicheritz-Ponten, T.4
Alsmark, U.C.M.5
Podowski, R.M.6
Naslund, A.K.7
Eriksson, A.-S.8
Winkler, H.H.9
Kurland, C.G.10
-
37
-
-
0031969351
-
Promoter selectivity of the Bradyrhizobium japonicum RpoH transcription factors in vivo and in vitro
-
1 is responsible for supplying increased amounts of GroE chaperones upon exposure to heat stress.
-
(1998)
J Bacteriol
, vol.180
, pp. 2395-2401
-
-
Narberhaus, F.1
Kowarik, M.2
Beck, C.3
Hennecke, H.4
-
40
-
-
0031032672
-
32-dependent promoter
-
32 in Caulobacter thus occurs primarily at the transcription level, unlike in E. coli.
-
(1997)
J Bacteriol
, vol.179
, pp. 514-521
-
-
Wu, J.1
Newton, A.2
-
42
-
-
0030976053
-
Signal transduction pathways in response to protein misfolding in the extracytoplasmic compartments of E. coli: Role of two new phosphoprotein phosphatases PrpA and PrpB
-
Missiakas D, Raina S: Signal transduction pathways in response to protein misfolding in the extracytoplasmic compartments of E. coli: Role of two new phosphoprotein phosphatases PrpA and PrpB. EMBO J 1997, 16:1670-1685. This paper discloses two new genes encoding phosphoprotein phosphatases (PrpA and PrpB) that are involved in the signal transduction pathway modulating the expression of htrA(degP) transcription as well as in signaling protein misfolding via the Cpx system.
-
(1997)
EMBO J
, vol.16
, pp. 1670-1685
-
-
Missiakas, D.1
Raina, S.2
-
43
-
-
0030992719
-
Regulation of Escherichia coli cell envelope proteins involved in protein folding and degradation by the Cpx two-component system
-
Pogliano J, Lynch AS, Belin D, Lin EC, Beckwith J: Regulation of Escherichia coli cell envelope proteins involved in protein folding and degradation by the Cpx two-component system. Genes Dev 1997, 11:1169-1182. This paper shows that the two-component signal transduction system of E. coli, CpxA-CpxR, can activate transcription of genes encoding cell envelope proteins involved in protein folding (DsbA and PpiA) and protein degradation (DegP).
-
(1997)
Genes Dev
, vol.11
, pp. 1169-1182
-
-
Pogliano, J.1
Lynch, A.S.2
Belin, D.3
Lin, E.C.4
Beckwith, J.5
-
44
-
-
0030998321
-
e and the Cpx signal transduction systems control the synthesis of periplasmic protein-folding enzymes in Escherichia coli
-
E controls transcription of fkpA encoding a periplasmic peptidyl-prolyl cis/trans isomerase, whereas the Cpx system controls transcription of dsbA encoding an enzyme required for disulfide bond formation within bacterial envelope.
-
(1997)
Genes Dev
, vol.11
, pp. 1183-1193
-
-
Danese, P.N.1
Silhavy, T.J.2
-
45
-
-
0030763077
-
The response to extracytoplasmic stress in Escherichia coli is controlled by partially overlapping pathways
-
E at high temperature. Analysis of these genes led the authors to propose that two partially overlapping regulatory systems are involved in the response to extracytoplasmic stress.
-
(1997)
Genes Dev
, vol.11
, pp. 2012-2021
-
-
Connolly, L.1
De Las Penas, A.2
Alba, B.M.3
Gross, C.A.4
-
48
-
-
0028804756
-
Isolation and characterization of Bacillus subtilis regulatory mutants: Evidence for orf39 in the dnaK operon as a represor gene in regulating the expression of both groE and dnaK
-
Yuan G, Wong S: Isolation and characterization of Bacillus subtilis regulatory mutants: Evidence for orf39 in the dnaK operon as a represor gene in regulating the expression of both groE and dnaK. J Bacteriol 1995, 177:6462-6468.
-
(1995)
J Bacteriol
, vol.177
, pp. 6462-6468
-
-
Yuan, G.1
Wong, S.2
-
49
-
-
0030028240
-
HrcA, the first gene of the Bacillus subtilis dnaK operon encodes a negative regulator of class I heat shock genes
-
Schulz A, Schumann W: HrcA, the first gene of the Bacillus subtilis dnaK operon encodes a negative regulator of class I heat shock genes. J Bacteriol 1996, 178:1088-1093.
-
(1996)
J Bacteriol
, vol.178
, pp. 1088-1093
-
-
Schulz, A.1
Schumann, W.2
-
51
-
-
0032921346
-
CtsR a novel regulator of stress and heat shock response controls clp and molecular chaperone gene expression in Gram-positive bacteria
-
Derre I, Rapoport G, Msadek T: CtsR a novel regulator of stress and heat shock response controls clp and molecular chaperone gene expression in Gram-positive bacteria. Mol Microbiol 1999, 31:117-131.
-
(1999)
Mol Microbiol
, vol.31
, pp. 117-131
-
-
Derre, I.1
Rapoport, G.2
Msadek, T.3
-
52
-
-
0030959335
-
The htpG gene of Bacillus subtilis belongs to class III heat shock genes and is under negative control
-
Schulz A, Schwab S, Homuth G, Versteeg S, Schumann W: The htpG gene of Bacillus subtilis belongs to class III heat shock genes and is under negative control. J Bacteriol 1997, 179:3103-3109.
-
(1997)
J Bacteriol
, vol.179
, pp. 3103-3109
-
-
Schulz, A.1
Schwab, S.2
Homuth, G.3
Versteeg, S.4
Schumann, W.5
-
53
-
-
0031714922
-
HrcA, encoding the repressor of the groEL genes in Streptomyces albus G, is associated with a second naJ gene
-
Grandvalet C, Rapoport G, Mazodier P: HrcA, encoding the repressor of the groEL genes in streptomyces albus G, is associated with a second dnaJ gene. J Bacteriol 1998, 180:5129-5134.
-
(1998)
J Bacteriol
, vol.180
, pp. 5129-5134
-
-
Grandvalet, C.1
Rapoport, G.2
Mazodier, P.3
-
54
-
-
0031022299
-
Disruption of hspR, the repressor gene of the dnaK operon in Streptomyces albus G
-
Grandvalet C, Servant P, Mazodier P: Disruption of hspR, the repressor gene of the dnaK operon in Streptomyces albus G. Mol Microbiol 1997, 23:77-84.
-
(1997)
Mol Microbiol
, vol.23
, pp. 77-84
-
-
Grandvalet, C.1
Servant, P.2
Mazodier, P.3
-
55
-
-
0030883870
-
Regulation of the dnaK operon of the Streptomyces coelicolor A3(2) is governed by HspR, an autoregulatory repressor protein
-
Bucca G, Hindle Z, Smith CP: Regulation of the dnaK operon of the Streptomyces coelicolor A3(2) is governed by HspR, an autoregulatory repressor protein. J Bacteriol 1997, 179:5999-6004.
-
(1997)
J Bacteriol
, vol.179
, pp. 5999-6004
-
-
Bucca, G.1
Hindle, Z.2
Smith, C.P.3
-
56
-
-
0030465351
-
Heat induction of hsp18 gene expression in Streptomyces albus G: Transcriptional and posttranscriptional regulation
-
Servant P, Mazodier P: Heat induction of hsp18 gene expression in Streptomyces albus G: Transcriptional and posttranscriptional regulation. J Bacteriol 1996, 178:7031-7036.
-
(1996)
J Bacteriol
, vol.178
, pp. 7031-7036
-
-
Servant, P.1
Mazodier, P.2
-
57
-
-
0030849142
-
The groE chaperonin machine is a major modulator of the CIRCE heat shock regulon of Bacillus subtilis
-
Mogk A, Homuth G, Scholz C, Kim L, Schmid FX, Schmann W: The groE chaperonin machine is a major modulator of the CIRCE heat shock regulon of Bacillus subtilis. EMBO J 1997, 16:4579-4590. This paper demonstrates, both in vivo and in vitro, that the GroE rather than the DnaK-DnaJ chaperones are primarily responsible for modulating the activity of HrcA repressor by preventing its aggregation. When cellular GroE levels are reduced, large amounts of apparently inactive HrcA repressor are produced and the dnaK operon is induced. In contrast, overproduction of GroEL results in decreased expression of the dnaK operon. This shows a novel function of GroE as a major modulator of the heat-shock response.
-
(1997)
EMBO J
, vol.16
, pp. 4579-4590
-
-
Mogk, A.1
Homuth, G.2
Scholz, C.3
Kim, L.4
Schmid, F.X.5
Schmann, W.6
-
58
-
-
0030047969
-
Two different mechanisms are involved in the heat-shock regulation of chaperonin gene expression in Bradyrhizobium japonicum
-
Babst M, Hennecke H, Fischer H-M: Two different mechanisms are involved in the heat-shock regulation of chaperonin gene expression in Bradyrhizobium japonicum. Mol Microbiol 1996, 19:827-839.
-
(1996)
Mol Microbiol
, vol.19
, pp. 827-839
-
-
Babst, M.1
Hennecke, H.2
Fischer, H.-M.3
-
59
-
-
0032463068
-
Nonnative proteins induce expression of the Bacillus subtilis CIRCE regulon
-
Mogk A, Volker A, Engelmann S, Hecker M, Schumann W, Volker U: Nonnative proteins induce expression of the Bacillus subtilis CIRCE regulon. J Bacteriol 1998, 180:2895-2900.
-
(1998)
J Bacteriol
, vol.180
, pp. 2895-2900
-
-
Mogk, A.1
Volker, A.2
Engelmann, S.3
Hecker, M.4
Schumann, W.5
Volker, U.6
-
60
-
-
0031876826
-
Induced levels of heat shock proteins in a dnaK mutant of Lactococcus lactis
-
Koch B, Kilstrup M, Vogensen FK, Hammer K: Induced levels of heat shock proteins in a dnaK mutant of Lactococcus lactis. J Bacteriol 1998, 180:3873-3881.
-
(1998)
J Bacteriol
, vol.180
, pp. 3873-3881
-
-
Koch, B.1
Kilstrup, M.2
Vogensen, F.K.3
Hammer, K.4
-
61
-
-
0031561403
-
Chaperonin genes of the Synechocystis PCC 6803 are differentially regulated under light-dark transition during heat stress
-
Glatz A, Horvath I, Varvasovszki V, Kovacs E, Torok Z, Vigh L: Chaperonin genes of the Synechocystis PCC 6803 are differentially regulated under light-dark transition during heat stress. Biochem Biophys Res Commun 1997, 239:291-297.
-
(1997)
Biochem Biophys Res Commun
, vol.239
, pp. 291-297
-
-
Glatz, A.1
Horvath, I.2
Varvasovszki, V.3
Kovacs, E.4
Torok, Z.5
Vigh, L.6
-
62
-
-
0029830433
-
Transcriptional organization and regulation of the dnaK and groE operons of Chlamydia trachomatis
-
Tan M, Wong B, Engel JN: Transcriptional organization and regulation of the dnaK and groE operons of Chlamydia trachomatis. J Bacteriol 1996, 178:6983-6990.
-
(1996)
J Bacteriol
, vol.178
, pp. 6983-6990
-
-
Tan, M.1
Wong, B.2
Engel, J.N.3
-
63
-
-
0032541319
-
Molecular analysis of the dnaK locus of Leptospira interrogans serovar Copenhageni
-
Ballard SA, Go M, Segers RP, Adler B: Molecular analysis of the dnaK locus of Leptospira interrogans serovar Copenhageni. Gene 1998, 216:21-29.
-
(1998)
Gene
, vol.216
, pp. 21-29
-
-
Ballard, S.A.1
Go, M.2
Segers, R.P.3
Adler, B.4
-
64
-
-
0029890428
-
Heat shock activation of the groESL operon of Agrobacterium tumefaciens and the regulatory roles of the inverted repeat
-
Segal G, Ron EZ: Heat shock activation of the groESL operon of Agrobacterium tumefaciens and the regulatory roles of the inverted repeat. J Bacteriol 1996, 178:3634-3640.
-
(1996)
J Bacteriol
, vol.178
, pp. 3634-3640
-
-
Segal, G.1
Ron, E.Z.2
-
65
-
-
0029944771
-
Identification of a Caulobacter crescentus operon encoding hrcA, involved in negatively regulating heat-inducible transcription, and the chaperone gene grpE
-
Roberts RC, Toochinda C, Avedissian M, Baldini RL, Gomes SL, Shapiro L: Identification of a Caulobacter crescentus operon encoding hrcA, involved in negatively regulating heat-inducible transcription, and the chaperone gene grpE. J Bacteriol 1996, 178:1829-1841.
-
(1996)
J Bacteriol
, vol.178
, pp. 1829-1841
-
-
Roberts, R.C.1
Toochinda, C.2
Avedissian, M.3
Baldini, R.L.4
Gomes, S.L.5
Shapiro, L.6
-
66
-
-
0031944677
-
The CIRCE element and its putative repressor control cell cycle expression of the Caulobacter crescentus groESL operon
-
Baldini RL, Avedissian M, Gomes SL: The CIRCE element and its putative repressor control cell cycle expression of the Caulobacter crescentus groESL operon. J Bacteriol 1998, 180:1632-1641. This paper shows that the CIRCE/HrcA system plays dual roles in controlling the groE transcription in C. crescentus: cell-cycle dependent expression (mostly in predivisional cells) as well as temperature-dependent expression. This represents a novel function of CIRCE/HrcA apparently independent of, but possibly interconnected with, the stress response.
-
(1998)
J Bacteriol
, vol.180
, pp. 1632-1641
-
-
Baldini, R.L.1
Avedissian, M.2
Gomes, S.L.3
-
67
-
-
0031920693
-
A novel DNA element that controls bacterial heat shock gene expression
-
Narberhaus F, Kaser R, Nocker A, Hennecke H: A novel DNA element that controls bacterial heat shock gene expression. Mol Microbiol 1998, 28:315-323.
-
(1998)
Mol Microbiol
, vol.28
, pp. 315-323
-
-
Narberhaus, F.1
Kaser, R.2
Nocker, A.3
Hennecke, H.4
|