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Interferon-induced Transmembrane Protein 3 Is a Type II Transmembrane Protein

作者
Charles C. Bailey,Hema R. Kondur,I‐Chueh Huang,Michael Farzan
出处
期刊:Journal of Biological Chemistry [Elsevier BV]
卷期号:288 (45): 32184-32193 被引量:96
标识
DOI:10.1074/jbc.m113.514356
摘要

The interferon-induced transmembrane (IFITM) proteins are a family of small membrane proteins that inhibit the cellular entry of several genera of viruses. These proteins had been predicted to adopt a two-pass, type III transmembrane topology with an intracellular loop, two transmembrane helices (TM1 and TM2), and extracellular N and C termini. Recent work, however, supports an intramembrane topology for the helices with cytosolic orientation of both termini. Here we determined the topology of murine Ifitm3. We found that the N terminus of Ifitm3 could be stained by antibodies at the cell surface but that this conformation was cell type-dependent and represented a minority of the total plasma membrane pool. In contrast, the C terminus was readily accessible to antibodies at the cell surface and extracellular C termini comprised most or all of those present at the plasma membrane. The addition of a C-terminal KDEL endoplasmic reticulum retention motif to Ifitm3 resulted in sequestration of Ifitm3 in the ER, demonstrating an ER-luminal orientation of the C terminus. C-terminal, but not N-terminal, epitope tags were also degraded within lysosomes, consistent with their luminal orientation. Furthermore, epitope-tagged Ifitm3 TM2 functioned as a signal anchor sequence when expressed in isolation. Collectively, our results demonstrate a type II transmembrane topology for Ifitm3 and will provide insight into its interaction with potential targets and cofactors. Background: Interferon-induced transmembrane (IFITM) proteins are viral restriction factors with controversial topology. Results: Ifitm3 with an intracellular N terminus and extracellular C terminus is the predominant form and exhibits viral restriction activity. Conclusion: Ifitm3 is a type II transmembrane protein. Significance: An understanding of the interaction of Ifitm3 with potential targets and cofactors is predicated on a correct understanding of its topology.

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