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Biochemistry|May 1, 1990
Membrane protein folding and oligomerization: the two-stage modelJ L Popot, D M EngelmanThe Journal of Clinical Investigation|October 1, 1976
Compositional mapping of cholesteryl ester droplets in the fatty streaks of human aortaG M Hillman, D M EngelmanProceedings of the National Academy of Sciences of the United States of America|May 9, 1998
Structure-based prediction of the stability of transmembrane helix-helix interactions: the sequence dependence of glycophorin A dimerizationK R MacKenzie, D M EngelmanBiochimica Et Biophysica Acta|April 20, 1978
The planar distributions of surface proteins and intramembrane particles in Acholeplasma laidlawii are differentially affected by the physical state of membrane lipidsB A Wallace, D M EngelmanCell|February 1, 1981
The spontaneous insertion of proteins into and across membranes: the helical hairpin hypothesisD M Engelman, T A SteitzJournal of Molecular Biology|May 15, 1983
Lipid bilayer thickness varies linearly with acyl chain length in fluid phosphatidylcholine vesiclesB A Lewis, D M EngelmanBiophysical Journal|September 1, 1981
Conformation of liquid N-alkanesF Goodsaid-Zalduondo, D M EngelmanBiophysical Journal|October 1, 1984
Neutron scattering shows that cytochrome b5 penetrates deeply into the lipid bilayerE P Gogol, D M EngelmanJournal of Molecular Biology|May 15, 1983
Bacteriorhodopsin remains dispersed in fluid phospholipid bilayers over a wide range of bilayer thicknessesB A Lewis, D M EngelmanBiochemistry|July 7, 1992
Bacteriorhodopsin can be refolded from two independently stable transmembrane helices and the complementary five-helix fragmentT W Kahn, D M EngelmanPageof 23