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The Role of Severe Acute Respiratory Syndrome (SARS)-Coronavirus Accessory Proteins in Virus Pathogenesis

机译:严重急性呼吸系统综合症(SARS)-冠状病毒附件蛋白在病毒发病中的作用

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A respiratory disease caused by a novel coronavirus, termed the severe acute respiratory syndrome coronavirus (SARS-CoV), was first reported in China in late 2002. The subsequent efficient human-to-human transmission of this virus eventually affected more than 30 countries worldwide, resulting in a mortality rate of ~10% of infected individuals. The spread of the virus was ultimately controlled by isolation of infected individuals and there has been no infections reported since April 2004. However, the natural reservoir of the virus was never identified and it is not known if this virus will re-emerge and, therefore, research on this virus continues. The SARS-CoV genome is about 30 kb in length and is predicted to contain 14 functional open reading frames (ORFs). The genome encodes for proteins that are homologous to known coronavirus proteins, such as the replicase proteins (ORFs 1a and 1b) and the four major structural proteins: nucleocapsid (N), spike (S), membrane (M) and envelope (E). SARS-CoV also encodes for eight unique proteins, called accessory proteins, with no known homologues. This review will summarize the current knowledge on SARS-CoV accessory proteins and will include: (i) expression and processing; (ii) the effects on cellular processes; and (iii) functional studies.
机译:2002年末,中国首次报道了由新型冠状病毒引起的呼吸系统疾病,称为严重急性呼吸系统综合症冠状病毒(SARS-CoV)。随后,这种人对人的有效传播最终影响了全球30多个国家,导致被感染者的死亡率约为10%。该病毒的传播最终受到隔离感染者的控制,并且自2004年4月以来未报告过感染。但是,该病毒的天然贮藏库从未被发现,因此尚不清楚该病毒是否会重新出现,因此,对此病毒的研究仍在继续。 SARS-CoV基因组的长度约为30 kb,预计包含14个功能性开放阅读框(ORF)。基因组编码与已知冠状病毒蛋白同源的蛋白,例如复制酶蛋白(ORF 1a和1b)和四种主要结构蛋白:核衣壳(N),刺突(S),膜(M)和包膜(E) 。 SARS-CoV还编码八个独特的蛋白,称为辅助蛋白,没有已知的同源物。这篇综述将总结有关SARS-CoV辅助蛋白的最新知识,并将包括:(i)表达和加工; (ii)对细胞过程的影响; (iii)功能研究。

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