Owsianka A M, Patel A H
Medical Research Council Virology Unit, Church Street, Glasgow, G11 5JR, United Kingdom.
Virology. 1999 May 10;257(2):330-40. doi: 10.1006/viro.1999.9659.
Several studies have implicated hepatitis C virus (HCV) core in influencing the expression of host genes. To identify cellular factors with a possible role in HCV replication and pathogenesis, we looked for cellular proteins that interact with the viral core protein. A human liver cDNA library was screened in a yeast two-hybrid assay to identify cellular proteins that bind to core. Several positive clones were isolated, one of which encoded the C-terminal 253 amino acids of a putative RNA helicase, a DEAD box protein designated DDX3. Bacterially expressed glutathione-S-transferase-DDX3 fusion protein specifically pulled down in vitro translated and radiolabeled HCV core, confirming a direct interaction. Immunofluorescent staining of HeLa cells with a polyclonal antiserum showed that DDX3 is located predominantly in nuclear speckles and at low levels throughout the cytoplasm. In cells infected with a recombinant vaccinia virus expressing HCV structural proteins (core, E1, and E2), DDX3 and core colocalized in distinct spots in the perinuclear region of the cytoplasm. The regions of the proteins involved in binding were found by deletion analysis to be the N-terminal 59 amino acid residues of core and a C-terminal RS-like domain of DDX3. The human DDX3 is a putative RNA helicase and a member of a highly conserved DEAD box subclass that includes murine PL10, Xenopus An3, and yeast Ded1 proteins. Their role in RNA metabolism or gene expression is unknown. The significance of core-helicase interaction in HCV replication and pathogenesis is discussed.
多项研究表明丙型肝炎病毒(HCV)核心蛋白会影响宿主基因的表达。为了鉴定可能在HCV复制和发病机制中发挥作用的细胞因子,我们寻找了与病毒核心蛋白相互作用的细胞蛋白。通过酵母双杂交实验筛选人肝cDNA文库,以鉴定与核心蛋白结合的细胞蛋白。分离出了几个阳性克隆,其中一个编码一种假定的RNA解旋酶的C末端253个氨基酸,该蛋白是一种名为DDX3的DEAD盒蛋白。细菌表达的谷胱甘肽-S-转移酶-DDX3融合蛋白在体外特异性下拉翻译并经放射性标记的HCV核心蛋白,证实了直接相互作用。用多克隆抗血清对HeLa细胞进行免疫荧光染色显示,DDX3主要位于核斑点中,在整个细胞质中含量较低。在用表达HCV结构蛋白(核心蛋白、E1和E2)的重组痘苗病毒感染的细胞中,DDX3和核心蛋白在细胞质核周区域的不同斑点中共定位。通过缺失分析发现,参与结合的蛋白区域是核心蛋白的N末端59个氨基酸残基和DDX3的C末端RS样结构域。人DDX3是一种假定的RNA解旋酶,是高度保守的DEAD盒亚类的成员,该亚类包括小鼠PL10、非洲爪蟾An3和酵母Ded1蛋白。它们在RNA代谢或基因表达中的作用尚不清楚。文中讨论了核心蛋白与解旋酶相互作用在HCV复制和发病机制中的意义。