-
1
-
-
78049495073
-
Usefulness of the hsp60 gene for the identification and classification of Gram-negative anaerobic rods
-
20671088
-
Usefulness of the hsp60 gene for the identification and classification of Gram-negative anaerobic rods. Sakamoto M, Ohkuma M, J Med Microbiol 2010 59 Pt 11 1293 1302 20671088
-
(2010)
J Med Microbiol
, vol.59
, Issue.PART 11
, pp. 1293-1302
-
-
Sakamoto, M.1
Ohkuma, M.2
-
2
-
-
66749187185
-
Multiple chaperonins in bacteria-why so many?
-
10.1111/j.1574-6976.2009.00178.x 19416363
-
Multiple chaperonins in bacteria-why so many? Lund PA, FEMS Microbiol Rev 2009 33 4 785 800 10.1111/j.1574-6976.2009.00178.x 19416363
-
(2009)
FEMS Microbiol Rev
, vol.33
, Issue.4
, pp. 785-800
-
-
Lund, P.A.1
-
3
-
-
0034982311
-
Microbial molecular chaperones
-
DOI 10.1016/S0065-2911(01)44012-4
-
Microbial molecular chaperones. Lund PA, Adv Microb Physiol 2001 44 93 140 11407116 (Pubitemid 32500111)
-
(2001)
Advances in Microbial Physiology
, vol.44
, pp. 93-140
-
-
Lund, P.A.1
-
5
-
-
33646945039
-
GroEL: More than Just a Folding Cage
-
DOI 10.1016/j.cell.2006.05.021, PII S0092867406006325
-
GroEL: More than Just a folding cage. Radford SE, Cell 2006 125 5 831 833 10.1016/j.cell.2006.05.021 16751091 (Pubitemid 43795189)
-
(2006)
Cell
, vol.125
, Issue.5
, pp. 831-833
-
-
Radford, S.E.1
-
6
-
-
33746265142
-
GroEL-mediated protein folding: Making the impossible, possible
-
DOI 10.1080/10409230600760382, PII M315627H22375T33
-
GroEL-mediated protein folding: making the impossible, possible. Lin Z, Rye HS, Crit Rev Biochem Mol Biol 2006 41 4 211 239 10.1080/10409230600760382 16849107 (Pubitemid 44100582)
-
(2006)
Critical Reviews in Biochemistry and Molecular Biology
, vol.41
, Issue.4
, pp. 211-239
-
-
Lin, Z.1
Rye, H.2
-
7
-
-
0030910349
-
GroEL-mediated protein folding
-
GroEL-mediated protein folding. Fenton WA, Horwich AL, Protein Sci 1997 6 4 743 760 9098884 (Pubitemid 27154801)
-
(1997)
Protein Science
, vol.6
, Issue.4
, pp. 743-760
-
-
Fenton, W.A.1
Horwich, A.L.2
-
8
-
-
0029858706
-
Mechanism of chaperonin action: GroES binding and release can drive GroEL-mediated protein folding in the absence of ATP hydrolysis
-
Mechanism of chaperonin action: GroES binding and release can drive GroEL-mediated protein folding in the absence of ATP hydrolysis. Hayer-Hartl MK, Weber F, Hartl FU, EMBO J 1996 15 22 6111 6121 8947033 (Pubitemid 26397883)
-
(1996)
EMBO Journal
, vol.15
, Issue.22
, pp. 6111-6121
-
-
Hayer-Hartl, M.K.1
Weber, F.2
Hartl, F.U.3
-
9
-
-
0030045870
-
Protein folding in the central cavity of the Gro-EL-GroES chaperonin complex
-
DOI 10.1038/379420a0
-
Protein folding in the central cavity of the GroEL-GroES chaperonin complex. Mayhew M, Da Silva AC, Martin J, Erdjument-Bromage H, Tempst P, Hartl FU, Nature 1996 379 6564 420 426 10.1038/379420a0 8559246 (Pubitemid 26039521)
-
(1996)
Nature
, vol.379
, Issue.6564
, pp. 420-426
-
-
Mayhew, M.1
Da Silva, A.C.R.2
Martin, J.3
Erdjument-Bromage, H.4
Tempst, P.5
Hartl, F.U.6
-
10
-
-
84884973475
-
Chaperonin 60: A paradoxical, evolutionarily conserved protein family with multiple moonlighting functions
-
Chaperonin 60: a paradoxical, evolutionarily conserved protein family with multiple moonlighting functions. Henderson B, Fares MA, Lund PA, Biol Rev Camb Philos Soc 2013
-
(2013)
Biol Rev Camb Philos Soc
-
-
Henderson, B.1
Fares, M.A.2
Lund, P.A.3
-
11
-
-
0023391343
-
Induction of the heat shock regulon does not produce thermotolerance in Escherichia coli
-
10.1101/gad.1.6.525 3315852
-
Induction of the heat shock regulon does not produce thermotolerance in Escherichia coli. VanBogelen RA, Acton MA, Neidhardt FC, Genes Dev 1987 1 6 525 531 10.1101/gad.1.6.525 3315852
-
(1987)
Genes Dev
, vol.1
, Issue.6
, pp. 525-531
-
-
Vanbogelen, R.A.1
Acton, M.A.2
Neidhardt, F.C.3
-
12
-
-
0024554107
-
The groES and groEL heat shock gene products of Escherichia coli are essential for bacterial growth at all temperatures
-
The groES and groEL heat shock gene products of Escherichia coli are essential for bacterial growth at all temperatures. Fayet O, Ziegelhoffer T, Georgopoulos C, J Bacteriol 1989 171 3 1379 1385 2563997 (Pubitemid 19080775)
-
(1989)
Journal of Bacteriology
, vol.171
, Issue.3
, pp. 1379-1385
-
-
Fayet, O.1
Ziegelhoffer, T.2
Georgopoulos, C.3
-
13
-
-
22744447508
-
Proteome-wide analysis of chaperonin-dependent protein folding in Escherichia coli
-
DOI 10.1016/j.cell.2005.05.028, PII S0092867405005441
-
Proteome-wide analysis of chaperonin-dependent protein folding in Escherichia coli. Kerner MJ, Naylor DJ, Ishihama Y, Maier T, Chang HC, Stines AP, Georgopoulos C, Frishman D, Hayer-Hartl M, Mann M, et al. Cell 2005 122 2 209 220 10.1016/j.cell.2005.05.028 16051146 (Pubitemid 41032985)
-
(2005)
Cell
, vol.122
, Issue.2
, pp. 209-220
-
-
Kerner, M.J.1
Naylor, D.J.2
Ishihama, Y.3
Maier, T.4
Chang, H.-C.5
Stines, A.P.6
Georgopoulos, C.7
Frishman, D.8
Hayer-Hartl, M.9
Mann, M.10
Hartl, F.U.11
-
14
-
-
0027943510
-
The crystal structure of the bacterial chaperonin GroEL at 2.8 A
-
DOI 10.1038/371578a0
-
The crystal structure of the bacterial chaperonin GroEL at 2.8 A. Braig K, Otwinowski Z, Hegde R, Boisvert DC, Joachimiak A, Horwich AL, Sigler PB, Nature 1994 371 6498 578 586 10.1038/371578a0 7935790 (Pubitemid 24315736)
-
(1994)
Nature
, vol.371
, Issue.6498
, pp. 578-586
-
-
Braig, K.1
Otwinowski, Z.2
Hegde, R.3
Boisvert, D.C.4
Joachimiak, A.5
Horwich, A.L.6
Sigler, P.B.7
-
15
-
-
0030067634
-
The crystal structure of the GroES co-chaperonin at 2.8 A resolution
-
DOI 10.1038/379037a0
-
The crystal structure of the GroES co-chaperonin at 2.8 A resolution. Hunt JF, Weaver AJ, Landry SJ, Gierasch L, Deisenhofer J, Nature 1996 379 6560 37 45 10.1038/379037a0 8538739 (Pubitemid 26008133)
-
(1996)
Nature
, vol.379
, Issue.6560
, pp. 37-45
-
-
Hunt, J.F.1
Weaver, A.J.2
Landry, S.J.3
Gierasch, L.4
Deisenhofer, J.5
-
16
-
-
0030870719
-
The crystal structure of the asymmetric GroEL-GroES-(ADP)7 chaperonin complex
-
DOI 10.1038/41944
-
The crystal structure of the asymmetric GroEL-GroES-(ADP)7 chaperonin complex. Xu Z, Horwich AL, Sigler PB, Nature 1997 388 6644 741 750 10.1038/41944 9285585 (Pubitemid 27375147)
-
(1997)
Nature
, vol.388
, Issue.6644
, pp. 741-750
-
-
Xu, Z.1
Horwich, A.L.2
Sigler, P.B.3
-
18
-
-
24044434243
-
Chaperomics: In vivo GroEL function defined
-
DOI 10.1016/j.cub.2005.08.025, PII S0960982205009450
-
Chaperomics: in vivo GroEL function defined. Ellis RJ, Curr Biol 2005 15 17 661 663 10.1016/j.cub.2005.08.025 16139196 (Pubitemid 41219580)
-
(2005)
Current Biology
, vol.15
, Issue.17
-
-
Ellis, R.J.1
-
19
-
-
84934438837
-
Protein misassembly: Macromolecular crowding and molecular chaperones
-
10.1007/978-0-387-39975-1-1 17205670
-
Protein misassembly: macromolecular crowding and molecular chaperones. Ellis RJ, Adv Exp Med Biol 2007 594 1 13 10.1007/978-0-387-39975-1-1 17205670
-
(2007)
Adv Exp Med Biol
, vol.594
, pp. 1-13
-
-
Ellis, R.J.1
-
20
-
-
36949033246
-
Two families of chaperonin: Physiology and mechanism
-
10.1146/annurev.cellbio.23.090506.123555 17489689
-
Two families of chaperonin: physiology and mechanism. Horwich AL, Fenton WA, Chapman E, Farr GW, Annu Rev Cell Dev Biol 2007 23 115 145 10.1146/annurev.cellbio.23.090506.123555 17489689
-
(2007)
Annu Rev Cell Dev Biol
, vol.23
, pp. 115-145
-
-
Horwich, A.L.1
Fenton, W.A.2
Chapman, E.3
Farr, G.W.4
-
21
-
-
80051503029
-
DiaPep277 peptide therapy in the context of other immune intervention trials in type 1 diabetes
-
10.1517/14712598.2011.599319 21751937
-
DiaPep277 peptide therapy in the context of other immune intervention trials in type 1 diabetes. Tuccinardi D, Fioriti E, Manfrini S, D'Amico E, Pozzilli P, Expert Opin Biol Ther 2011 11 9 1233 1240 10.1517/14712598.2011. 599319 21751937
-
(2011)
Expert Opin Biol Ther
, vol.11
, Issue.9
, pp. 1233-1240
-
-
Tuccinardi, D.1
Fioriti, E.2
Manfrini, S.3
D'Amico, E.4
Pozzilli, P.5
-
22
-
-
82755182665
-
Bystander suppression of experimental arthritis by nasal administration of a heat shock protein peptide
-
10.1136/ard.2010.136994 21914624
-
Bystander suppression of experimental arthritis by nasal administration of a heat shock protein peptide. Zonneveld-Huijssoon E, Roord ST, De Jager W, Klein M, Albani S, Anderton SM, Kuis W, Van Wijk F, Prakken BJ, Ann Rheum Dis 2011 70 12 2199 2206 10.1136/ard.2010.136994 21914624
-
(2011)
Ann Rheum Dis
, vol.70
, Issue.12
, pp. 2199-2206
-
-
Zonneveld-Huijssoon, E.1
Roord, S.T.2
De Jager, W.3
Klein, M.4
Albani, S.5
Anderton, S.M.6
Kuis, W.7
Van Wijk, F.8
Prakken, B.J.9
-
23
-
-
80053515773
-
Vaccination leads to an aberrant FOXP3 T-cell response in non-remitting juvenile idiopathic arthritis
-
10.1136/ard.2010.145151 21859687
-
Vaccination leads to an aberrant FOXP3 T-cell response in non-remitting juvenile idiopathic arthritis. Ronaghy A, De Jager W, Zonneveld-Huijssoon E, Klein MR, Van Wijk F, Rijkers GT, Kuis W, Wulffraat NM, Prakken BJ, Ann Rheum Dis 2011 70 11 2037 2043 10.1136/ard.2010.145151 21859687
-
(2011)
Ann Rheum Dis
, vol.70
, Issue.11
, pp. 2037-2043
-
-
Ronaghy, A.1
De Jager, W.2
Zonneveld-Huijssoon, E.3
Klein, M.R.4
Van Wijk, F.5
Rijkers, G.T.6
Kuis, W.7
Wulffraat, N.M.8
Prakken, B.J.9
-
24
-
-
5144220427
-
Three GroEL homologues from Rhizobium leguminosarum have distinct in vitro properties
-
DOI 10.1016/j.bbrc.2004.09.140, PII S0006291X04021874
-
Three GroEL homologues from Rhizobium leguminosarum have distinct in vitro properties. George R, Kelly SM, Price NC, Erbse A, Fisher M, Lund PA, Biochem Biophys Res Commun 2004 324 2 822 828 10.1016/j.bbrc.2004.09.140 15474501 (Pubitemid 39345589)
-
(2004)
Biochemical and Biophysical Research Communications
, vol.324
, Issue.2
, pp. 822-828
-
-
George, R.1
Kelly, S.M.2
Price, N.C.3
Erbse, A.4
Fisher, M.5
Lund, P.A.6
-
25
-
-
20044366766
-
Two of the three groEL homologues in Rhizobium leguminosarum are dispensable for normal growth
-
DOI 10.1007/s00203-005-0768-7
-
Two of the three groEL homologues in Rhizobium leguminosarum are dispensable for normal growth. Rodriguez-Quinones F, Maguire M, Wallington EJ, Gould PS, Yerko V, Downie JA, Lund PA, Arch Microbiol 2005 183 4 253 265 10.1007/s00203-005-0768-7 15830189 (Pubitemid 40768015)
-
(2005)
Archives of Microbiology
, vol.183
, Issue.4
, pp. 253-265
-
-
Rodriguez-Quinones, F.1
Maguire, M.2
Wallington, E.J.3
Gould, P.S.4
Yerko, V.5
Downie, J.A.6
Lund, P.A.7
-
26
-
-
28344453690
-
GroEL1: A dedicated chaperone involved in mycolic acid biosynthesis during biofilm formation in mycobacteria
-
DOI 10.1016/j.cell.2005.09.012, PII S0092867405009657
-
GroEL1: a dedicated chaperone involved in mycolic acid biosynthesis during biofilm formation in mycobacteria. Ojha A, Anand M, Bhatt A, Kremer L, Jacobs WR Jr, Hatfull GF, Cell 2005 123 5 861 873 10.1016/j.cell.2005.09.012 16325580 (Pubitemid 41721032)
-
(2005)
Cell
, vol.123
, Issue.5
, pp. 861-873
-
-
Ojha, A.1
Anand, M.2
Bhatt, A.3
Kremer, L.4
Jacobs Jr., W.R.5
Hatfull, G.F.6
-
27
-
-
33947433661
-
Only one of five groEL genes is required for viability and successful symbiosis in Sinorhizobium meliloti
-
DOI 10.1128/JB.01542-06
-
Only one of five groEL genes is required for viability and successful symbiosis in Sinorhizobium meliloti. Bittner AN, Foltz A, Oke V, J Bacteriol 2007 189 5 1884 1889 10.1128/JB.01542-06 17158666 (Pubitemid 46446151)
-
(2007)
Journal of Bacteriology
, vol.189
, Issue.5
, pp. 1884-1889
-
-
Bittner, A.N.1
Foltz, A.2
Oke, V.3
-
28
-
-
34548043303
-
Homologous cpn60 genes in Rhizobium leguminosarum are not functionally equivalent
-
DOI 10.1379/CSC-227R.1
-
Homologous cpn60 genes in Rhizobium leguminosarum are not functionally equivalent. Gould PS, Burgar HR, Lund PA, Cell Stress Chaperones 2007 12 2 123 131 10.1379/CSC-227R.1 17688191 (Pubitemid 350224161)
-
(2007)
Cell Stress and Chaperones
, vol.12
, Issue.2
, pp. 123-131
-
-
Gould, P.S.1
Burgar, H.R.2
Lund, P.A.3
-
29
-
-
77949692645
-
Myxococcus xanthus viability depends on groEL supplied by either of two genes, but the paralogs have different functions during heat shock, predation, and development
-
10.1128/JB.01458-09 20139189
-
Myxococcus xanthus viability depends on groEL supplied by either of two genes, but the paralogs have different functions during heat shock, predation, and development. Li J, Wang Y, Zhang CY, Zhang WY, Jiang DM, Wu ZH, Liu H, Li YZ, J Bacteriol 2010 192 7 1875 1881 10.1128/JB.01458-09 20139189
-
(2010)
J Bacteriol
, vol.192
, Issue.7
, pp. 1875-1881
-
-
Li, J.1
Wang, Y.2
Zhang, C.Y.3
Zhang, W.Y.4
Jiang, D.M.5
Wu, Z.H.6
Liu, H.7
Li, Y.Z.8
-
30
-
-
84874780186
-
Mechanisms involved in the functional divergence of duplicated GroEL chaperonins in Myxococcus xanthus DK1622
-
10.1371/journal.pgen.1003306 23437010
-
Mechanisms involved in the functional divergence of duplicated GroEL chaperonins in Myxococcus xanthus DK1622. Wang Y, Zhang W-Y, Zhang Z, Li J, Li Z-F, Tan Z-G, Zhang T-T, Wu Z-H, Liu H, Li Y-Z, PLoS Genet 2013 9 2 1003306 10.1371/journal.pgen.1003306 23437010
-
(2013)
PLoS Genet
, vol.9
, Issue.2
, pp. 51003306
-
-
Wang, Y.1
Zhang, W.-Y.2
Zhang, Z.3
Li, J.4
Li, Z.-F.5
Tan, Z.-G.6
Zhang, T.-T.7
Wu, Z.-H.8
Liu, H.9
Li, Y.-Z.10
-
31
-
-
0036632266
-
The evolution of the heat-shock protein GroEL from Buchnera, the primary endosymbiont of aphids, is governed by positive selection
-
The evolution of the heat-shock protein GroEL from Buchnera, the primary endosymbiont of aphids, is governed by positive selection. Fares MA, Barrio E, Sabater-Munoz B, Moya A, Mol Biol Evol 2002 19 7 1162 1170 10.1093/ oxfordjournals.molbev.a004174 12082135 (Pubitemid 34743240)
-
(2002)
Molecular Biology and Evolution
, vol.19
, Issue.7
, pp. 1162-1170
-
-
Fares, M.A.1
Barrio, E.2
Sabater-Munoz, B.3
Moya, A.4
-
32
-
-
34250674510
-
In silico identification of functional divergence between the multiple groEL gene paralogs in Chlamydiae
-
DOI 10.1186/1471-2148-7-81
-
In silico identification of functional divergence between the multiple groEL gene paralogs in Chlamydiae. McNally D, Fares MA, BMC Evol Biol 2007 7 81 10.1186/1471-2148-7-81 17519003 (Pubitemid 46932061)
-
(2007)
BMC Evolutionary Biology
, vol.7
, pp. 81
-
-
McNally, D.1
Fares, M.A.2
-
33
-
-
67650467983
-
Characterisation of mutations in GroES that allow GroEL to function as a single ring
-
10.1016/j.febslet.2009.06.027 19545569
-
Characterisation of mutations in GroES that allow GroEL to function as a single ring. Liu H, Kovacs E, Lund PA, FEBS Lett 2009 583 14 2365 2371 10.1016/j.febslet.2009.06.027 19545569
-
(2009)
FEBS Lett
, vol.583
, Issue.14
, pp. 2365-2371
-
-
Liu, H.1
Kovacs, E.2
Lund, P.A.3
-
34
-
-
77951974784
-
A systematic survey of in vivo obligate chaperonin-dependent substrates
-
10.1038/emboj.2010.52 20360681
-
A systematic survey of in vivo obligate chaperonin-dependent substrates. Fujiwara K, Ishihama Y, Nakahigashi K, Soga T, Taguchi H, EMBO J 2010 29 9 1552 1564 10.1038/emboj.2010.52 20360681
-
(2010)
EMBO J
, vol.29
, Issue.9
, pp. 1552-1564
-
-
Fujiwara, K.1
Ishihama, Y.2
Nakahigashi, K.3
Soga, T.4
Taguchi, H.5
-
36
-
-
0028113299
-
Residues in chaperonin GroEL required for polypeptide binding and release
-
DOI 10.1038/371614a0
-
Residues in chaperonin GroEL required for polypeptide binding and release. Fenton WA, Kashi Y, Furtak K, Horwich AL, Nature 1994 371 6498 614 619 10.1038/371614a0 7935796 (Pubitemid 24315744)
-
(1994)
Nature
, vol.371
, Issue.6498
, pp. 614-619
-
-
Fenton, W.A.1
Kashi, Y.2
Furtak, K.3
Horwich, A.L.4
-
37
-
-
18544362952
-
Mutual information in protein multiple sequence alignments reveals two classes of coevolving positions
-
DOI 10.1021/bi050293e
-
Mutual information in protein multiple sequence alignments reveals two classes of coevolving positions. Gloor GB, Martin LC, Wahl LM, Dunn SD, Biochemistry 2005 44 19 7156 7165 10.1021/bi050293e 15882054 (Pubitemid 40656660)
-
(2005)
Biochemistry
, vol.44
, Issue.19
, pp. 7156-7165
-
-
Gloor, G.B.1
Martin, L.C.2
Wahl, L.M.3
Dunn, S.D.4
-
38
-
-
66149185556
-
Compensatory mutations are repeatable and clustered within proteins
-
10.1098/rspb.2008.1846 19324785
-
Compensatory mutations are repeatable and clustered within proteins. Davis BH, Poon AF, Whitlock MC, Proc Biol Sci 2009 276 1663 1823 1827 10.1098/rspb.2008.1846 19324785
-
(2009)
Proc Biol Sci
, vol.276
, Issue.1663
, pp. 1823-1827
-
-
Davis, B.H.1
Poon, A.F.2
Whitlock, M.C.3
-
39
-
-
33750998062
-
Computational and Statistical methods to explore the various dimensions of protein evolution
-
10.2174/157489306777011950
-
Computational and Statistical methods to explore the various dimensions of protein evolution. Fares MA, Current Bioinformatics 2006 1 207 217 10.2174/157489306777011950
-
(2006)
Current Bioinformatics
, vol.1
, pp. 207-217
-
-
Fares, M.A.1
-
40
-
-
41049083552
-
Why should we care about molecular coevolution?
-
19204805
-
Why should we care about molecular coevolution? Codoner FM, Fares MA, Evol Bioinform Online 2008 4 29 38 19204805
-
(2008)
Evol Bioinform Online
, vol.4
, pp. 29-38
-
-
Codoner, F.M.1
Fares, M.A.2
-
41
-
-
0034064511
-
Conservation among HSP60 sequences in relation to structure, function, and evolution
-
Conservation among HSP60 sequences in relation to structure, function, and evolution. Brocchieri L, Karlin S, Protein Sci 2000 9 3 476 486 10752609 (Pubitemid 30171638)
-
(2000)
Protein Science
, vol.9
, Issue.3
, pp. 476-486
-
-
Brocchieri, L.1
Karlin, S.2
-
42
-
-
43649101406
-
Reducing the false positive rate in the non-parametric analysis of molecular coevolution
-
DOI 10.1186/1471-2148-8-106
-
Reducing the false positive rate in the non-parametric analysis of molecular coevolution. Codoner FM, O'Dea S, Fares MA, BMC Evol Biol 2008 8 106 10.1186/1471-2148-8-106 18402697 (Pubitemid 351681500)
-
(2008)
BMC Evolutionary Biology
, vol.8
, Issue.1
, pp. 106
-
-
Codoner, F.M.1
O'Dea, S.2
Fares, M.A.3
-
43
-
-
68749107059
-
Protein sectors: Evolutionary units of three-dimensional structure
-
10.1016/j.cell.2009.07.038 19703402
-
Protein sectors: evolutionary units of three-dimensional structure. Halabi N, Rivoire O, Leibler S, Ranganathan R, Cell 2009 138 4 774 786 10.1016/j.cell.2009.07.038 19703402
-
(2009)
Cell
, vol.138
, Issue.4
, pp. 774-786
-
-
Halabi, N.1
Rivoire, O.2
Leibler, S.3
Ranganathan, R.4
-
44
-
-
42149117075
-
A Mycobacterium tuberculosis mutant lacking the groEL homologue cpn60.1 is viable but fails to induce an inflammatory response in animal models of infection
-
DOI 10.1128/IAI.01078-07
-
A Mycobacterium tuberculosis mutant lacking the groEL homologue cpn60.1 is viable but fails to induce an inflammatory response in animal models of infection. Hu Y, Henderson B, Lund PA, Tormay P, Ahmed MT, Gurcha SS, Besra GS, Coates AR, Infect Immun 2008 76 4 1535 1546 10.1128/IAI.01078-07 18227175 (Pubitemid 351561997)
-
(2008)
Infection and Immunity
, vol.76
, Issue.4
, pp. 1535-1546
-
-
Hu, Y.1
Henderson, B.2
Lund, P.A.3
Tormay, P.4
Ahmed, M.T.5
Gurcha, S.S.6
Besra, G.S.7
Coates, A.R.M.8
-
45
-
-
0031964764
-
Potato leafroll virus binds to the equatorial domain of the aphid endosymbiotic GroEL homolog
-
Potato leafroll virus binds to the equatorial domain of the aphid endosymbiotic GroEL homolog. Hogenhout SA, van der Wilk F, Verbeek M, Goldbach RW, van den Heuvel JF, J Virol 1998 72 1 358 365 9420234 (Pubitemid 28048847)
-
(1998)
Journal of Virology
, vol.72
, Issue.1
, pp. 358-365
-
-
Hogenhout, S.A.1
Van Der Wilk, F.2
Verbeek, M.3
Goldbach, R.W.4
Van Den Heuvel, J.F.J.M.5
-
46
-
-
0034003828
-
Identifying the determinants in the equatorial domain of Buchnera GroEL implicated in binding Potato leafroll virus
-
DOI 10.1128/JVI.74.10.4541-4548.2000
-
Identifying the determinants in the equatorial domain of Buchnera GroEL implicated in binding Potato leafroll virus. Hogenhout SA, van der Wilk F, Verbeek M, Goldbach RW, van den Heuvel JF, J Virol 2000 74 10 4541 4548 10.1128/JVI.74.10.4541-4548.2000 10775590 (Pubitemid 30237879)
-
(2000)
Journal of Virology
, vol.74
, Issue.10
, pp. 4541-4548
-
-
Hogenhout, S.A.1
Van Der Wilk, F.2
Verbeek, M.3
Goldbach, R.W.4
Van Den Heuvel, J.F.J.M.5
-
47
-
-
20444426807
-
Networks of coevolving sites in structural and functional domains of serpin proteins
-
DOI 10.1093/molbev/msi157
-
Networks of coevolving sites in structural and functional domains of serpin proteins. Buck MJ, Atchley WR, Mol Biol Evol 2005 22 7 1627 1634 10.1093/molbev/msi157 15858204 (Pubitemid 40800691)
-
(2005)
Molecular Biology and Evolution
, vol.22
, Issue.7
, pp. 1627-1634
-
-
Buck, M.J.1
Atchley, W.R.2
-
48
-
-
77951544522
-
Functionally compensating coevolving positions are neither homoplasic nor conserved in clades
-
10.1093/molbev/msq004 20065119
-
Functionally compensating coevolving positions are neither homoplasic nor conserved in clades. Gloor GB, Tyagi G, Abrassart DM, Kingston AJ, Fernandes AD, Dunn SD, Brandl CJ, Mol Biol Evol 2010 27 5 1181 1191 10.1093/molbev/msq004 20065119
-
(2010)
Mol Biol Evol
, vol.27
, Issue.5
, pp. 1181-1191
-
-
Gloor, G.B.1
Tyagi, G.2
Abrassart, D.M.3
Kingston, A.J.4
Fernandes, A.D.5
Dunn, S.D.6
Brandl, C.J.7
-
49
-
-
70349641588
-
The human protein coevolution network
-
10.1101/gr.092452.109 19696150
-
The human protein coevolution network. Tillier ER, Charlebois RL, Genome Res 2009 19 10 1861 1871 10.1101/gr.092452.109 19696150
-
(2009)
Genome Res
, vol.19
, Issue.10
, pp. 1861-1871
-
-
Tillier, E.R.1
Charlebois, R.L.2
-
50
-
-
33751017993
-
CAPS: Coevolution analysis using protein sequences
-
DOI 10.1093/bioinformatics/btl493
-
CAPS: coevolution analysis using protein sequences. Fares MA, McNally D, Bioinformatics 2006 22 22 2821 2822 10.1093/bioinformatics/btl493 17005535 (Pubitemid 44742405)
-
(2006)
Bioinformatics
, vol.22
, Issue.22
, pp. 2821-2822
-
-
Fares, M.A.1
McNally, D.2
-
51
-
-
34047228912
-
Functional coevolutionary networks of the Hsp70-Hop-Hsp90 system revealed through computational analyses
-
DOI 10.1093/molbev/msm022
-
Functional coevolutionary networks of the Hsp70-Hop-Hsp90 system revealed through computational analyses. Travers SA, Fares MA, Mol Biol Evol 2007 24 4 1032 1044 10.1093/molbev/msm022 17267421 (Pubitemid 46536714)
-
(2007)
Molecular Biology and Evolution
, vol.24
, Issue.4
, pp. 1032-1044
-
-
Travers, S.A.A.1
Fares, M.A.2
-
52
-
-
37549013377
-
A study of the coevolutionary patterns operating within the env gene of the HIV-1 group M subtypes
-
10.1093/molbev/msm213 17921487
-
A study of the coevolutionary patterns operating within the env gene of the HIV-1 group M subtypes. Travers SA, Tully DC, McCormack GP, Fares MA, Mol Biol Evol 2007 24 12 2787 2801 10.1093/molbev/msm213 17921487
-
(2007)
Mol Biol Evol
, vol.24
, Issue.12
, pp. 2787-2801
-
-
Travers, S.A.1
Tully, D.C.2
McCormack, G.P.3
Fares, M.A.4
-
53
-
-
0037433701
-
Using multiple interdependency to separate functional from phylogenetic correlations in protein alignments
-
DOI 10.1093/bioinformatics/btg072
-
Using multiple interdependency to separate functional from phylogenetic correlations in protein alignments. Tillier ER, Lui TW, Bioinformatics 2003 19 6 750 755 10.1093/bioinformatics/btg072 12691987 (Pubitemid 36511899)
-
(2003)
Bioinformatics
, vol.19
, Issue.6
, pp. 750-755
-
-
Tillier, E.R.M.1
Lui, T.W.H.2
-
54
-
-
62849093922
-
Identification of coevolving residues and coevolution potentials emphasizing structure, bond formation and catalytic coordination in protein evolution
-
10.1371/journal.pone.0004762 19274093
-
Identification of coevolving residues and coevolution potentials emphasizing structure, bond formation and catalytic coordination in protein evolution. Little DY, Chen L, PLoS One 2009 4 3 4762 10.1371/journal.pone. 0004762 19274093
-
(2009)
PLoS One
, vol.4
, Issue.3
, pp. 54762
-
-
Little, D.Y.1
Chen, L.2
-
55
-
-
33646897305
-
Structural Features of the GroEL-GroES Nano-Cage Required for Rapid Folding of Encapsulated Protein
-
DOI 10.1016/j.cell.2006.04.027, PII S0092867406005605
-
Structural features of the GroEL-GroES nano-cage required for rapid folding of encapsulated protein. Tang YC, Chang HC, Roeben A, Wischnewski D, Wischnewski N, Kerner MJ, Hartl FU, Hayer-Hartl M, Cell 2006 125 5 903 914 10.1016/j.cell.2006.04.027 16751100 (Pubitemid 43795198)
-
(2006)
Cell
, vol.125
, Issue.5
, pp. 903-914
-
-
Tang, Y.-C.1
Chang, H.-C.2
Roeben, A.3
Wischnewski, D.4
Wischnewski, N.5
Kerner, M.J.6
Hartl, F.U.7
Hayer-Hartl, M.8
-
56
-
-
0029004759
-
Nested cooperativity in the ATPase activity of the oligomeric chaperonin GroEL
-
10.1021/bi00016a001 7727391
-
Nested cooperativity in the ATPase activity of the oligomeric chaperonin GroEL. Yifrach O, Horovitz A, Biochemistry 1995 34 16 5303 5308 10.1021/bi00016a001 7727391
-
(1995)
Biochemistry
, vol.34
, Issue.16
, pp. 5303-5308
-
-
Yifrach, O.1
Horovitz, A.2
-
57
-
-
0035783164
-
Review: Allostery in chaperonins
-
10.1006/jsbi.2001.4377 11580260
-
Review: allostery in chaperonins. Horovitz A, Fridmann Y, Kafri G, Yifrach O, J Struct Biol 2001 135 2 104 114 10.1006/jsbi.2001.4377 11580260
-
(2001)
J Struct Biol
, vol.135
, Issue.2
, pp. 104-114
-
-
Horovitz, A.1
Fridmann, Y.2
Kafri, G.3
Yifrach, O.4
-
58
-
-
0028785583
-
Mechanism of GroEL action: Productive release of polypeptide from a sequestered position under GroES
-
10.1016/0092-8674(95)90098-5 7585961
-
Mechanism of GroEL action: productive release of polypeptide from a sequestered position under GroES. Weissman JS, Hohl CM, Kovalenko O, Kashi Y, Chen S, Braig K, Saibil HR, Fenton WA, Horwich AL, Cell 1995 83 4 577 587 10.1016/0092-8674(95)90098-5 7585961
-
(1995)
Cell
, vol.83
, Issue.4
, pp. 577-587
-
-
Weissman, J.S.1
Hohl, C.M.2
Kovalenko, O.3
Kashi, Y.4
Chen, S.5
Braig, K.6
Saibil, H.R.7
Fenton, W.A.8
Horwich, A.L.9
-
59
-
-
79954553641
-
Protein coadaptation and the design of novel approaches to identify protein-protein interactions
-
10.1002/iub.455 21488148
-
Protein coadaptation and the design of novel approaches to identify protein-protein interactions. Fares MA, Ruiz-Gonzalez MX, Labrador JP, IUBMB Life 2011 63 4 264 271 10.1002/iub.455 21488148
-
(2011)
IUBMB Life
, vol.63
, Issue.4
, pp. 264-271
-
-
Fares, M.A.1
Ruiz-Gonzalez, M.X.2
Labrador, J.P.3
-
60
-
-
36448991500
-
Clustal W and Clustal X version 2.0
-
DOI 10.1093/bioinformatics/btm404
-
Clustal W and Clustal X version 2.0. Larkin MA, Blackshields G, Brown NP, Chenna R, McGettigan PA, McWilliam H, Valentin F, Wallace IM, Wilm A, Lopez R, et al. Bioinformatics 2007 23 21 2947 2948 10.1093/bioinformatics/btm404 17846036 (Pubitemid 350162903)
-
(2007)
Bioinformatics
, vol.23
, Issue.21
, pp. 2947-2948
-
-
Larkin, M.A.1
Blackshields, G.2
Brown, N.P.3
Chenna, R.4
Mcgettigan, P.A.5
McWilliam, H.6
Valentin, F.7
Wallace, I.M.8
Wilm, A.9
Lopez, R.10
Thompson, J.D.11
Gibson, T.J.12
Higgins, D.G.13
-
61
-
-
0031574072
-
The CLUSTAL X windows interface: Flexible strategies for multiple sequence alignment aided by quality analysis tools
-
DOI 10.1093/nar/25.24.4876
-
The CLUSTAL-X windows interface: flexible strategies for multiple sequence alignment aided by quality analysis tools. Thompson JD, Gibson TJ, Plewniak F, Jeanmougin F, Higgins DG, Nucleic Acids Res 1997 25 24 4876 4882 10.1093/nar/25.24.4876 9396791 (Pubitemid 28022245)
-
(1997)
Nucleic Acids Research
, vol.25
, Issue.24
, pp. 4876-4882
-
-
Thompson, J.D.1
Gibson, T.J.2
Plewniak, F.3
Jeanmougin, F.4
Higgins, D.G.5
-
63
-
-
79551587720
-
Cytoscape 2.8: New features for data integration and network visualization
-
10.1093/bioinformatics/btq675 21149340
-
Cytoscape 2.8: new features for data integration and network visualization. Smoot ME, Ono K, Ruscheinski J, Wang PL, Ideker T, Bioinformatics 2011 27 3 431 432 10.1093/bioinformatics/btq675 21149340
-
(2011)
Bioinformatics
, vol.27
, Issue.3
, pp. 431-432
-
-
Smoot, M.E.1
Ono, K.2
Ruscheinski, J.3
Wang, P.L.4
Ideker, T.5
-
64
-
-
33744457709
-
A novel method for detecting intramolecular coevolution: Adding a further dimension to selective constraints analyses
-
DOI 10.1534/genetics.105.053249
-
A novel method for detecting intramolecular coevolution: adding a further dimension to selective constraints analyses. Fares MA, Travers SA, Genetics 2006 173 1 9 23 10.1534/genetics.105.053249 16547113 (Pubitemid 43800180)
-
(2006)
Genetics
, vol.173
, Issue.1
, pp. 9-23
-
-
Fares, M.A.1
Travers, S.A.A.2
|