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A Short Isoform of Human Cytomegalovirus US3 Functions As a Dominant Negative Inhibitor of the Full-length Form

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Journal J Virol
Date 2006 May 16
PMID 16699020
Citations 8
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Abstract

Human cytomegalovirus encodes four unique short (US) region proteins, each of which is independently sufficient for causing the down-regulation of major histocompatibility complex (MHC) class I molecules on the cell surface. This down-regulation enables infected cells to evade recognition by cytotoxic T lymphocytes (CTLs) but makes them vulnerable to lysis by natural killer (NK) cells, which lyse those cells that lack MHC class I molecules. The 22-kDa US3 glycoprotein is able to down-regulate the surface expression of MHC class I molecules by dual mechanisms: direct endoplasmic reticulum retention by physical association and/or tapasin inhibition. The alternative splicing of the US3 gene generates two additional products, including 17-kDa and 3.5-kDa truncated isoforms; however, the functional significance of these isoforms during viral infection is unknown. Here, we describe a novel mode of self-regulation of US3 function that uses the endogenously produced truncated isoform. The truncated isoform itself neither binds to MHC class I molecules nor prevents the full-length US3 from interacting with MHC class I molecules. Instead, the truncated isoform associates with tapasin and competes with full-length US3 for binding to tapasin; thus, it suppresses the action of US3 that causes the disruption of the function of tapasin. Our results indicate that the truncated isoform of the US3 locus acts as a dominant negative regulator of full-length US3 activity. These data reflect the manner in which the virus has developed temporal survival strategies during viral infection against immune surveillance involving both CTLs and NK cells.

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References
1.
Williams A, Peh C, Purcell A, McCluskey J, Elliott T . Optimization of the MHC class I peptide cargo is dependent on tapasin. Immunity. 2002; 16(4):509-20. DOI: 10.1016/s1074-7613(02)00304-7. View

2.
Townsend A, Bodmer H . Antigen recognition by class I-restricted T lymphocytes. Annu Rev Immunol. 1989; 7:601-24. DOI: 10.1146/annurev.iy.07.040189.003125. View

3.
Purcell A, Gorman J, Paradela A, Burrows S, Talbo G, Laham N . Quantitative and qualitative influences of tapasin on the class I peptide repertoire. J Immunol. 2001; 166(2):1016-27. DOI: 10.4049/jimmunol.166.2.1016. View

4.
Lodoen M, Lanier L . Viral modulation of NK cell immunity. Nat Rev Microbiol. 2004; 3(1):59-69. DOI: 10.1038/nrmicro1066. View

5.
Lee S, Hwang S, Park J, Park B, Jin B, Lee S . Functional dissection of HCMV US11 in mediating the degradation of MHC class I molecules. Biochem Biophys Res Commun. 2005; 330(4):1262-7. DOI: 10.1016/j.bbrc.2005.03.112. View