-
1
-
-
27144438677
-
Erv1 mediates the Mia40-dependent protein import pathway and provides a functional link to the respiratory chain by shuttling electrons to cytochrome c
-
Allen S, Balabanidou V, Sideris DP, Lisowsky T, Tokatlidis K. Erv1 mediates the Mia40-dependent protein import pathway and provides a functional link to the respiratory chain by shuttling electrons to cytochrome c. J. Mol. Biol. 2005, 353:937-944.
-
(2005)
J. Mol. Biol.
, vol.353
, pp. 937-944
-
-
Allen, S.1
Balabanidou, V.2
Sideris, D.P.3
Lisowsky, T.4
Tokatlidis, K.5
-
2
-
-
77951295195
-
QSOX contains a pseudo-dimer of functional and degenerate sulfhydryl oxidase domains
-
Alon A, Heckler EJ, Thorpe C, Fass D. QSOX contains a pseudo-dimer of functional and degenerate sulfhydryl oxidase domains. FEBS Lett. 2010, 584:1521-1525.
-
(2010)
FEBS Lett.
, vol.584
, pp. 1521-1525
-
-
Alon, A.1
Heckler, E.J.2
Thorpe, C.3
Fass, D.4
-
3
-
-
67349189383
-
The kinetics of formation of native ribonuclease during oxidation of the reduced polypeptide chain
-
Anfinsen CB, Haber E, Sela M, White FH. The kinetics of formation of native ribonuclease during oxidation of the reduced polypeptide chain. Proc. Natl Acad. Sci. USA 1961, 47:1309-1314.
-
(1961)
Proc. Natl Acad. Sci. USA
, vol.47
, pp. 1309-1314
-
-
Anfinsen, C.B.1
Haber, E.2
Sela, M.3
White, F.H.4
-
4
-
-
41549159471
-
The human PDI family: versatility packed into a single fold
-
Appenzeller-Herzog C, Ellgaard L. The human PDI family: versatility packed into a single fold. Biochim. Biophys. Acta 2008, 1783:535-548.
-
(2008)
Biochim. Biophys. Acta
, vol.1783
, pp. 535-548
-
-
Appenzeller-Herzog, C.1
Ellgaard, L.2
-
5
-
-
56549083161
-
A novel disulphide switch mechanism in Ero1alpha balances ER oxidation in human cells
-
Appenzeller-Herzog C, Riemer J, Christensen B, Sorensen ES, Ellgaard L. A novel disulphide switch mechanism in Ero1alpha balances ER oxidation in human cells. EMBO J. 2008, 27:2977-2987.
-
(2008)
EMBO J.
, vol.27
, pp. 2977-2987
-
-
Appenzeller-Herzog, C.1
Riemer, J.2
Christensen, B.3
Sorensen, E.S.4
Ellgaard, L.5
-
6
-
-
0033597878
-
Oxidative protein folding is driven by the electron transport system
-
Bader M, Muse W, Ballou DP, Gassner C, Bardwell JC. Oxidative protein folding is driven by the electron transport system. Cell 1999, 98:217-227.
-
(1999)
Cell
, vol.98
, pp. 217-227
-
-
Bader, M.1
Muse, W.2
Ballou, D.P.3
Gassner, C.4
Bardwell, J.C.5
-
7
-
-
0034714289
-
Disulfide bonds are generated by quinone reduction
-
Bader MW, Xie T, Yu CA, Bardwell JC. Disulfide bonds are generated by quinone reduction. J. Biol. Chem. 2000, 275:26082-26088.
-
(2000)
J. Biol. Chem.
, vol.275
, pp. 26082-26088
-
-
Bader, M.W.1
Xie, T.2
Yu, C.A.3
Bardwell, J.C.4
-
8
-
-
56549124032
-
Low reduction potential of Ero1alpha regulatory disulphides ensures tight control of substrate oxidation
-
Baker KM, Chakravarthi S, Langton KP, Sheppard AM, Lu H, Bulleid NJ. Low reduction potential of Ero1alpha regulatory disulphides ensures tight control of substrate oxidation. EMBO J. 2008, 27:2988-2997.
-
(2008)
EMBO J.
, vol.27
, pp. 2988-2997
-
-
Baker, K.M.1
Chakravarthi, S.2
Langton, K.P.3
Sheppard, A.M.4
Lu, H.5
Bulleid, N.J.6
-
9
-
-
59649096697
-
MIA40 is an oxidoreductase that catalyzes oxidative protein folding in mitochondria
-
Banci L, Bertini I, Cefaro C, Ciofi-Baffoni S, Gallo A, Martinelli M, Sideris DP, Katrakili N, Tokatlidis K. MIA40 is an oxidoreductase that catalyzes oxidative protein folding in mitochondria. Nat. Struct. Mol. Biol. 2009, 16:198-206.
-
(2009)
Nat. Struct. Mol. Biol.
, vol.16
, pp. 198-206
-
-
Banci, L.1
Bertini, I.2
Cefaro, C.3
Ciofi-Baffoni, S.4
Gallo, A.5
Martinelli, M.6
Sideris, D.P.7
Katrakili, N.8
Tokatlidis, K.9
-
10
-
-
0027475212
-
A pathway for disulfide bond formation in vivo
-
Bardwell JC, Lee JO, Jander G, Martin N, Belin D, Beckwith J. A pathway for disulfide bond formation in vivo. Proc. Natl Acad. Sci. USA 1993, 90:1038-1042.
-
(1993)
Proc. Natl Acad. Sci. USA
, vol.90
, pp. 1038-1042
-
-
Bardwell, J.C.1
Lee, J.O.2
Jander, G.3
Martin, N.4
Belin, D.5
Beckwith, J.6
-
11
-
-
0034282738
-
The CXXCXXC motif determines the folding, structure and stability of human Ero1-Lalpha
-
Benham AM, Cabibbo A, Fassio A, Bulleid N, Sitia R, Braakman I. The CXXCXXC motif determines the folding, structure and stability of human Ero1-Lalpha. EMBO J. 2000, 19:4493-4502.
-
(2000)
EMBO J.
, vol.19
, pp. 4493-4502
-
-
Benham, A.M.1
Cabibbo, A.2
Fassio, A.3
Bulleid, N.4
Sitia, R.5
Braakman, I.6
-
12
-
-
68749112707
-
Importing mitochondrial proteins: machineries and mechanisms
-
Chacinska A, Koehler CM, Milenkovic D, Lithgow T, Pfanner N. Importing mitochondrial proteins: machineries and mechanisms. Cell 2009, 138:628-644.
-
(2009)
Cell
, vol.138
, pp. 628-644
-
-
Chacinska, A.1
Koehler, C.M.2
Milenkovic, D.3
Lithgow, T.4
Pfanner, N.5
-
13
-
-
20844457757
-
Essential role of Mia40 in import and assembly of mitochondrial intermembrane space proteins
-
Chacinska A, Pfannschmidt S, Wiedemann N, Kozjak V, Sanjuan Szklarz LK, Schulze-Specking A, Truscott KN, Guiard B, Meisinger C, Pfanner N. Essential role of Mia40 in import and assembly of mitochondrial intermembrane space proteins. EMBO J. 2004, 23:3735-3746.
-
(2004)
EMBO J.
, vol.23
, pp. 3735-3746
-
-
Chacinska, A.1
Pfannschmidt, S.2
Wiedemann, N.3
Kozjak, V.4
Sanjuan Szklarz, L.K.5
Schulze-Specking, A.6
Truscott, K.N.7
Guiard, B.8
Meisinger, C.9
Pfanner, N.10
-
14
-
-
34250787527
-
Intracellular catalysis of disulfide bond formation by the human sulfhydryl oxidase, QSOX1
-
Chakravarthi S, Jessop CE, Willer M, Stirling CJ, Bulleid NJ. Intracellular catalysis of disulfide bond formation by the human sulfhydryl oxidase, QSOX1. Biochem. J. 2007, 404:403-411.
-
(2007)
Biochem. J.
, vol.404
, pp. 403-411
-
-
Chakravarthi, S.1
Jessop, C.E.2
Willer, M.3
Stirling, C.J.4
Bulleid, N.J.5
-
15
-
-
41449101717
-
The Erv family of sulfhydryl oxidases
-
Fass D. The Erv family of sulfhydryl oxidases. Biochim. Biophys. Acta 2008, 1783:557-566.
-
(2008)
Biochim. Biophys. Acta
, vol.1783
, pp. 557-566
-
-
Fass, D.1
-
16
-
-
2542475140
-
Structure of Ero1p, source of disulfide bonds for oxidative protein folding in the cell
-
Gross E, Kastner DB, Kaiser CA, Fass D. Structure of Ero1p, source of disulfide bonds for oxidative protein folding in the cell. Cell 2004, 117:601-610.
-
(2004)
Cell
, vol.117
, pp. 601-610
-
-
Gross, E.1
Kastner, D.B.2
Kaiser, C.A.3
Fass, D.4
-
17
-
-
0036142325
-
A new FAD-binding fold and intersubunit disulfide shuttle in the thiol oxidase Erv2p
-
Gross E, Sevier CS, Vala A, Kaiser CA, Fass D. A new FAD-binding fold and intersubunit disulfide shuttle in the thiol oxidase Erv2p. Nat. Struct. Biol. 2002, 9:61-67.
-
(2002)
Nat. Struct. Biol.
, vol.9
, pp. 61-67
-
-
Gross, E.1
Sevier, C.S.2
Vala, A.3
Kaiser, C.A.4
Fass, D.5
-
18
-
-
42449098493
-
Human quiescin-sulfhydryl oxidase, QSOX1: probing internal redox steps by mutagenesis
-
Heckler EJ, Alon A, Fass D, Thorpe C. Human quiescin-sulfhydryl oxidase, QSOX1: probing internal redox steps by mutagenesis. Biochemistry 2008a, 47:4955-4963.
-
(2008)
Biochemistry
, vol.47
, pp. 4955-4963
-
-
Heckler, E.J.1
Alon, A.2
Fass, D.3
Thorpe, C.4
-
19
-
-
41449089437
-
Generating disulfides with the Quiescin-sulfhydryl oxidases
-
Heckler EJ, Rancy PC, Kodali VK, Thorpe C. Generating disulfides with the Quiescin-sulfhydryl oxidases. Biochim. Biophys. Acta 2008b, 1783:567-577.
-
(2008)
Biochim. Biophys. Acta
, vol.1783
, pp. 567-577
-
-
Heckler, E.J.1
Rancy, P.C.2
Kodali, V.K.3
Thorpe, C.4
-
20
-
-
60749109471
-
DSB proteins and bacterial pathogenicity
-
Heras B, Shouldice SR, Totsika M, Scanlon MJ, Schembri MA, Martin JL. DSB proteins and bacterial pathogenicity. Nat. Rev. Microbiol. 2009, 7:215-225.
-
(2009)
Nat. Rev. Microbiol.
, vol.7
, pp. 215-225
-
-
Heras, B.1
Shouldice, S.R.2
Totsika, M.3
Scanlon, M.J.4
Schembri, M.A.5
Martin, J.L.6
-
21
-
-
1842477219
-
In vivo substrate specificity of periplasmic disulfide oxidoreductases
-
Hiniker A, Bardwell JC. In vivo substrate specificity of periplasmic disulfide oxidoreductases. J. Biol. Chem. 2004, 279:12967-12973.
-
(2004)
J. Biol. Chem.
, vol.279
, pp. 12967-12973
-
-
Hiniker, A.1
Bardwell, J.C.2
-
22
-
-
0037395242
-
The N-terminal cysteine pair of yeast sulfhydryl oxidase Erv1p is essential for in vivo activity and interacts with the primary redox centre
-
Hofhaus G, Lee JE, Tews I, Rosenberg B, Lisowsky T. The N-terminal cysteine pair of yeast sulfhydryl oxidase Erv1p is essential for in vivo activity and interacts with the primary redox centre. Eur. J. Biochem. 2003, 270:1528-1535.
-
(2003)
Eur. J. Biochem.
, vol.270
, pp. 1528-1535
-
-
Hofhaus, G.1
Lee, J.E.2
Tews, I.3
Rosenberg, B.4
Lisowsky, T.5
-
23
-
-
70449674774
-
Disulfide bond formation system in Eschericia coli
-
Inaba K. Disulfide bond formation system in Eschericia coli. J. Biochem. 2009, 146:591-597.
-
(2009)
J. Biochem.
, vol.146
, pp. 591-597
-
-
Inaba, K.1
-
24
-
-
41449118757
-
Structure and mechanisms of the DsbB-DsbA disulfide bond generation machine
-
Inaba K, Ito K. Structure and mechanisms of the DsbB-DsbA disulfide bond generation machine. Biochim. Biophys. Acta 2008, 1783:520-529.
-
(2008)
Biochim. Biophys. Acta
, vol.1783
, pp. 520-529
-
-
Inaba, K.1
Ito, K.2
-
25
-
-
62649151322
-
Dynamic nature of disulphide bond formation catalysts revealed by crystal structures of DsbB
-
Inaba K, Murakami S, Nakagawa A, Iida H, Kinjo M, Ito K, Suzuki M. Dynamic nature of disulphide bond formation catalysts revealed by crystal structures of DsbB. EMBO J. 2009, 28:779-791.
-
(2009)
EMBO J.
, vol.28
, pp. 779-791
-
-
Inaba, K.1
Murakami, S.2
Nakagawa, A.3
Iida, H.4
Kinjo, M.5
Ito, K.6
Suzuki, M.7
-
26
-
-
33750813327
-
Crystal structure of the DsbB-DsbA complex reveals a mechanism of disulfide bond generation
-
Inaba K, Murakami S, Suzuki M, Nakagawa A, Yamashita E, Okada K, Ito K. Crystal structure of the DsbB-DsbA complex reveals a mechanism of disulfide bond generation. Cell 2006a, 127:789-801.
-
(2006)
Cell
, vol.127
, pp. 789-801
-
-
Inaba, K.1
Murakami, S.2
Suzuki, M.3
Nakagawa, A.4
Yamashita, E.5
Okada, K.6
Ito, K.7
-
27
-
-
1342304093
-
DsbB elicits a red-shift of bound ubiquinone during the catalysis of DsbA oxidation
-
Inaba K, Takahashi YH, Fujieda N, Kano K, Miyoshi H, Ito K. DsbB elicits a red-shift of bound ubiquinone during the catalysis of DsbA oxidation. J. Biol. Chem. 2004, 279:6761-6768.
-
(2004)
J. Biol. Chem.
, vol.279
, pp. 6761-6768
-
-
Inaba, K.1
Takahashi, Y.H.2
Fujieda, N.3
Kano, K.4
Miyoshi, H.5
Ito, K.6
-
28
-
-
25444431826
-
Reactivities of quinone-free DsbB from Escherichia coli
-
Inaba K, Takahashi YH, Ito K. Reactivities of quinone-free DsbB from Escherichia coli. J. Biol. Chem. 2005, 280:33035-33044.
-
(2005)
J. Biol. Chem.
, vol.280
, pp. 33035-33044
-
-
Inaba, K.1
Takahashi, Y.H.2
Ito, K.3
-
29
-
-
31044433084
-
Critical role of a thiolate-quinone charge transfer complex and its adduct form in de novo disulfide bond generation by DsbB
-
Inaba K, Takahashi YH, Ito K, Hayashi S. Critical role of a thiolate-quinone charge transfer complex and its adduct form in de novo disulfide bond generation by DsbB. Proc. Natl Acad. Sci. USA 2006b, 103:287-292.
-
(2006)
Proc. Natl Acad. Sci. USA
, vol.103
, pp. 287-292
-
-
Inaba, K.1
Takahashi, Y.H.2
Ito, K.3
Hayashi, S.4
-
30
-
-
49549119981
-
The disulfide bond formation (Dsb) system
-
Ito K, Inaba K. The disulfide bond formation (Dsb) system. Curr. Opin. Struct. Biol. 2008, 18:450-458.
-
(2008)
Curr. Opin. Struct. Biol.
, vol.18
, pp. 450-458
-
-
Ito, K.1
Inaba, K.2
-
32
-
-
1642556877
-
Snapshots of DsbA in action: detection of proteins in the process of oxidative folding
-
Kadokura H, Tian H, Zander T, Bardwell JC, Beckwith J. Snapshots of DsbA in action: detection of proteins in the process of oxidative folding. Science 2004, 303:534-537.
-
(2004)
Science
, vol.303
, pp. 534-537
-
-
Kadokura, H.1
Tian, H.2
Zander, T.3
Bardwell, J.C.4
Beckwith, J.5
-
33
-
-
0034703766
-
Transmembrane electron transfer by the membrane protein DsbD occurs via a disulfide bond cascade
-
Katzen F, Beckwith J. Transmembrane electron transfer by the membrane protein DsbD occurs via a disulfide bond cascade. Cell 2000, 103:769-779.
-
(2000)
Cell
, vol.103
, pp. 769-779
-
-
Katzen, F.1
Beckwith, J.2
-
34
-
-
70149113002
-
Structural basis of yeast Tim40/Mia40 as an oxidative translocator in the mitochondrial intermembrane space
-
Kawano S, Yamano K, Naoe M, Momose T, Terao K, Nishikawa S, Watanabe N, Endo T. Structural basis of yeast Tim40/Mia40 as an oxidative translocator in the mitochondrial intermembrane space. Proc. Natl Acad. Sci. USA 2009, 106:14403-14407.
-
(2009)
Proc. Natl Acad. Sci. USA
, vol.106
, pp. 14403-14407
-
-
Kawano, S.1
Yamano, K.2
Naoe, M.3
Momose, T.4
Terao, K.5
Nishikawa, S.6
Watanabe, N.7
Endo, T.8
-
35
-
-
0030072669
-
Roles of cysteine residues of DsbB in its activity to reoxidize DsbA, the protein disulphide bond catalyst of Escherichia coli
-
Kishigami S, Ito K. Roles of cysteine residues of DsbB in its activity to reoxidize DsbA, the protein disulphide bond catalyst of Escherichia coli. Genes Cells 1996, 1:201-208.
-
(1996)
Genes Cells
, vol.1
, pp. 201-208
-
-
Kishigami, S.1
Ito, K.2
-
36
-
-
0030671552
-
Respiratory chain is required to maintain oxidized states of the DsbA-DsbB disulfide bond formation system in aerobically growing Escherichia coli cells
-
Kobayashi T, Kishigami S, Sone M, Inokuchi H, Mogi T, Ito K. Respiratory chain is required to maintain oxidized states of the DsbA-DsbB disulfide bond formation system in aerobically growing Escherichia coli cells. Proc. Natl. Acad. Sci. USA 1997, 94:11857-11862.
-
(1997)
Proc. Natl. Acad. Sci. USA
, vol.94
, pp. 11857-11862
-
-
Kobayashi, T.1
Kishigami, S.2
Sone, M.3
Inokuchi, H.4
Mogi, T.5
Ito, K.6
-
37
-
-
0034866458
-
An essential function of the mitochondrial sulfhydryl oxidase Erv1p/ALR in the maturation of cytosolic Fe/S proteins
-
Lange H, Lisowsky T, Gerber J, Mühlenhoff U, Kispal G, Lill R. An essential function of the mitochondrial sulfhydryl oxidase Erv1p/ALR in the maturation of cytosolic Fe/S proteins. EMBO Rep. 2001, 2:715-720.
-
(2001)
EMBO Rep.
, vol.2
, pp. 715-720
-
-
Lange, H.1
Lisowsky, T.2
Gerber, J.3
Mühlenhoff, U.4
Kispal, G.5
Lill, R.6
-
38
-
-
54549124476
-
Preparation and structure of the charge-transfer intermediate of the transmembrane redox catalyst DsbB
-
Malojčić G, Owen RL, Grimshaw JP, Glockshuber R. Preparation and structure of the charge-transfer intermediate of the transmembrane redox catalyst DsbB. FEBS Lett. 2008, 582:3301-3307.
-
(2008)
FEBS Lett.
, vol.582
, pp. 3301-3307
-
-
Malojčić, G.1
Owen, R.L.2
Grimshaw, J.P.3
Glockshuber, R.4
-
39
-
-
0027373949
-
Crystal structure of the DsbA protein required for disulphide bond formation in vivo
-
Martin JL, Bardwell JC, Kuriyan J. Crystal structure of the DsbA protein required for disulphide bond formation in vivo. Nature 1993, 365:464-468.
-
(1993)
Nature
, vol.365
, pp. 464-468
-
-
Martin, J.L.1
Bardwell, J.C.2
Kuriyan, J.3
-
40
-
-
21244445718
-
A disulfide relay system in the intermembrane space of mitochondria that mediates protein import
-
Mesecke N, Terziyska N, Kozany C, Baumann F, Neupert W, Hell K, Herrmann JM. A disulfide relay system in the intermembrane space of mitochondria that mediates protein import. Cell 2005, 121:1059-1069.
-
(2005)
Cell
, vol.121
, pp. 1059-1069
-
-
Mesecke, N.1
Terziyska, N.2
Kozany, C.3
Baumann, F.4
Neupert, W.5
Hell, K.6
Herrmann, J.M.7
-
41
-
-
33645881071
-
Pathways of disulfide bond formation in Escherichia coli
-
Messens J, Collet JF. Pathways of disulfide bond formation in Escherichia coli. Int. J. Biochem. Cell Biol. 2006, 38:1050-1062.
-
(2006)
Int. J. Biochem. Cell Biol.
, vol.38
, pp. 1050-1062
-
-
Messens, J.1
Collet, J.F.2
-
42
-
-
9144273327
-
Identification of Tim40 that mediates protein sorting to the mitochondrial intermembrane space
-
Naoe M, Ohwa Y, Ishikawa D, Ohshima C, Nishikawa S, Yamamoto H, Endo T. Identification of Tim40 that mediates protein sorting to the mitochondrial intermembrane space. J. Biol. Chem. 2004, 279:47815-47821.
-
(2004)
J. Biol. Chem.
, vol.279
, pp. 47815-47821
-
-
Naoe, M.1
Ohwa, Y.2
Ishikawa, D.3
Ohshima, C.4
Nishikawa, S.5
Yamamoto, H.6
Endo, T.7
-
43
-
-
0025796578
-
Properties of the two terminal oxidases of Escherichia coli
-
Puustinen A, Finel M, Haltia T, Gennis RB, Wikstrom M. Properties of the two terminal oxidases of Escherichia coli. Biochemistry 1991, 30:3936-3942.
-
(1991)
Biochemistry
, vol.30
, pp. 3936-3942
-
-
Puustinen, A.1
Finel, M.2
Haltia, T.3
Gennis, R.B.4
Wikstrom, M.5
-
44
-
-
13444261412
-
Characterization of new DsbB-like thiol-oxidoreductases of Campylobacter jejuni and Helicobacter pylori and classification of the DsbB family based on phylogenomic, structural and functional criteria
-
Raczko AM, Bujnicki JM, Pawlowski M, Godlewska R, Lewandowska M, Jagusztyn-Krynicka EK. Characterization of new DsbB-like thiol-oxidoreductases of Campylobacter jejuni and Helicobacter pylori and classification of the DsbB family based on phylogenomic, structural and functional criteria. Microbiology 2005, 151(Pt 1):219-231.
-
(2005)
Microbiology
, vol.151
, Issue.PART 1
, pp. 219-231
-
-
Raczko, A.M.1
Bujnicki, J.M.2
Pawlowski, M.3
Godlewska, R.4
Lewandowska, M.5
Jagusztyn-Krynicka, E.K.6
-
45
-
-
0029822654
-
An in vivo pathway for disulfide bond isomerization in Escherichia coli
-
Rietsch A, Belin D, Martin N, Beckwith J. An in vivo pathway for disulfide bond isomerization in Escherichia coli. Proc. Natl Acad. Sci. USA 1996, 93:13048-13053.
-
(1996)
Proc. Natl Acad. Sci. USA
, vol.93
, pp. 13048-13053
-
-
Rietsch, A.1
Belin, D.2
Martin, N.3
Beckwith, J.4
-
46
-
-
22444432755
-
The prokaryotic enzyme DsbB may share key structural features with eukaryotic disulfide bond forming oxidoreductases
-
Sevier CS, Kadokura H, Tam VC, Beckwith J, Fass D, Kaiser CA. The prokaryotic enzyme DsbB may share key structural features with eukaryotic disulfide bond forming oxidoreductases. Protein Sci. 2005, 14:1630-1642.
-
(2005)
Protein Sci.
, vol.14
, pp. 1630-1642
-
-
Sevier, C.S.1
Kadokura, H.2
Tam, V.C.3
Beckwith, J.4
Fass, D.5
Kaiser, C.A.6
-
47
-
-
0036842559
-
Formation and transfer of disulphide bonds in living cells
-
Sevier CS, Kaiser CA. Formation and transfer of disulphide bonds in living cells. Nat. Rev. Mol. Cell Biol. 2002, 3:836-847.
-
(2002)
Nat. Rev. Mol. Cell Biol.
, vol.3
, pp. 836-847
-
-
Sevier, C.S.1
Kaiser, C.A.2
-
48
-
-
33745861722
-
Conservation and diversity of the cellular disulfide bond formation pathways
-
Sevier CS, Kaiser CA. Conservation and diversity of the cellular disulfide bond formation pathways. Antioxid. Redox Signal. 2006, 8:797-811.
-
(2006)
Antioxid. Redox Signal.
, vol.8
, pp. 797-811
-
-
Sevier, C.S.1
Kaiser, C.A.2
-
49
-
-
41449116766
-
Ero1 and redox homeostasis in the endoplasmic reticulum
-
Sevier CS, Kaiser CA. Ero1 and redox homeostasis in the endoplasmic reticulum. Biochim. Biophys. Acta 2008, 1783:549-556.
-
(2008)
Biochim. Biophys. Acta
, vol.1783
, pp. 549-556
-
-
Sevier, C.S.1
Kaiser, C.A.2
-
50
-
-
34147126077
-
Modulation of cellular disulfide-bond formation and the ER redox environment by feedback regulation of Ero1
-
Sevier CS, Qu H, Heldman N, Gross E, Fass D, Kaiser CA. Modulation of cellular disulfide-bond formation and the ER redox environment by feedback regulation of Ero1. Cell 2007, 129:333-344.
-
(2007)
Cell
, vol.129
, pp. 333-344
-
-
Sevier, C.S.1
Qu, H.2
Heldman, N.3
Gross, E.4
Fass, D.5
Kaiser, C.A.6
-
51
-
-
0028215226
-
Characterization of DsbC, a periplasmic protein of Erwinia chrysanthemi and Escherichia coli with disulfide isomerase activity
-
Shevchik VE, Condemine G, Robert-Baudouy J. Characterization of DsbC, a periplasmic protein of Erwinia chrysanthemi and Escherichia coli with disulfide isomerase activity. EMBO J. 1994, 13:2007-2012.
-
(1994)
EMBO J.
, vol.13
, pp. 2007-2012
-
-
Shevchik, V.E.1
Condemine, G.2
Robert-Baudouy, J.3
-
52
-
-
72949101778
-
In vivo oxidative protein folding can be facilitated by oxidation-reduction cycling
-
Shouldice SR, Cho SH, Boyd D, Heras B, Eser M, Beckwith J, Riggs P, Martin JL, Berkmen M. In vivo oxidative protein folding can be facilitated by oxidation-reduction cycling. Mol. Microbiol. 2010, 75:13-28.
-
(2010)
Mol. Microbiol.
, vol.75
, pp. 13-28
-
-
Shouldice, S.R.1
Cho, S.H.2
Boyd, D.3
Heras, B.4
Eser, M.5
Beckwith, J.6
Riggs, P.7
Martin, J.L.8
Berkmen, M.9
-
53
-
-
34347204504
-
Generating disulfides in multicellular organisms: emerging roles for a new flavoprotein family
-
Thorpe C, Coppock DL. Generating disulfides in multicellular organisms: emerging roles for a new flavoprotein family. J. Biol. Chem. 2007, 282:13929-13933.
-
(2007)
J. Biol. Chem.
, vol.282
, pp. 13929-13933
-
-
Thorpe, C.1
Coppock, D.L.2
-
54
-
-
30344444015
-
The crystal structure of yeast protein disulfide isomerase suggests cooperativity between its active sites
-
Tian G, Xiang S, Noiva R, Lennarz WJ, Schindelin H. The crystal structure of yeast protein disulfide isomerase suggests cooperativity between its active sites. Cell 2006, 124:61-73.
-
(2006)
Cell
, vol.124
, pp. 61-73
-
-
Tian, G.1
Xiang, S.2
Noiva, R.3
Lennarz, W.J.4
Schindelin, H.5
-
55
-
-
48249117110
-
ERdj5 is required as a disulfide reductase for degradation of misfolded proteins in the ER
-
Ushioda R, Hoseki J, Araki K, Jansen G, Thomas DY, Nagata K. ERdj5 is required as a disulfide reductase for degradation of misfolded proteins in the ER. Science 2008, 321:569-572.
-
(2008)
Science
, vol.321
, pp. 569-572
-
-
Ushioda, R.1
Hoseki, J.2
Araki, K.3
Jansen, G.4
Thomas, D.Y.5
Nagata, K.6
-
56
-
-
33747352990
-
Gain of function in an ERV/ALR sulfhydryl oxidase by molecular engineering of the shuttle disulfide
-
Vitu E, Bentzur M, Lisowsky T, Kaiser CA, Fass D. Gain of function in an ERV/ALR sulfhydryl oxidase by molecular engineering of the shuttle disulfide. J. Mol. Biol. 2006, 362:89-101.
-
(2006)
J. Mol. Biol.
, vol.362
, pp. 89-101
-
-
Vitu, E.1
Bentzur, M.2
Lisowsky, T.3
Kaiser, C.A.4
Fass, D.5
-
57
-
-
0027481123
-
Redox properties of protein disulfide isomerase (DsbA) from Escherichia coli
-
Wunderlich M, Glockshuber R. Redox properties of protein disulfide isomerase (DsbA) from Escherichia coli. Protein Sci. 1993, 2:717-726.
-
(1993)
Protein Sci.
, vol.2
, pp. 717-726
-
-
Wunderlich, M.1
Glockshuber, R.2
-
58
-
-
52049098074
-
NMR solution structure of the integral membrane enzyme DsbB: functional insights into DsbB-catalyzed disulfide bond formation
-
Zhou Y, Cierpicki T, Jimenez RH, Lukasik SM, Ellena JF, Cafiso DS, Kadokura H, Beckwith J, Bushweller JH. NMR solution structure of the integral membrane enzyme DsbB: functional insights into DsbB-catalyzed disulfide bond formation. Mol. Cell 2008, 31:896-908.
-
(2008)
Mol. Cell
, vol.31
, pp. 896-908
-
-
Zhou, Y.1
Cierpicki, T.2
Jimenez, R.H.3
Lukasik, S.M.4
Ellena, J.F.5
Cafiso, D.S.6
Kadokura, H.7
Beckwith, J.8
Bushweller, J.H.9
|