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Severe acute respiratory syndrome-associated coronavirus 3a protein forms an ion channel and modulates virus release

机译:严重急性呼吸系统综合症相关冠状病毒3a蛋白形成离子通道并调节病毒释放

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Fourteen ORFs have been identified in the severe acute respiratory syndrome-associated coronavirus (SARS-CoV) genome. ORF 3a of SARS-CoV codes for a recently identified transmembrane protein, but its function remains unknown. In this study we confirmed the 3a protein expression and investigated its localization at the surface of SARS-CoV-infected or 3a-cDNA-transfected cells. Our experiments showed that recombinant 3a protein can form a homotetramer complex through interprotein disulfide bridges in 3a-cDNA-transfected cells, providing a clue to ion channel function. The putative ion channel activity of this protein was assessed in 3a-complement RNA-injected Xenopus oocytes by two-electrode voltage clamp. The results suggest that 3a protein forms a potassium sensitive channel, which can be efficiently inhibited by barium. After FRhK-4 cells were transfected with an siRNA, which is known to suppress 3a expression, followed by infection with SARS-CoV, the released virus was significantly decreased, whereas the replication of the virus in the infected cells was not changed. Our observation suggests that SARS-CoV ORF 3a functions as an ion channel that may promote virus release. This finding will help to explain the highly pathogenic nature of SARS-CoV and to develop new strategies for treatment of SARS infection.
机译:在严重急性呼吸系统综合症相关冠状病毒(SARS-CoV)基因组中已鉴定出14个ORF。 SARS-CoV的ORF 3a编码最近鉴定出的跨膜蛋白,但其功能仍然未知。在这项研究中,我们确认了3a蛋白的表达,并研究了其在SARS-CoV感染或3a-cDNA转染的细胞表面的定位。我们的实验表明,重组3a蛋白可以通过3a-cDNA转染的细胞中的蛋白间二硫键形成同四聚体复合物,为离子通道功能提供了线索。通过两电极电压钳在3a补体RNA注射的爪蟾卵母细胞中评估了该蛋白的推定离子通道活性。结果表明3a蛋白形成钾敏感通道,可以被钡有效地抑制。用已知抑制3a表达的siRNA转染FRhK-4细胞后,用SARS-CoV感染,释放的病毒明显减少,而病毒在感染细胞中的复制没有改变。我们的观察表明,SARS-CoV ORF 3a作为离子通道起作用,可促进病毒释放。这一发现将有助于解释SARS-CoV的高致病性,并为治疗SARS感染制定新的策略。

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