-
1
-
-
0042812949
-
Pore-forming bacterial protein toxins
-
van der Goot FG, ed. Heidelberg, Springer Verlag
-
Alouf JE. Pore-forming bacterial protein toxins. In: van der Goot FG, ed. Pore-forming toxins. Heidelberg, Springer Verlag 2001:1-14.
-
(2001)
Pore-forming Toxins
, pp. 1-14
-
-
Alouf, J.E.1
-
2
-
-
0011666950
-
Pore-forming colicins and their relatives
-
van der Goot FG, ed. Heidelberg, Springer-Verlag
-
Lakey JH, Slatin SL. Pore-forming colicins and their relatives. In: van der Goot FG, ed. Pore-forming toxins. Heidelberg, Springer-Verlag 2001:131-162.
-
(2001)
Pore-forming Toxins
, pp. 131-162
-
-
Lakey, J.H.1
Slatin, S.L.2
-
3
-
-
0029828324
-
A TonB-like protein and a novel membrane protein containing an ATP-binding cassette function together in exotoxin secretion
-
Howard SP, Meiklejohn HG, Shivak D et al. A TonB-like protein and a novel membrane protein containing an ATP-binding cassette function together in exotoxin secretion. Mol Microbiol 1996; 22:595-604. (Pubitemid 26385230)
-
(1996)
Molecular Microbiology
, vol.22
, Issue.4
, pp. 595-604
-
-
Howard, S.P.1
Meiklejohn, H.G.2
Shivak, D.3
Jahagirdar, R.4
-
4
-
-
0030865151
-
Channel-forming toxins: Tales of transformation
-
DOI 10.1016/S0959-440X(97)80123-6
-
Gouaux E. Channel-forming toxins: tales of transformation. Curr Opin Struct Biol 1997; 7:566-573. (Pubitemid 27371304)
-
(1997)
Current Opinion in Structural Biology
, vol.7
, Issue.4
, pp. 566-573
-
-
Gouaux, E.1
-
5
-
-
0024961641
-
Structure of the membrane-pore-forming fragment of colicin A
-
Parker MW, Pattus F, Tucker AD et al. Structure of the membrane-pore-forming fragment of colicin A. Nature 1989; 337:93-96.
-
(1989)
Nature
, vol.337
, pp. 93-96
-
-
Parker, M.W.1
Pattus, F.2
Tucker, A.D.3
-
7
-
-
0026050639
-
Crystal structure of insecticidal δ-endotoxin from Bacillus thuringiensis at 2.5 Å resolution
-
Li J, Carrol J, Ellar DJ. Crystal structure of insecticidal delta-endotoxin from Bacillus thuringiensis at 2.5 Å resolution. Nature 1991; 353:815-821. (Pubitemid 21912628)
-
(1991)
Nature
, vol.353
, Issue.6347
, pp. 815-821
-
-
Li, J.1
Carroll, J.2
Ellar, D.J.3
-
8
-
-
0026552246
-
The crystal structure of diphtheria toxin
-
Choe S, Bennett MJ, Fujii G et al. The crystal structure of diphtheria toxin. Nature 1992; 357:216-222.
-
(1992)
Nature
, vol.357
, pp. 216-222
-
-
Choe, S.1
Bennett, M.J.2
Fujii, G.3
-
9
-
-
1842332735
-
Bcl-x(L) forms an ion channel in synthetic lipid membranes
-
Minn, AJ, Velez P, Schendel SL et al. Bcl-x(L) forms an ion channel in synthetic lipid membranes. Nature 1997; 385:353-357.
-
(1997)
Nature
, vol.385
, pp. 353-357
-
-
Minn, A.J.1
Velez, P.2
Schendel, S.L.3
-
10
-
-
0027976196
-
Structure of the Aeromonas toxin proaerolysin in its water-soluble and membrane-channel states
-
DOI 10.1038/367292a0
-
Parker MW, Buckley JT, Postma JP et al. Structure of the Aeromonas toxin proaerolysin in its water-soluble and membrane-channel states. Nature 1994; 367:292-295. (Pubitemid 24051148)
-
(1994)
Nature
, vol.367
, Issue.6460
, pp. 292-295
-
-
Parker, M.W.1
Buckley, J.T.2
Postma, J.P.M.3
Tucker, A.D.4
Leonard, K.5
Pattus, F.6
Tsernoglou, D.7
-
11
-
-
0028878878
-
The primary structure of Clostridium septicum alpha-toxin exhibits similarity with that of Aeromonas hydrophila aerolysin
-
Ballard J, Crabtree J, Roe BA et al. The primary structure of Clostridium septicum alpha-toxin exhibits similarity with that of Aeromonas hydrophila aerolysin. Infect Immun 1995; 63:340-344.
-
(1995)
Infect Immun
, vol.63
, pp. 340-344
-
-
Ballard, J.1
Crabtree, J.2
Roe, B.A.3
-
12
-
-
0030447720
-
Structure of staphylococcal α-hemolysin, a heptameric transmembrane pore
-
DOI 10.1126/science.274.5294.1859
-
Song L, Hobaugh MR, Shustak C et al. Structure of staphylococcal alpha-hemolysin, a heptameric transmembrane pore. Science 1996; 274:1859-1866. (Pubitemid 26424757)
-
(1996)
Science
, vol.274
, Issue.5294
, pp. 1859-1866
-
-
Song, L.1
Hobaugh, M.R.2
Shustak, C.3
Cheley, S.4
Bayley, H.5
Gouaux, J.E.6
-
13
-
-
0031052342
-
Crystal structure of the anthrax toxin protective antigen
-
DOI 10.1038/385833a0
-
Petosa C, Collier RJ, Klimpel KR et al. Crystal structure of the anthrax toxin protective antigen. Nature 1997; 385:833-838. (Pubitemid 27106075)
-
(1997)
Nature
, vol.385
, Issue.6619
, pp. 833-838
-
-
Petosa, C.1
Collier, R.J.2
Klimpel, K.R.3
Leppla, S.H.4
Liddington, R.C.5
-
14
-
-
4444267311
-
Structure of heptameric protective antigen bound to an anthrax toxin receptor: A role for receptor in pH-dependent pore formation
-
DOI 10.1073/pnas.0405405101
-
Lacy DB, Wigelsworth DJ, Melnyk RA et al. Structure of heptameric protective antigen bound to an anthrax toxin receptor: a role for receptor in pH-dependent pore formation. Proc Natl Acad Sci USA 2004; 101:13147-13151. (Pubitemid 39209633)
-
(2004)
Proceedings of the National Academy of Sciences of the United States of America
, vol.101
, Issue.36
, pp. 13147-13151
-
-
Lacy, D.B.1
Wigelsworth, D.J.2
Melnyk, R.A.3
Harrison, S.C.4
Collier, R.J.5
-
15
-
-
0029669956
-
Structure of the mosquitocidal delta-endotoxin CytB from Bacillus thuringiensis sp. kyushuensis and implications for membrane pore formation
-
Li J, Koni PA, Ellar DJ. Structure of the mosquitocidal delta-endotoxin CytB from Bacillus thuringiensis sp. kyushuensis and implications for membrane pore formation. J Mol Biol 1996; 257:129-152.
-
(1996)
J Mol Biol
, vol.257
, pp. 129-152
-
-
Li, J.1
Koni, P.A.2
Ellar, D.J.3
-
16
-
-
0030666371
-
Structure of a cholesterol-binding, thiol-activated cytolysin and a model of its membrane form
-
Rossjohn J, Feil SC, McKinstry WJ et al. Structure of a cholesterol-binding, thiol-activated cytolysin and a model of its membrane form. Cell 1997; 89:685-692. (Pubitemid 27516171)
-
(1997)
Cell
, vol.89
, Issue.5
, pp. 685-692
-
-
Rossjohn, J.1
Feil, S.C.2
McKinstry, W.J.3
Tweten, R.K.4
Parker, M.W.5
-
17
-
-
34548670476
-
Structure of C8α-MACPF reveals mechanism of membrane attack in complement immune defense
-
DOI 10.1126/science.1147103
-
Hadders MA, Beringer DX, Gros P. Structure of C8a-MACPF reveals mechanism of membrane attack in complement immune defense. Science 2007; 317:1552-1554. (Pubitemid 47417434)
-
(2007)
Science
, vol.317
, Issue.5844
, pp. 1552-1554
-
-
Hadders, M.A.1
Beringer, D.X.2
Gros, P.3
-
18
-
-
34548666167
-
A common fold mediates vertebrate defense and bacterial attack
-
DOI 10.1126/science.1144706
-
Rosado CJ, Buckle AM, Law RHP et al. A common fold mediates vertebrate defense and bacterial attack. Science 2007; 317:1548-1551. (Pubitemid 47417433)
-
(2007)
Science
, vol.317
, Issue.5844
, pp. 1548-1551
-
-
Rosado, C.J.1
Buckle, A.M.2
Law, R.H.P.3
Butcher, R.E.4
Kan, W.-T.5
Bird, C.H.6
Ung, K.7
Browne, K.A.8
Baran, K.9
Bashtannyk-Puhalovich, T.A.10
Faux, N.G.11
Wong, W.12
Porter, C.J.13
Pike, R.N.14
Ellisdon, A.M.15
Pearce, M.C.16
Bottomley, S.P.17
Emsley, J.18
Smith, A.I.19
Rossjohn, J.20
Hartland, E.L.21
Voskoboinik, I.22
Trapani, J.A.23
Bird, P.I.24
Dunstone, M.A.25
Whisstock, J.C.26
more..
-
19
-
-
0020360086
-
A voltage-gated ion channel model inferred from the crystal structure of alamethicin at 1.5-Å resolution
-
DOI 10.1038/300325a0
-
Fox RO Jr, Richards FM. A voltage-gated ion channel inferred from the crystal structure of alamethicin at 1.5-Å resolution. Nature 1982; 300:325-330. (Pubitemid 13196895)
-
(1982)
Nature
, vol.300
, Issue.5890
, pp. 325-330
-
-
Fox Jr., R.O.1
Richards, F.M.2
-
20
-
-
0025903814
-
Crystal structure of defensin HNP-3, an amphiphilic dimer: Mechanisms of membrane permeabilization
-
Hill CP, Yee J, Selsted ME et al. Crystal structure of defensin HNP-3, an amphiphilic dimer: mechanisms of membrane permeabilization. Science 1991; 251:1481-1485. (Pubitemid 121000438)
-
(1991)
Science
, vol.251
, Issue.5000
, pp. 1481-1485
-
-
Hill, C.P.1
Yee, J.2
Selsted, M.E.3
Eisenberg, D.4
-
21
-
-
0026581661
-
Refined structure of the pore-forming domain of colicin A at 2.4 A resolution
-
Parker MW, Postma JP, Pattus F et al. Refined structure of the pore-forming domain of colicin A at 2.4 A resolution. J Mol Biol 1992; 224:639-657.
-
(1992)
J Mol Biol
, vol.224
, pp. 639-657
-
-
Parker, M.W.1
Postma, J.P.2
Pattus, F.3
-
22
-
-
0032528046
-
Crystal structure of a colicin N fragment suggests a model for toxicity
-
Vetter IR, Parker MW, Tucker AD et al. Crystal structure of a colicin N fragment suggests a model for toxicity. Structure 1998; 6:863-874. (Pubitemid 28348649)
-
(1998)
Structure
, vol.6
, Issue.7
, pp. 863-874
-
-
Vetter, I.R.1
Parker, M.W.2
Tucker, A.D.3
Lakey, J.H.4
Pattus, F.5
Tsernoglou, D.6
-
23
-
-
0031569354
-
A mechanism for toxin insertion into membranes is suggested by the crystal structure of the channel-forming domain of colicin E1
-
Elkins P, Bunker A, Cramer WA et al. A mechanism for toxin insertion into membranes is suggested by the crystal structure of the channel-forming domain of colicin E1. Structure 1997; 5:443-458. (Pubitemid 27169944)
-
(1997)
Structure
, vol.5
, Issue.3
, pp. 443-458
-
-
Elkins, P.1
Bunker, A.2
Cramer, W.A.3
Stauffacher, C.V.4
-
24
-
-
0031022750
-
Crystal structure of colicin Ia
-
DOI 10.1038/385461a0
-
Wiener M, Freymann D, Ghosh P et al. Crystal structure of colicin Ia. Nature 1997; 385:461-464. (Pubitemid 27065935)
-
(1997)
Nature
, vol.385
, Issue.6615
, pp. 461-464
-
-
Wiener, M.1
Freymann, D.2
Ghosh, P.3
Stroud, R.M.4
-
25
-
-
0029619216
-
Bacillus thuringiensis CryIA(a) insecticidal toxin: Crystal structure and channel formation
-
DOI 10.1006/jmbi.1995.0630
-
Grochulski P, Masson L, Borisova S et al. Bacillus thuringiensis CryIA(a) insecticidal toxin: crystal structure and channel formation. J Mol Biol 1995; 254:447-464. (Pubitemid 26001783)
-
(1995)
Journal of Molecular Biology
, vol.254
, Issue.3
, pp. 447-464
-
-
Grochulski, P.1
Masson, L.2
Borisova, S.3
Pusztai-Carey, M.4
Schwartz, J.-L.5
Brousseau, R.6
Cygler, M.7
-
26
-
-
0034902813
-
Structure of the insecticidal bacterial δ-endotoxin Cry3Bb1 of Bacillus thuringiensis
-
DOI 10.1107/S0907444901008186
-
Galitsky N, Cody V, Wojtczak A et al. Structure of the insecticidal bacterial delta-endotoxin Cry3Bb1 of Bacillus thuringiensis. Acta Crystallogr D 2001; 57:1101-1109. (Pubitemid 32739519)
-
(2001)
Acta Crystallographica Section D: Biological Crystallography
, vol.57
, Issue.8
, pp. 1101-1109
-
-
Galitsky, N.1
Cody, V.2
Wojtczak, A.3
Ghosh, D.4
Luft, J.R.5
Pangborn, W.6
English, L.7
-
27
-
-
0034980642
-
Structure of Cry2Aa suggests an unexpected receptor binding epitope
-
DOI 10.1016/S0969-2126(01)00601-3, PII S0969212601006013
-
Morse RJ, Yamamoto T, Stroud RM. Structure of Cry2Aa suggests an unexpected receptor binding epitope. Structure 2001; 9:409-417. (Pubitemid 32497268)
-
(2001)
Structure
, vol.9
, Issue.5
, pp. 409-417
-
-
Morse, R.J.1
Yamamoto, T.2
Stroud, R.M.3
-
28
-
-
0035824862
-
Refined crystallographic structure of Pseudomonas aeruginosa exotoxin A and its implications for the molecular mechanism of toxicity
-
DOI 10.1006/jmbi.2001.5195
-
Wedekind JE, Trame CB, Dorywalska M et al. Refined crystallographic structure of Pseudomonas aeruginosa exotoxin A and its implications for the molecular mechanism of toxicity. J Mol Biol 2001; 314:823-837. (Pubitemid 34087850)
-
(2001)
Journal of Molecular Biology
, vol.314
, Issue.4
, pp. 823-837
-
-
Wedekind, J.E.1
Trame, C.B.2
Dorywalska, M.3
Koehl, P.4
Raschke, T.M.5
McKee, M.6
FitzGerald, D.7
Collier, R.J.8
McKay, D.B.9
-
29
-
-
0034880806
-
Crystal structure of the soluble form of equinatoxin II, a pore-forming toxin from the sea anemone Actinia equina
-
DOI 10.1016/S0969-2126(01)00592-5, PII S0969212601005925
-
Anthanasiadis A, Anderluh G, Maček P et al. Crystal structure of the soluble form of equinatoxin II, a pore-forming toxin from the sea anemone Actinia equina. Structure 2001; 9:341-346. (Pubitemid 32772579)
-
(2001)
Structure
, vol.9
, Issue.4
, pp. 341-346
-
-
Athanasiadis, A.1
Anderluh, G.2
Macek, P.3
Turk, D.4
-
30
-
-
0036304122
-
Solution structure of the eukaryotic pore-forming cytolysin equinatoxin II: Implications for pore formation
-
DOI 10.1006/jmbi.2001.5321
-
Hinds MG, Zhang W, Anderluh G et al. Solution structure of the eukaryotic pore-forming cytolysin equinatoxin II: implications for pore formation. J Mol Biol 2002; 315:1219-1229. (Pubitemid 34729299)
-
(2002)
Journal of Molecular Biology
, vol.315
, Issue.5
, pp. 1219-1229
-
-
Hinds, M.G.1
Zhang, W.2
Anderluh, G.3
Hansen, P.E.4
Norton, R.S.5
-
31
-
-
0242542032
-
Crystal and electron microscopy structures of sticholysin II actinoporin reveal insights into the mechanism of membrane pore formation
-
DOI 10.1016/j.str.2003.09.019
-
Mancheno JM, Martín-Benito J, Martínez-Ripoll M et al. Crystal and electron microscopy structures of sticholysin II actinoporin reveal insights into the mechanism of membrane pore formation. Structure 2003; 11:1319-1328. (Pubitemid 37412414)
-
(2003)
Structure
, vol.11
, Issue.11
, pp. 1319-1328
-
-
Mancheno, J.M.1
Martin-Benito, J.2
Martinez-Ripoll, M.3
Gavilanes, J.G.4
Hermoso, J.A.5
-
32
-
-
0034695613
-
E. coli hemolysin E (Hlye, ClyA, SheA): X-ray crystal structure of the toxin and observation of membrane pores by electron microscopy
-
Wallace AJ, Stillman TJ, Atkins A et al. E. coli hemolysin E (HlyE, ClyA, SheA): X-ray crystal structure of the toxin and observation of membrane pores by electron microscopy. Cell 2000; 100:265-276. (Pubitemid 30064914)
-
(2000)
Cell
, vol.100
, Issue.2
, pp. 265-276
-
-
Wallace, A.J.1
Stillman, T.J.2
Atkins, A.3
Jamieson, S.J.4
Bullough, P.A.5
Green, J.6
Artymiuk, P.J.7
-
33
-
-
0034731344
-
G
-
DOI 10.1074/jbc.M005420200
-
Atkins A, Wyborn NR, Wallace AJ et al. Structure-function relationships of a novel bacterial toxin, hemolysin E. The role of alpha G. J Biol Chem 2000; 275:41150-41155. (Pubitemid 32054946)
-
(2000)
Journal of Biological Chemistry
, vol.275
, Issue.52
, pp. 41150-41155
-
-
Atkins, A.1
Wyborn, N.R.2
Wallace, A.J.3
Stillman, T.J.4
Black, L.K.5
Fielding, A.B.6
Hisakado, M.7
Artymiuk, P.J.8
Green, J.9
-
34
-
-
0032932083
-
Crystal structure of staphylococcal lukF delineates conformational changes accompanying formation of a transmembrane channel
-
DOI 10.1038/5821
-
Olson R, Nariya H, Yokota K et al. Crystal structure of staphylococcal LukF delineates conformational changes accompanying formation of a transmembrane channel. Nature Struct Biol 1999; 6:134-140. (Pubitemid 29069775)
-
(1999)
Nature Structural Biology
, vol.6
, Issue.2
, pp. 134-140
-
-
Olson, R.1
Nariya, H.2
Yokota, K.3
Kamio, Y.4
Gouaux, E.5
-
35
-
-
0033103175
-
The structure of a Staphylococcus aureus leucocidin component (LukF-PV) reveals the fold of the water-soluble species of a family of transmembrane pore-forming toxins
-
DOI 10.1016/S0969-2126(99)80038-0
-
Pédelacq J-D, Maveyraud L, Prévost G et al. The structure of a Staphylococcus aureus leucocidin component (LukF-PV) reveals the fold of the water-soluble species of a family of transmembrane pore-forming toxins. Structure 1999; 7:277-287. (Pubitemid 29159687)
-
(1999)
Structure
, vol.7
, Issue.3
, pp. 277-287
-
-
Pedelacq, J.-D.1
Maveyraud, L.2
Prevost, G.3
Baba-Moussa, L.4
Gonzalez, A.5
Courcelle, E.6
Shepard, W.7
Monteil, H.8
Samama, J.-P.9
Mourey, L.10
-
37
-
-
0028108897
-
Biochemical characterization of Bacillus thuringiensis cytolytic δ-endotoxins
-
Koni PA, Ellar DJ. Biochemical characterization of Bacillus thuringiensis cytolytic delta-endotoxins. Microbiol 1994; 140:1869-1880. (Pubitemid 24259020)
-
(1994)
Microbiology
, vol.140
, Issue.8
, pp. 1869-1880
-
-
Koni, P.A.1
Ellar, D.J.2
-
38
-
-
5244224827
-
X-ray and NMR structure of human Bcl-xL, an inhibitor of programmed cell death
-
Muchmore SW, Sattler M, Liang H et al. X-ray and NMR structure of human Bcl-xL, an inhibitor of programmed cell death. Nature 1996; 381:335-341.
-
(1996)
Nature
, vol.381
, pp. 335-341
-
-
Muchmore, S.W.1
Sattler, M.2
Liang, H.3
-
39
-
-
33750619845
-
How do Bax and Bak lead to permeabilization of the outer mitochondrial membrane?
-
DOI 10.1016/j.ceb.2006.10.004, PII S0955067406001578
-
Antignani A, Youle RJ. How do Bax and Bak lead to permeabilization of the outer mitochondrial membrane? Curr Opin Cell Biol 2006; 18:685-689. (Pubitemid 44692478)
-
(2006)
Current Opinion in Cell Biology
, vol.18
, Issue.6
, pp. 685-689
-
-
Antignani, A.1
Youle, R.J.2
-
40
-
-
0022466507
-
Structural/functional similarity between proteins involved in complement- and cytotoxic T-lymphocyte-mediated cytolysis
-
Tschopp J, Masson D, Stanley KK. Structural/functional similarity between proteins involved in complement- and cytotoxic T-lymphocyte-mediated cytolysis. Nature 1986; 322:831-834. (Pubitemid 16055254)
-
(1986)
Nature
, vol.322
, Issue.6082
, pp. 831-834
-
-
Tschopp, J.1
Masson, D.2
Stanley, K.K.3
-
43
-
-
0035976922
-
Crystal structure of the soluble form of the intracellular chloride ion channel CLIC1 (NCC27) at 1.4Å resolution
-
Harrop SJ, DeMaere MZ, Fairlie WD et al. Crystal structure of the soluble form of the intracellular chloride ion channel CLIC1 (NCC27) at 1.4Å resolution. J Biol Chem 2001; 276:44993-45000.
-
(2001)
J Biol Chem
, vol.276
, pp. 44993-45000
-
-
Harrop, S.J.1
Demaere, M.Z.2
Fairlie, W.D.3
-
44
-
-
0034282894
-
CLIC-1 functions as a chloride channel when expressed and purified from bacteria
-
Tulk BM, Schlesinger PH, Kapadia SA et al. CLIC-1 functions as a chloride channel when expressed and purified from bacteria. J Biol Chem 2000; 275, 26986-26993.
-
(2000)
J Biol Chem
, vol.275
, pp. 26986-26993
-
-
Tulk, B.M.1
Schlesinger, P.H.2
Kapadia, S.A.3
-
45
-
-
0036087412
-
CLIC1 inserts from the aqueous phase into phospholipid membranes, where it functions as an anion channel
-
Tulk BM, Kapadia S, Edwards JC. CLIC1 inserts from the aqueous phase into phospholipids membranes where it functions as an anion channel. Am J Physiol 2002; 282:C1103-C1112. (Pubitemid 34663119)
-
(2002)
American Journal of Physiology - Cell Physiology
, vol.282
, Issue.5
-
-
Tulk, B.M.1
Kapadia, S.2
Edwards, J.C.3
-
46
-
-
10744228816
-
The Intracellular Chloride Ion Channel Protein CLIC1 Undergoes a Redox-controlled Structural Transition
-
DOI 10.1074/jbc.M308444200
-
Littler DR, Harrop SJ, Fairlie WD et al. The intracellular chloride ion channel protein CLIC1 undergoes a redox-controlled structural transition. J Biol Chem 2004; 279:9298-9305. (Pubitemid 38295993)
-
(2004)
Journal of Biological Chemistry
, vol.279
, Issue.10
, pp. 9298-9305
-
-
Littler, D.R.1
Harrop, S.J.2
Fairlie, W.D.3
Brown, L.J.4
Pankhurst, G.J.5
Pankhurst, S.6
DeMaere, M.Z.7
Campbell, T.J.8
Bauskin, A.R.9
Tonini, R.10
Mazzanti, M.11
Breit, S.N.12
Curmi, P.M.G.13
-
47
-
-
0033555610
-
Molecular cloning and characterization of a mitogen-activated protein kinase-associated intracellular chloride channel
-
Qian Z, Okuhara D, Abe MK et al. Molecular cloning and characterization of a mitogen-activated protein kinase-associated intracellular chloride channel. J Biol Chem 1999; 274:1621-1627.
-
(1999)
J Biol Chem
, vol.274
, pp. 1621-1627
-
-
Qian, Z.1
Okuhara, D.2
Abe, M.K.3
-
48
-
-
0036403213
-
Overexpressed chloride intracellular channel protein CLIC4 (p64H1) is an essential component of novel plasma membrane anion channels
-
DOI 10.1016/S0006-291X(02)02199-X, PII S0006291X0202199X
-
Proutski I, Karoulias N, Ashley RH. Overexpressed chloride intracellular channel protein CLIC4 (p64H1) is an essential component of novel plasma membrane anion channels. Biochem Biophys Res Commun 2002; 297:317-322. (Pubitemid 35216172)
-
(2002)
Biochemical and Biophysical Research Communications
, vol.297
, Issue.2
, pp. 317-322
-
-
Proutski, I.1
Karoulias, N.2
Ashley, R.H.3
-
49
-
-
0030992772
-
Molecular cloning and expression of a chloride ion channel of cell nuclei
-
DOI 10.1074/jbc.272.19.12575
-
Valenzuela SM, Martin DK, Por SB et al. Molecular cloning and expression of a chloride ion channel of cell nuclei. J Biol Chem 1997; 272:12575-12582. (Pubitemid 27203351)
-
(1997)
Journal of Biological Chemistry
, vol.272
, Issue.19
, pp. 12575-12582
-
-
Valenzuela, S.M.1
Martin, D.K.2
Por, S.B.3
Robbins, J.M.4
Warton, K.5
Bootcov, M.R.6
Schofield, P.R.7
Campbell, T.J.8
Breit, S.N.9
-
50
-
-
0040737617
-
P53 and tumor necrosis factor α regulate the expression of a mitochondrial chloride channel protein
-
Fernandez-Salas E, Sagar M, Cheng C et al. p53 and tumor necrosis factor α regulate the expression of a mitochondrial chloride channel protein. J Biol Chem 1999; 274:36488-36497.
-
(1999)
J Biol Chem
, vol.274
, pp. 36488-36497
-
-
Fernandez-Salas, E.1
Sagar, M.2
Cheng, C.3
-
51
-
-
0034129390
-
Functional characterization of the NCC27 nuclear protein in stable transfected CHO-K1 cells
-
Tonini R, Ferroni A, Valenzuela SM et al. Functional characterization of the NCC27 nuclear protein in stable transfected CHO-K1 cells. FASEB J 2000; 14:1171-1178. (Pubitemid 30350399)
-
(2000)
FASEB Journal
, vol.14
, Issue.9
, pp. 1171-1178
-
-
Tonini, R.1
Ferroni, A.2
Valenzuela, S.M.3
Warton, K.4
Campbell, T.J.5
Breit, S.N.6
Mazzanti, M.7
-
52
-
-
0242322691
-
CLIC4 Is Enriched at Cell-Cell Junctions and Colocalizes With AKAP350 at the Centrosome and Midbody of Cultured Mammalian Cells
-
DOI 10.1002/cm.10141
-
Berryman MA, Goldenring JR. CLIC4 is enriched at cell-cell junctions and colocalizes with AKAP350 at the centrosome and midbody of cultured mammalian cells. Cell Motil Cytoskeleton 2003; 56:159-172. (Pubitemid 37356522)
-
(2003)
Cell Motility and the Cytoskeleton
, vol.56
, Issue.3
, pp. 159-172
-
-
Berryman, M.A.1
Goldenring, J.R.2
-
53
-
-
0035976922
-
Crystal structure of the soluble form of the intracellular chloride ion channel CLIC1 (NCC27) at 1.4Å resolution
-
Harrop SJ, DeMaere MZ, Fairlie WD et al. Crystal structure of the soluble form of the intracellular chloride ion channel CLIC1 (NCC27) at 1.4Å resolution. J Biol Chem 2001; 276:44993-45000.
-
(2001)
J Biol Chem
, vol.276
, pp. 44993-45000
-
-
Harrop, S.J.1
Demaere, M.Z.2
Fairlie, W.D.3
-
54
-
-
10744228816
-
The Intracellular Chloride Ion Channel Protein CLIC1 Undergoes a Redox-controlled Structural Transition
-
DOI 10.1074/jbc.M308444200
-
Littler DR, Harrop SJ, Fairlie WD et al. The intracellular chloride ion channel protein CLIC1 undergoes a redox-controlled structural transition. J Biol Chem 2004; 279:9298-9305. (Pubitemid 38295993)
-
(2004)
Journal of Biological Chemistry
, vol.279
, Issue.10
, pp. 9298-9305
-
-
Littler, D.R.1
Harrop, S.J.2
Fairlie, W.D.3
Brown, L.J.4
Pankhurst, G.J.5
Pankhurst, S.6
DeMaere, M.Z.7
Campbell, T.J.8
Bauskin, A.R.9
Tonini, R.10
Mazzanti, M.11
Breit, S.N.12
Curmi, P.M.G.13
-
55
-
-
26244442240
-
Crystal structure of the soluble form of the redox-regulated chloride ion channel protein CLIC4
-
DOI 10.1111/j.1742-4658.2005.04909.x
-
Littler DR, Assaad NN, Harrop SJ et al. Crystal structure of the soluble form of the redox-regulated chloride ion channel protein CLIC4. FEBS J 2005; 272:4996-5007. (Pubitemid 41415122)
-
(2005)
FEBS Journal
, vol.272
, Issue.19
, pp. 4996-5007
-
-
Littler, D.R.1
Assaad, N.N.2
Harrop, S.J.3
Brown, L.J.4
Pankhurst, G.J.5
Luciani, P.6
Aguilar, M.-I.7
Mazzanti, M.8
Berryman, M.A.9
Breit, S.N.10
Curmi, P.M.G.11
-
56
-
-
33646058007
-
Trimeric structure of the wild soluble chloride intracellular ion channel CLIC4 observed in crystals
-
Li Y-F, Li D-F, Zeng Z-H et al. Trimeric structure of the wild soluble chloride intracellular ion channel CLIC4 observed in crystals. Biochem Biophys Res Commun 2006; 343:1272-1278.
-
(2006)
Biochem Biophys Res Commun
, vol.343
, pp. 1272-1278
-
-
Li, Y.-F.1
Li, D.-F.2
Zeng, Z.-H.3
-
57
-
-
40549129038
-
Comparison of vertebrate and invertebrate CLIC proteins: The crystal structures of Caenorhabditis elegans EXC-4 and Drosophila melanogaster DmCLIC
-
DOI 10.1002/prot.21704
-
Littler DR, Harrop SJ, Brown LJ et al. Comparison of vertebrate and invertebrate CLIC proteins: the crystal structure of Caenorhabditis elegans EXC-4 and Drosophila melanogaster DmCLIC. Proteins 2008; 71:364-378. (Pubitemid 351358616)
-
(2008)
Proteins: Structure, Function and Genetics
, vol.71
, Issue.1
, pp. 364-378
-
-
Littler, D.R.1
Harrop, S.J.2
Brown, L.J.3
Pankhurst, G.J.4
Mynott, A.V.5
Luciani, P.6
Mandyam, R.A.7
Mazzanti, M.8
Tanda, S.9
Berryman, M.A.10
Breit, S.N.11
Curmi, P.M.G.12
-
58
-
-
35549002161
-
Structure of the Janus protein human CLIC2
-
Cromer BA, Gorman MA, Hansen G et al. Structure of the Janus protein human CLIC2. J Mol Biol 2008; 374:719-731.
-
(2008)
J Mol Biol
, vol.374
, pp. 719-731
-
-
Cromer, B.A.1
Gorman, M.A.2
Hansen, G.3
-
59
-
-
0026050285
-
Contribution of individual toxin components to virulence of Bacillus anthracis
-
Pezard C, Berche P, Mock M. Contribution of individual toxin components to virulence of Bacillus anthracis. Infect Immun 1991; 59:3472-3477.
-
(1991)
Infect Immun
, vol.59
, pp. 3472-3477
-
-
Pezard, C.1
Berche, P.2
Mock, M.3
-
60
-
-
0035829509
-
Identification of the cellular receptor for anthrax toxin
-
DOI 10.1038/n35101999
-
Bradley KA, Mogridge J, Mourez M et al. Identification of the cellular receptor for anthrax toxin. Nature 2001; 414:225-229. (Pubitemid 33051239)
-
(2001)
Nature
, vol.414
, Issue.6860
, pp. 225-229
-
-
Bradley, K.A.1
Mogridge, J.2
Mourez, M.3
Collier, R.J.4
Young, J.A.T.5
-
62
-
-
4444267311
-
Structure of heptameric protective antigen bound to an anthrax toxin receptor: A role for receptor in pH-dependent pore formation
-
DOI 10.1073/pnas.0405405101
-
Lacy DB, Wigelsworth DJ, Melnyk RA et al. Structure of heptameric protective antigen bound to an anthrax toxin receptor: a role for receptor in pH-dependent pore formation. Proc Natl Acad Sci USA 2004; 101:13147-13151. (Pubitemid 39209633)
-
(2004)
Proceedings of the National Academy of Sciences of the United States of America
, vol.101
, Issue.36
, pp. 13147-13151
-
-
Lacy, D.B.1
Wigelsworth, D.J.2
Melnyk, R.A.3
Harrison, S.C.4
Collier, R.J.5
-
63
-
-
3542993051
-
Crystal structure of a complex between anthrax toxin and its host cell receptor
-
DOI 10.1038/nature02763
-
Santelli E, Bankston LA, Leppla SH et al. Crystal structure of a complex between anthrax toxin and its host cell receptor. Nature 2004; 430:905-908. (Pubitemid 39119219)
-
(2004)
Nature
, vol.430
, Issue.7002
, pp. 905-908
-
-
Santelli, E.1
Bankston, L.A.2
Leppla, S.H.3
Llddington, R.C.4
-
64
-
-
0028002221
-
Mechanism of action of Bacillus thuringiensis Insecticidal delta-endotoxins
-
Knowles BH. Mechanisms of action of Bacillus thuringiensis insecticidal δ-endotoxins. Adv Insect Physiol 1994; 24:275-308. (Pubitemid 2034272)
-
(1994)
Adv. Insect. Physiol.
, vol.24
, pp. 275-308
-
-
Knowles, B.H.1
-
65
-
-
0029027032
-
Molecular cloning of an insect aminopeptidase N that serves as a receptor for Bacillus thuringiensis CryIA(c) toxin
-
Knight PJK, Knowles BH, Ellar DJ. Molecular cloning of an insect aminopeptidase N that serves as a receptor for Bacillus thuringiensis CryIA(c) toxin. J Biol Chem 1995; 270:17765-17770.
-
(1995)
J Biol Chem
, vol.270
, pp. 17765-17770
-
-
Knight, P.J.K.1
Knowles, B.H.2
Ellar, D.J.3
-
66
-
-
13644259249
-
Glycolipids as receptors for Bacillus thuringienses crystal toxin
-
DOI 10.1126/science.1104444
-
Griffitts JS, Haslam SM, Yang T et al. Glycolipids as receptors for Bacillus thuringiensis crystal toxin. Science 2005; 307:922-925. (Pubitemid 40229228)
-
(2005)
Science
, vol.307
, Issue.5711
, pp. 922-925
-
-
Griffitts, J.S.1
Haslam, S.M.2
Yang, T.3
Garczynski, S.F.4
Mulloy, B.5
Morris, H.6
Cremer, P.S.7
Dell, A.8
Adang, M.J.9
Aroian, R.V.10
-
67
-
-
0030978914
-
The glycosylphosphatidylinositol-anchored surface glycoprotein Thy-1 is a receptor for the channel-forming toxin aerolysin
-
DOI 10.1074/jbc.272.18.12170
-
Nelson KL, Raja SM, Buckley JT. The glycosylphosphatidylinositol-anchored surface glycoprotein Thy-1 is a receptor for the channel-forming toxin aerolysin. J Biol Chem 1997; 272:12170-12174. (Pubitemid 27202800)
-
(1997)
Journal of Biological Chemistry
, vol.272
, Issue.18
, pp. 12170-12174
-
-
Nelson, K.L.1
Raja, S.M.2
Buckley, J.T.3
-
68
-
-
0032498627
-
A pore-forming toxin interacts with a GPI-anchored protein and causes vacuolation of the endoplasmic reticulum
-
DOI 10.1083/jcb.140.3.525
-
Abrami L, Fivaz M, Glauser P-E et al. A pore-forming toxin interacts with a GPI-anchored protein and causes vacuolation of the endoplasmic reticulum. J Cell Biol 1998; 140:525-540. (Pubitemid 28134057)
-
(1998)
Journal of Cell Biology
, vol.140
, Issue.3
, pp. 525-540
-
-
Abrami, L.1
Fivaz, M.2
Glauser, P.-E.3
Parton, R.G.4
Van Der Goot, F.G.5
-
69
-
-
0033529592
-
Analysis of receptor binding by the channel-forming toxin aerolysin using surface plasmon resonance
-
MacKenzie CR, Hirama T, Buckley JT. Analysis of receptor binding by the channel-forming toxin aerolysin using surface plasmon resonance. J Biol Chem 1999; 274:22604-22609.
-
(1999)
J Biol Chem
, vol.274
, pp. 22604-22609
-
-
MacKenzie, C.R.1
Hirama, T.2
Buckley, J.T.3
-
70
-
-
0030957151
-
Aerolysin and pertussis toxin share a common receptor-binding domain
-
DOI 10.1093/emboj/16.12.3426
-
Rossjohn J, Buckley JT, Hazes B et al. Aerolysin and pertussis toxin share a common receptor-binding domain. EMBO J 1997; 16:3426-3434. (Pubitemid 27250038)
-
(1997)
EMBO Journal
, vol.16
, Issue.12
, pp. 3426-3434
-
-
Rossjohn, J.1
Buckley, J.T.2
Hazes, B.3
Murzin, A.G.4
Read, R.J.5
Parker, M.W.6
-
71
-
-
0029972377
-
Contribution of individual tryptophan residues to the structure and activity of ̈-toxin (perfringolysin O), a cholesterol-binding cytolysin
-
Sekino-Suzuki N, Nakamura M, Mitsui KI et al. Contribution of individual tryptophan residues to the structure and activity of theta-toxin (perfringolysin O), a cholesterol-binding cytolysin. Eur J Biochem 1996; 241:941-947. (Pubitemid 26379400)
-
(1996)
European Journal of Biochemistry
, vol.241
, Issue.3
, pp. 941-947
-
-
Sekino-Suzuki, N.1
Nakamura, M.2
Mitsui, K.-I.3
Ohno-Iwashita, Y.4
-
72
-
-
0031776879
-
Listeriolysin O: Cholesterol inhibits cytolysis but not binding to cellular membranes
-
DOI 10.1046/j.1365-2958.1998.00858.x
-
Jacobs T, Darji A, Frahm N et al. Listeriolysin O: cholesterol inhibits cytolysis but not binding to cellular membranes. Mol Microbiol 1998; 28:1081-1089. (Pubitemid 28293534)
-
(1998)
Molecular Microbiology
, vol.28
, Issue.6
, pp. 1081-1089
-
-
Jacobs, T.1
Darji, A.2
Frahm, N.3
Rohde, M.4
Wehland, J.5
Chakraborty, T.6
Weiss, S.7
-
74
-
-
16544370492
-
Human CD59 is a receptor for the cholesterol-dependent cytolysin intermedilysin
-
Giddings KS, Zhao J, Sims PJ et al. Human CD59 is a receptor for the cholesterol-dependent cytolysin intermedilysin. Nat Struct Mol Biol 2004; 11:1173-1178.
-
(2004)
Nat Struct Mol Biol
, vol.11
, pp. 1173-1178
-
-
Giddings, K.S.1
Zhao, J.2
Sims, P.J.3
-
75
-
-
0036027362
-
Cytolytic peptide and protein toxins from sea anemones (Anthozoa: Actiniaria)
-
DOI 10.1016/S0041-0101(01)00191-X, PII S004101010100191X
-
Anderluh G, Maček P. Cytolytic peptide and protein toxins from sea anemones (Anthozoa: Actiniaria). Toxicon 2002; 40:111-124. (Pubitemid 33016540)
-
(2002)
Toxicon
, vol.40
, Issue.2
, pp. 111-124
-
-
Anderluh, G.1
Macek, P.2
-
76
-
-
0034702810
-
The mechanism of pore assembly for a cholesterol-dependent cytolysin: Formation of a large prepore complex precedes the insertion of the transmembrane α-hairpins
-
DOI 10.1021/bi000436r
-
Shepard LA, Shatursky O, Johnson AE et al. The mechanism of pore assembly for a cholesterol-dependent cytolysin: formation of a large prepore complex precedes the insertion of the transmembrane beta-hairpins. Biochemistry 2000; 39:10284-10293. (Pubitemid 30663051)
-
(2000)
Biochemistry
, vol.39
, Issue.33
, pp. 10284-10293
-
-
Shepard, L.A.1
Shatursky, O.2
Johnson, A.E.3
Tweten, R.K.4
-
77
-
-
0035896507
-
Arresting pore formation of a cholesterol-dependent cytolysin by disulfide trapping synchronizes the insertion of the transmembrane beta-sheet from a prepore intermediate
-
Hotze EM, Wilson-Kubalek EM, Rossjohn J et al. Arresting pore formation of a cholesterol-dependent cytolysin by disulfide trapping synchronizes the insertion of the transmembrane beta-sheet from a prepore intermediate. J Biol Chem 2001; 276:8261-8268.
-
(2001)
J Biol Chem
, vol.276
, pp. 8261-8268
-
-
Hotze, E.M.1
Wilson-Kubalek, E.M.2
Rossjohn, J.3
-
78
-
-
0037192791
-
Monomer-monomer interactions drive the prepore to pore conversion of a α-barrel-forming cholesterol-dependent cytolysin
-
DOI 10.1074/jbc.M111039200
-
Hotze EM, Heuck AP, Czajkowsky DM et al. Monomer-monomer interactions drive the prepore to pore conversion of a beta-barrel-forming cholesterol-dependent cytolysin. J Biol Chem 2002; 277:11597-11605. (Pubitemid 34952932)
-
(2002)
Journal of Biological Chemistry
, vol.277
, Issue.13
, pp. 11597-11605
-
-
Hotze, E.M.1
Heuck, A.P.2
Czajkowsky, D.M.3
Shao, Z.4
Johnson, A.E.5
Tweten, R.K.6
-
79
-
-
0033612389
-
Two structural transitions in membrane pore formation by pneumolysin, the pore-forming toxin of Streptococcus pneumoniae
-
DOI 10.1016/S0092-8674(00)80775-8
-
Gilbert RJC, Jimenez JL, Chen S et al. Two structural transitions in membrane pore formation by pneumolysin, the pore-forming toxin of Streptococcus pneumoniae. Cell 1999; 97:647-655. (Pubitemid 29256967)
-
(1999)
Cell
, vol.97
, Issue.5
, pp. 647-655
-
-
Gilbert, R.J.C.1
Jimenez, J.L.2
Chen, S.3
Tickle, I.J.4
Rossjohn, J.5
Parker, M.6
Andrew, P.W.7
Saibil, H.R.8
-
80
-
-
3543016107
-
Membrane-dependent conformational changes initiate cholesterol-dependent cytolysin oligomerization and intersubunit α-strand alignment
-
DOI 10.1038/nsmb793
-
Ramachandran R, Tweten RK, Johnson AE. Membrane-dependent conformational changes initiate cholesterol-dependent cytolysin oligomerization and intersubunit beta-strand alignment. Nature Struct Mol Biol 2004; 11:697-705. (Pubitemid 39014494)
-
(2004)
Nature Structural and Molecular Biology
, vol.11
, Issue.8
, pp. 697-705
-
-
Ramachandran, R.1
Tweten, R.K.2
Johnson, A.E.3
-
81
-
-
0025369969
-
Insights into membrane insertion based on studies of colicins
-
Parker MW, Tucker AD, Tsernoglou D et al. Insights into membrane insertion based on studies of colicins. Trends Biochem Sci 1990; 15:126-129.
-
(1990)
Trends Biochem Sci
, vol.15
, pp. 126-129
-
-
Parker, M.W.1
Tucker, A.D.2
Tsernoglou, D.3
-
82
-
-
0033615736
-
The mechanism of membrane insertion for a cholesterol-dependent cytolysin: A novel paradigm for pore-forming toxins
-
DOI 10.1016/S0092-8674(00)81660-8
-
Shatursky O, Heuck AP, Shepard LA et al. The mechanism of membrane insertion for a cholesterol-dependent cytolysin: a novel paradigm for pore-forming toxins. Cell 1999; 99:293-299. (Pubitemid 29519908)
-
(1999)
Cell
, vol.99
, Issue.3
, pp. 293-299
-
-
Shatursky, O.1
Heuck, A.P.2
Shepard, L.A.3
Rossjohn, J.4
Parker, M.W.5
Johnson, A.E.6
Tweten, R.K.7
-
83
-
-
0032512443
-
Movement of a loop in domain 3 of aerolysin is required for channel formation
-
DOI 10.1021/bi9721039
-
Rossjohn J, Raja SM, Nelson KL et al. Movement of a loop in domain 3 of aerolysin is required for channel formation. Biochemistry 1998; 37:741-746. (Pubitemid 28123809)
-
(1998)
Biochemistry
, vol.37
, Issue.2
, pp. 741-746
-
-
Rossjohn, J.1
Raja, S.M.2
Nelson, K.L.3
Feil, S.C.4
Van Der Goot, F.G.5
Parker, M.W.6
Buckley, J.T.7
-
84
-
-
1842689787
-
The Identification and Structure of the Membrane-spanning Domain of the Clostridium septicum Alpha Toxin
-
DOI 10.1074/jbc.M313758200
-
Melton J, Parker MW, Rossjohn J et al. The identification and structure of the membrane-spanning domain of the Clostridium septicum alpha toxin. J Biol Chem 2004; 279:14315-14322. (Pubitemid 38468972)
-
(2004)
Journal of Biological Chemistry
, vol.279
, Issue.14
, pp. 14315-14322
-
-
Melton, J.A.1
Parker, M.W.2
Rossjohn, J.3
Buckley, J.T.4
Tweten, R.K.5
-
85
-
-
32544443056
-
A rivet model for channel formation by aerolysin-like pore-forming toxins
-
DOI 10.1038/sj.emboj.7600959, PII 7600959
-
Iacovache I, Paumard P, Scheib H et al. A rivet model for channel formation by aerolysin-like pore-forming toxins. EMBO J 2006; 25:457-466. (Pubitemid 43237653)
-
(2006)
EMBO Journal
, vol.25
, Issue.3
, pp. 457-466
-
-
Iacovache, I.1
Paumard, P.2
Scheib, H.3
Lesieur, C.4
Sakai, N.5
Matile, S.6
Parker, M.W.7
Van Der Goot, F.G.8
-
86
-
-
0141543873
-
Cryptic clues as to how water-soluble protein toxins form pores in membranes
-
DOI 10.1016/S0041-0101(03)00106-5
-
Parker MW. Cryptic clues as to how water-soluble protein toxins form pores in membranes. Toxicon 2003; 42:1-6. (Pubitemid 37297553)
-
(2003)
Toxicon
, vol.42
, Issue.1
, pp. 1-6
-
-
Parker, M.W.1
-
87
-
-
0035822706
-
α-Barrel pore-forming toxins: Intriguing dimorphic proteins
-
DOI 10.1021/bi0155394
-
Heuck AP, Tweten RK, Johnson AE. Beta-barrel pore-forming toxins: intriguing dimorphic proteins. Biochemistry 2001; 40:9065-9073. (Pubitemid 32734170)
-
(2001)
Biochemistry
, vol.40
, Issue.31
, pp. 9065-9073
-
-
Heuck, A.P.1
Tweten, R.K.2
Johnson, A.E.3
-
88
-
-
0035937196
-
Structural analysis of the protein/lipid complexes associated with pore formation by the bacterial toxin pneumolysin
-
Bonev B, Gilbert RJC, Andrew PW et al. Structural analysis of the protein/lipid complexes associated with pore formation by the bacterial toxin pneumolysin. J Biol Chem 2001; 276:5714-5719.
-
(2001)
J Biol Chem
, vol.276
, pp. 5714-5719
-
-
Bonev, B.1
Gilbert, R.J.C.2
Andrew, P.W.3
-
89
-
-
0027199615
-
Molecular cloning and characterization of p64, a chloride channel protein from kidney microsomes
-
Landry D, Sullivan S, Nicolaides M et al. Molecular cloning and characterization of p64, a chloride channel from kidney microsomes. J Biol Chem 1993; 268:14948-14955. (Pubitemid 23206643)
-
(1993)
Journal of Biological Chemistry
, vol.268
, Issue.20
, pp. 14948-14955
-
-
Landry, D.1
Sullivan, S.2
Nicolaides, M.3
Redhead, C.4
Edelman, A.5
Field, M.6
Al- Awqati, Q.7
Edwards, J.8
-
90
-
-
0030992772
-
Molecular cloning and expression of a chloride ion channel of cell nuclei
-
DOI 10.1074/jbc.272.19.12575
-
Valenzuela SM, Martin DK, Por SB et al. Molecular cloning and expression of a chloride ion channel of cell nuclei. J Biol Chem 1997; 272:12575-12582. (Pubitemid 27203351)
-
(1997)
Journal of Biological Chemistry
, vol.272
, Issue.19
, pp. 12575-12582
-
-
Valenzuela, S.M.1
Martin, D.K.2
Por, S.B.3
Robbins, J.M.4
Warton, K.5
Bootcov, M.R.6
Schofield, P.R.7
Campbell, T.J.8
Breit, S.N.9
-
91
-
-
0034129390
-
Functional characterization of the NCC27 nuclear protein in stable transfected CHO-K1 cells
-
Tonini R, Ferroni A, Valenzuela SM et al. Functional characterization of the NCC27 nuclear protein in stable transfected CHO-K1 cells. FASEB J 2000; 14:1171-1178. (Pubitemid 30350399)
-
(2000)
FASEB Journal
, vol.14
, Issue.9
, pp. 1171-1178
-
-
Tonini, R.1
Ferroni, A.2
Valenzuela, S.M.3
Warton, K.4
Campbell, T.J.5
Breit, S.N.6
Mazzanti, M.7
-
92
-
-
0030747190
-
Rat brain p64H1, expression of a new member of the p64 chloride channel protein family in endoplasmic reticulum
-
DOI 10.1074/jbc.272.38.23880
-
Duncan RR, Westwood PK, Boyd A et al. Rat brain p64H1: expression of a new member of the p64 chloride channel protein family in endoplasmic reticulum. J Biol Chem 1997; 272:23880-23886. (Pubitemid 27410969)
-
(1997)
Journal of Biological Chemistry
, vol.272
, Issue.38
, pp. 23880-23886
-
-
Duncan, R.R.1
Westwood, P.K.2
Boyd, A.3
Ashley, R.H.4
-
93
-
-
0345731467
-
A C. elegans CLIC-like Protein Required for Intracellular Tube Formation and Maintenance
-
DOI 10.1126/science.1087667
-
Berry KL, Bulow HE, Hall DH et al. A C. elegans CLIC-like protein required for intracellular tube formation and maintenance. Science 2003; 302:2134-2137. (Pubitemid 38017948)
-
(2003)
Science
, vol.302
, Issue.5653
, pp. 2134-2137
-
-
Berry, K.L.1
Bulow, H.E.2
Hall, D.H.3
Hobert, O.4
-
94
-
-
0026244229
-
MOLSCRIPT: A program to produce both detailed and schematic plots of proteins
-
Kraulis P. MOLSCRIPT: a program to produce both detailed and schematic plots of proteins. J Appl Crystallogr 1991; 24:946-950.
-
(1991)
J Appl Crystallogr
, vol.24
, pp. 946-950
-
-
Kraulis, P.1
|