Alteration of the cytoplasmic domain of the membrane-spanning glycoprotein p62 of semliki forest virus does not affect its polar distribution in established lines of madin-darby canine kidney cells

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Abstract

Expression of the Semliki Forest virus p62/E2 protein was studied in the polarized epithelial cell line Madin-Darby canine kidney (MDCK). After infection this transmembrane protein, together with the other spike subunit El, accumulates at the basolateral surface of MDCK cells (Fuller, S. D., C.-H. von Bonsdorff, and K. Simons, 1985, EMBO (Eur. Mol. Biol. Organ.) J., 4:2475-2485). The cDNAs encoding truncated forms of the protein were used to stably transform MDCK cells to examine the role of (a) subunit oligomerization (El-E2) and (b) the cytoplasmic domain of p62/E2 in directed transport to the basolateral surface. The biochemical characteristics and polarity of the expressed proteins were studied using cell monolayers grown on nitrocellulose filters. A wild-type form of p62/E2, in the absence of El, and two forms having either 15 or 3 of the wild-type 31-amino acid carboxyl cytoplasmic domain were all localized to the basolateral surface. These results indicate that the cytoplasmic domain of E2 does not contain the information essential for directed transport to the plasma membrane, and imply that this information resides in eitherthe lumenal and/or membranespanning segments of this transmembrane protein. © 1986, Rockefeller University Press., All rights reserved.

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Roman, L. M., & Garoff, H. (1986). Alteration of the cytoplasmic domain of the membrane-spanning glycoprotein p62 of semliki forest virus does not affect its polar distribution in established lines of madin-darby canine kidney cells. Journal of Cell Biology, 103(6), 2607–2618. https://doi.org/10.1083/jcb.103.6.2607

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