Abstract
At each stage of infection, the major coat protein of coliphage M13 binds to the E. coli cytoplasmic membrane with its antigenic site exposed to the cell exterior [Wickner, W. (1975) Proc. Nat. Acad. Sci. USA 72, 4749-4753]. This antigenic site is now shown to be at the amino-terminus of the protein. The amino-terminus of M13 coat protein is also found exclusively on the outside of dilauroyl or dimyristoyl lecithin vesicles, formed with coat protein by the cholate dilution technique [Racker, E., et al. (1975) FEBS Lett. 57, 14-18] near the lipid phase transition temperature. The basic carboxyterminus of the coat protein is exclusively on the inside of these vesicles. Vesicles of M13 coat protein and dimyristoyl lecithin when formed below the lipid phase transition temperature have both ends of the coat protein exposed to the vesicle exterior. The asymmetry of a membrane protein can, therefore, be established in the absence of other proteins and of lipid asymmetry; it depends on the physical state of the lipid phase. The factors which cause asymmetry in this model system may affect the distribution of proteins in biological membranes.
MeSH Terms
Antibodies, Viral
Antibody Specificity
Antigens, Viral
Cell Membrane/ultrastructure
Chemical Phenomena
Chemistry, Physical
Coliphages/ultrastructure
Escherichia coli/ultrastructure
Membranes, Artificial
Models, Biological
Peptide Hydrolases
Phosphatidylcholines
Viral Proteins
Chemicals
Antibodies, Viral
Antigens, Viral
Membranes, Artificial
Phosphatidylcholines
Viral Proteins
Peptide Hydrolases
Authors & Affiliations
1 authors, click to expand affiliations / ORCID
Wickner W
References (14)
14 references, click to expand
-
[Virus proteins. IV. Constitution of the coat protein of the fd phage].
Hoppe Seylers Z Physiol Chem. 1969 Sep;350(9):1047-66
PMID: 5349375
-
Binding, eclipse, and penetration of the filamentous bacteriophage M13 in intact and disrupted cells.
Virology. 1974 Nov;62(1):209-23
PMID: 4608378
-
Lateral phase separations in membrane lipids and the mechanism of sugar transport in Escherichia coli.
Proc Natl Acad Sci U S A. 1973 Aug;70(8):2271-5
PMID: 4365369
-
A coat protein from bacteriophage fd. I. Hydrodynamic measurements and biological characterization.
J Mol Biol. 1966 Nov 14;21(2):281-92
PMID: 4291403
-
The molecular organization of membranes.
Annu Rev Biochem. 1974;43(0):805-33
PMID: 4277710
-
Asymmetric orientation of a phage coat protein in cytoplasmic membrane of Escherichia coli.
Proc Natl Acad Sci U S A. 1975 Dec;72(12):4749-53
PMID: 54916
-
Bacteriophage f1 infection: fate of the parental major coat protein.
J Virol. 1974 Jan;13(1):94-9
PMID: 4590021
-
Association of newly synthesized major f1 coat protein with infected host cell inner membrane.
J Supramol Struct. 1972;1(1):8-18
PMID: 4568193
-
Reinvestigation of a region of the fd bacteriophage coat protein sequence.
J Mol Biol. 1974 Sep 25;88(3):598-600
PMID: 4449122
-
Filamentous bacterial viruses.
Bacteriol Rev. 1969 Jun;33(2):172-209
PMID: 4979697
-
A cholate-dilution procedure for the reconstitution of the Ca++ pump, 32Pi--ATP exchange, and oxidative phosphorylation.
FEBS Lett. 1975 Sep 1;57(1):14-8
PMID: 1175773
-
Structure and assembly of filamentous bacterial viruses.
Nature. 1975 Jan 3;253(5486):19-23
PMID: 1110745
-
Proteolytic digestion of the micellar complex of f1 coat protein and deoxycholate.
J Biol Chem. 1975 Jun 10;250(11):4333-9
PMID: 1126954
-
The fate of the protein component of bacteriophage fd during infection.
Biochem Biophys Res Commun. 1967 Sep 27;28(6):932-9
PMID: 6064596