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Membrane Proteins
Known as:
Surface Proteins
, Membrane Proteins [Chemical/Ingredient]
, Proteins, Surface
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Proteins which are found in membranes including cellular and intracellular membranes. They consist of two types, peripheral and integral proteins…
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National Institutes of Health
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Related topics
Related topics
49 relations
Narrower (48)
ATRN protein, human
Ahnak protein, rat
Amot protein, rat
Axs protein, Drosophila
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Cellular Membrane
Papers overview
Semantic Scholar uses AI to extract papers important to this topic.
Highly Cited
2009
Highly Cited
2009
Crystallizing membrane proteins using lipidic mesophases
M. Caffrey
,
V. Cherezov
Nature Protocols
2009
Corpus ID: 21620186
A detailed protocol for crystallizing membrane proteins that makes use of lipidic mesophases is described. This has variously…
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Highly Cited
2006
Highly Cited
2006
OPM: Orientations of Proteins in Membranes database
Mikhail A. Lomize
,
A. Lomize
,
I. Pogozheva
,
H. Mosberg
Bioinform.
2006
Corpus ID: 10345295
SUMMARY The Orientations of Proteins in Membranes (OPM) database provides a collection of transmembrane, monotopic and peripheral…
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Highly Cited
2000
Highly Cited
2000
Crystal structure of the bacterial membrane protein TolC central to multidrug efflux and protein export
V. Koronakis
,
A. Sharff
,
E. Koronakis
,
B. Luisi
,
C. Hughes
Nature
2000
Corpus ID: 4412566
Diverse molecules, from small antibacterial drugs to large protein toxins, are exported directly across both cell membranes of…
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Review
1996
Review
1996
Experimentally determined hydrophobicity scale for proteins at membrane interfaces
W. Wimley
,
S. White
Nature Structural Biology
1996
Corpus ID: 1823375
The partitioning of membrane-active oligopeptides into membrane interfaces promotes the formation of secondary structure. A…
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Highly Cited
1996
Highly Cited
1996
Lipidic cubic phases: a novel concept for the crystallization of membrane proteins.
E. Landau
,
Jürg P. Rosenbusch
Proceedings of the National Academy of Sciences…
1996
Corpus ID: 34952710
Understanding the mechanisms of action of membrane proteins requires the elucidation of their structures to high resolution. The…
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Highly Cited
1993
Highly Cited
1993
A protein assembly-disassembly pathway in vitro that may correspond to sequential steps of synaptic vesicle docking, activation, and fusion
T. Söllner
,
M. Bennett
,
S. Whiteheart
,
R. Scheller
,
J. Rothman
Cell
1993
Corpus ID: 26906457
Highly Cited
1992
Highly Cited
1992
Membrane protein structure prediction. Hydrophobicity analysis and the positive-inside rule.
G. Heijne
Journal of Molecular Biology
1992
Corpus ID: 27372568
A new strategy for predicting the topology of bacterial inner membrane proteins is proposed on the basis of hydrophobicity…
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Highly Cited
1990
Highly Cited
1990
CD44 is the principal cell surface receptor for hyaluronate
A. Aruffo
,
I. Stamenkovic
,
M. Melnick
,
C. Underhill
,
B. Seed
Cell
1990
Corpus ID: 8217636
Highly Cited
1986
Highly Cited
1986
The distribution of positively charged residues in bacterial inner membrane proteins correlates with the trans‐membrane topology
G. Heijne
EMBO Journal
1986
Corpus ID: 7377854
The amino acid distribution in membrane spanning segments and connecting loops in bacterial inner membrane proteins was analysed…
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Highly Cited
1985
Highly Cited
1985
A platelet alpha-granule membrane protein (GMP-140) is expressed on the plasma membrane after activation
P. Stenberg
,
R. McEver
,
M. Shuman
,
Y. Jacques
,
D. Bainton
Journal of Cell Biology
1985
Corpus ID: 6626568
We have previously characterized a monoclonal antibody, S12, that binds only to activated platelets (McEver, R.P., and M.N…
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