Laboratory of Drosophila Research, The Chinese University of Hong Kong, Shatin, NT, Hong Kong SAR, China.
Int J Biochem Cell Biol. 2009 Nov;41(11):2232-9. doi: 10.1016/j.biocel.2009.04.019. Epub 2009 May 4.
The severe acute respiratory syndrome-coronavirus (SARS-CoV) caused an outbreak of atypical pneumonia in 2003. The SARS-CoV viral genome encodes several proteins which have no homology to proteins in any other coronaviruses, and a number of these proteins have been implicated in viral cytopathies. One such protein is 3a, which is also known as X1, ORF3 and U274. 3a expression is detected in both SARS-CoV infected cultured cells and patients. Among the different functions identified, 3a is a capable of inducing apoptosis. We previously showed that caspase pathways are involved in 3a-induced apoptosis. In this study, we attempted to find out protein domains on 3a that are essential for its pro-apoptotic function. Protein sequence analysis reveals that 3a possesses three major protein signatures, the cysteine-rich, Yxx phi and diacidic domains. We showed that 3a proteins carrying respective mutations in these protein domains exhibit reduced pro-apoptotic activities, indicating the importance of these domains on 3a's pro-apoptotic function. It was previously reported that 3a possesses potassium ion channel activity. We further demonstrated that the blockade of 3a's potassium channel activity abolished caspase-dependent apoptosis. This report provides the first evidence that ion channel activity of 3a is required for its pro-apoptotic function. As ion channel activity has been reported to regulate apoptosis in different pathologic conditions, finding ways to modulate the ion channel activity may offer a new direction toward the inhibition of apoptosis triggered by SARS-CoV.
严重急性呼吸综合征冠状病毒(SARS-CoV)于 2003 年引发了非典型性肺炎疫情。SARS-CoV 病毒基因组编码的几种蛋白与其他冠状病毒中的蛋白均无同源性,其中一些蛋白与病毒细胞病变有关。其中一种蛋白是 3a,也称为 X1、ORF3 和 U274。在 SARS-CoV 感染的培养细胞和患者中均可检测到 3a 的表达。在已鉴定的不同功能中,3a 能够诱导细胞凋亡。我们之前的研究表明,caspase 途径参与了 3a 诱导的细胞凋亡。在这项研究中,我们试图找出 3a 中对其促凋亡功能至关重要的蛋白结构域。蛋白序列分析表明,3a 具有三个主要的蛋白特征结构域:富含半胱氨酸、Yxxφ 和双酸性结构域。我们发现,这些蛋白结构域发生突变的 3a 蛋白,其促凋亡活性降低,表明这些结构域对 3a 的促凋亡功能很重要。此前有报道称,3a 具有钾离子通道活性。我们进一步证明,阻断 3a 的钾离子通道活性可消除 caspase 依赖性凋亡。本报告首次提供证据表明,3a 的离子通道活性是其促凋亡功能所必需的。由于离子通道活性已被报道可调节不同病理条件下的细胞凋亡,寻找调节离子通道活性的方法可能为抑制 SARS-CoV 触发的细胞凋亡提供新的方向。