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Transmembrane biogenesis of the vesicular stomatitis virus glycoprotein
Abstract:
Previous work has shown that the mRNA encoding the vesicular stomatitis virus (VSV) glycoprotein (G) is bound to the rough endoplasmic reticulum (RER) and that newly made G protein is localized to the RER. In this paper, we have investigated the topology and processing of the newly synthesized G protein in microsomal vesicles. G was labeled with [35S]methionine ([35S]met), either by pulse-labeling infected cells or by allowing membrane-bound polysomes containing nascent G polipeptides to complete G synthesis in vitro. In either case, digestion of microsomal vesicles with any of several proteases removes approximately 5% (30 amino acids) from each G molecule. These proteases will digest the entire G protein if detergents are present during digestion. Using the method of Dintzis (1961, Proc. Natl. Acad. Sci. U. S. A. 47:247--261) to order tryptic peptides (8), we show that peptides lost from G protein by protease treatment of closed vesicles are derived from the carboxyterminus of the molecule. The newly made VSV G in microsomal membranes is glycosylated. If carbohydrate is removed by glycosidases, the resultant peptide migrates more rapidly on polyacrylamide gels than the unglycosylated, G0, form synthesized in cell-free systems in the absence of membranes. We infer that some proteolytic cleavage of the polypeptide backbone is associated with membrane insertion of G. Further, our findings demonstrate that, soon after synthesis, G is found in a transmembrane, asymmetric orientation in microsomal membranes, with its carboxyterminus exposed to the extracisternal, or cytoplasmic, face of the vesicles, and with most or all of its amino-terminal peptides and its carbohydrate sequestered within the bilayer and lumen of the microsomes.
Insights
Newly synthesized vesicular stomatitis virus (VSV) glycoprotein (G) inserts into the rough endoplasmic reticulum (RER) membrane. This transmembrane protein adopts an asymmetric orientation, with its carboxyterminus exposed to the cytoplasmic face.
Area of Science:
- Molecular Biology
- Virology
- Cell Biology
Background:
- Vesicular stomatitis virus (VSV) glycoprotein (G) mRNA localizes to the rough endoplasmic reticulum (RER).
- Newly synthesized G protein is found in the RER.
Purpose of the Study:
- To investigate the topology and processing of newly synthesized G protein in microsomal vesicles.
- To determine the orientation of G protein within the RER membrane.
Main Methods:
- Pulse-labeling of infected cells with [35S]methionine.
- In vitro synthesis completion by membrane-bound polysomes.
- Protease digestion of microsomal vesicles.
- Ordering of tryptic peptides using the Dintzis method.
- Glycosidase treatment and polyacrylamide gel electrophoresis.
Main Results:
- Protease digestion of closed vesicles removed ~5% (30 amino acids) from the carboxyterminus of G protein.
- Protease digestion in the presence of detergent degraded the entire G protein.
- Newly synthesized G protein is glycosylated within microsomal membranes.
- Glycosidase treatment resulted in a faster migrating peptide compared to cell-free synthesized G0.
- Proteolytic cleavage of the polypeptide backbone is associated with membrane insertion.
- G protein exhibits a transmembrane, asymmetric orientation in microsomal membranes soon after synthesis.
Conclusions:
- The carboxyterminus of VSV G protein is exposed to the cytoplasmic face of the RER.
- The amino-terminal peptides and carbohydrate moiety are sequestered within the microsomal bilayer and lumen.
- VSV G protein insertion into the RER involves proteolytic cleavage and results in an asymmetric transmembrane orientation.