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单纯疱疹病毒1型Us11基因产物与细胞动力蛋白轻链相关蛋白PAT1的结合导致这两种多肽重新分布。

Association of the herpes simplex virus type 1 Us11 gene product with the cellular kinesin light-chain-related protein PAT1 results in the redistribution of both polypeptides.

作者信息

Benboudjema Louisa, Mulvey Matthew, Gao Yuehua, Pimplikar Sanjay W, Mohr Ian

机构信息

Department of Microbiology and NYU Cancer Institute, New York University School of Medicine, New York, New York 10016, USA.

出版信息

J Virol. 2003 Sep;77(17):9192-203. doi: 10.1128/jvi.77.17.9192-9203.2003.

Abstract

The herpes simplex virus type 1 (HSV-1) Us11 gene encodes a multifunctional double-stranded RNA (dsRNA)-binding protein that is expressed late in infection and packaged into the tegument layer of the virus particle. As a tegument component, Us11 associates with nascent capsids after its synthesis late in the infectious cycle and is delivered into newly infected cells at times prior to the expression of viral genes. Us11 is also an abundant late protein that regulates translation through its association with host components and contains overlapping nucleolar retention and nuclear export signals, allowing its accumulation in both nucleoli and the cytosol. Thus, at various times during the viral life cycle and in different intracellular compartments, Us11 has the potential to execute discrete tasks. The analysis of these functions, however, is complicated by the fact that Us11 is not essential for viral replication in cultured cells. To discover new host targets for the Us11 protein, we searched for cellular proteins that interact with Us11 and have identified PAT1 as a Us11-binding protein according to multiple, independent experimental criteria. PAT1 binds microtubules, participates in amyloid precursor protein trafficking, and has homology to the kinesin light chain (KLC) in its carboxyl terminus. The carboxyl-terminal dsRNA-binding domain of Us11, which also contains the nucleolar retention and nuclear export signals, binds PAT1, whereas 149 residues derived from the KLC homology region of PAT1 are important for binding to Us11. Both PAT1 and Us11 colocalize within a perinuclear area in transiently transfected and HSV-1-infected cells. The 149 amino acids derived from the KLC homology region are required for colocalization of the two polypeptides. Furthermore, although PAT1 normally accumulates in the nuclear compartment, Us11 expression results in the exclusion of PAT1 from the nucleus and its accumulation in the perinuclear space. Similarly, Us11 does not accumulate in the nucleoli of infected cells that overexpress PAT1. These results establish that Us11 and PAT1 can associate, resulting in an altered subcellular distribution of both polypeptides. The association between PAT1, a cellular trafficking protein with homology to KLC, and Us11, along with a recent report demonstrating an interaction between Us11 and the ubiquitous kinesin heavy chain (R. J. Diefenbach et al., J. Virol. 76:3282-3291, 2002), suggests that these associations may be important for the intracellular movement of viral components.

摘要

单纯疱疹病毒1型(HSV - 1)的Us11基因编码一种多功能双链RNA(dsRNA)结合蛋白,该蛋白在感染后期表达,并被包装到病毒颗粒的被膜层中。作为一种被膜成分,Us11在感染周期后期合成后与新生衣壳结合,并在病毒基因表达之前被递送到新感染的细胞中。Us11也是一种丰富的晚期蛋白,它通过与宿主成分结合来调节翻译,并且含有重叠的核仁保留信号和核输出信号,使其能够在核仁和细胞质中积累。因此,在病毒生命周期的不同时间以及不同的细胞内区室中,Us11有可能执行不同的任务。然而,由于Us11对于培养细胞中的病毒复制并非必需,这一事实使得对这些功能的分析变得复杂。为了发现Us11蛋白的新宿主靶点,我们寻找了与Us11相互作用的细胞蛋白,并根据多个独立的实验标准确定PAT1为一种Us11结合蛋白。PAT1结合微管,参与淀粉样前体蛋白的运输,并且在其羧基末端与驱动蛋白轻链(KLC)具有同源性。Us11的羧基末端dsRNA结合结构域,其中也包含核仁保留信号和核输出信号,与PAT1结合,而源自PAT1的KLC同源区域的149个残基对于与Us11的结合很重要。在瞬时转染和HSV - 1感染的细胞中,PAT1和Us11都共定位于核周区域。源自KLC同源区域的149个氨基酸对于这两种多肽共定位是必需的。此外,尽管PAT1通常在核区室中积累,但Us11的表达导致PAT1从细胞核中排除并在核周空间中积累。同样,在过表达PAT1的感染细胞的核仁中,Us11也不会积累。这些结果表明Us11和PAT1可以相互作用,导致两种多肽的亚细胞分布发生改变。PAT1是一种与KLC具有同源性的细胞运输蛋白,它与Us11之间的相互作用,以及最近一份关于Us11与普遍存在的驱动蛋白重链之间相互作用的报告(R. J. Diefenbach等人,《病毒学杂志》76:3282 - 3291,2002),表明这些相互作用可能对病毒成分的细胞内移动很重要。

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