๐ Bcl-xL inhibits T-cell apoptosis induced by expression of SARS coronavirus E protein in the absence of growth factors
One of the hallmark findings in patients suffering from SARS (severe acute respiratory syndrome) is lymphopenia, which is the result of massive lymphocyte death. SARS-CoV (SARS coronavirus), a novel coronavirus that has been etiologically associated with SARS cases, is homologous with MHV (murine hepatitis coronavirus), and MHV small envelope E protein is capable of inducing apoptosis. We hypothesized that SARS-CoV encodes a small envelope E protein that is homologous with MHV E protein, thus inducing T-cell apoptosis. To test this hypothesis, a cDNA encoding SARS-CoV E protein was created using whole gene synthesis. Our results showed that SARS-CoV E protein induced apoptosis in the transfected Jurkat T-cells, which was amplified to higher apoptosis rates in the absence of growth factors. However, apoptosis was inhibited by overexpressed antiapoptotic protein Bcl-xL. Moreover, we found that SARS-CoV E protein interacted with Bcl-xL in vitro and endogenous Bcl-xL in vivo and that Bcl-xL interaction with SARS-CoV E protein was mediated by BH3 (Bcl-2 homology domain 3) of Bcl-xL. Finally, we identified a novel BH3-like region located in the C-terminal cytosolic domain of SARS-CoV E protein, which mediates its binding to Bcl-xL. These results demonstrate, for the first time, a novel molecular mechanism of T-cell apoptosis that contributes to the SARS-CoV-induced lymphopenia observed in most SARS patients. ยฉ 2005 Biochemical Society.
keywords
๐ severe acute (1373)
๐ murine hepatitis (71)
๐ novel coronavirus (684)
๐ respiratory syndrome (2004)
๐ acute respiratory (1734)
author
๐ค Yang, Yu
๐ค Xiong, Zeyu
๐ค Zhang, Sheng
๐ค Yan, Yan
๐ค Nguyen, Justin
๐ค Ng, Bernard
๐ค Lu, Huifang
๐ค Brendese, John
๐ค Yang, Fan
๐ค Wang, Hong
๐ค Yang, Xiao Feng
year
โฐ 2005
journal
๐ Biochemical Journal
issn
๐ 02646021
volume
392
number
1
page
135-143
citedbycount
42
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