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单纯疱疹病毒包膜蛋白 UL11 与糖蛋白 e 的相互作用及相互依赖的包装。

Interaction and interdependent packaging of tegument protein UL11 and glycoprotein e of herpes simplex virus.

机构信息

Department of Microbiology and Immunology, The Pennsylvania State University College of Medicine, 500 University Drive, P.O. Box 850, Hershey, PA 17033, USA.

出版信息

J Virol. 2011 Sep;85(18):9437-46. doi: 10.1128/JVI.05207-11. Epub 2011 Jul 6.

Abstract

The UL11 tegument protein of herpes simplex virus plays a critical role in the secondary envelopment; however, the mechanistic details remain elusive. Here, we report a new function of UL11 in the budding process in which it directs efficient acquisition of glycoprotein E (gE) via a direct interaction. In vitro binding assays showed that the interaction required only the first 28, membrane-proximal residues of the cytoplasmic tail of gE, and the C-terminal 26 residues of UL11. A second, weaker binding site was also found in the N-terminal half of UL11. The significance of the gE-UL11 interaction was subsequently investigated with viral deletion mutants. In the absence of the gE tail, virion packaging of UL11, but not other tegument proteins such as VP22 and VP16, was reduced by at least 80%. Reciprocally, wild-type gE packaging was also drastically reduced by about 87% in the absence of UL11, and this defect could be rescued in trans by expressing U(L)11 at the U(L)35 locus. Surprisingly, a mutant that lacks the C-terminal gE-binding site of UL11 packaged nearly normal amounts of gE despite its strong interaction with the gE tail in vitro, indicating that the interaction with the UL11 N terminus may be important. Mutagenesis studies of the UL11 N terminus revealed that the association of UL11 with membrane was not required for this function. In contrast, the UL11 acidic cluster motif was found to be critical for gE packaging and was not replaceable with foreign acidic clusters. Together, these results highlight an important role of UL11 in the acquisition of glycoprotein-enriched lipid bilayers, and the findings may also have important implications for the role of UL11 in gE-mediated cell-to-cell spread.

摘要

单纯疱疹病毒的 UL11 衣壳蛋白在二次包被中起着关键作用;然而,其机制细节仍难以捉摸。在这里,我们报告了 UL11 在出芽过程中的一个新功能,即通过直接相互作用指导糖蛋白 E (gE) 的有效获得。体外结合实验表明,这种相互作用只需要 gE 细胞质尾部的前 28 个、靠近膜的残基和 UL11 的 C 末端 26 个残基。还发现了第二个较弱的结合位点位于 UL11 的 N 端半部分。随后,通过病毒缺失突变体研究了 gE-UL11 相互作用的意义。在没有 gE 尾巴的情况下,至少有 80%的 UL11 衣壳蛋白的病毒包装减少,但其他衣壳蛋白如 VP22 和 VP16 则没有减少。相反,在没有 UL11 的情况下,野生型 gE 的包装也减少了约 87%,而在 U(L)35 位点表达 U(L)11 可以在转染中挽救这一缺陷。令人惊讶的是,尽管 UL11 与 gE 尾部在体外具有很强的相互作用,但缺乏 UL11 C 末端 gE 结合位点的突变体包装了几乎正常数量的 gE,这表明与 UL11 N 端的相互作用可能很重要。对 UL11 N 端的突变研究表明,UL11 与膜的关联不是其功能所必需的。相比之下,发现 UL11 酸性簇基序对于 gE 的包装至关重要,并且不能被外来酸性簇替代。这些结果共同强调了 UL11 在获得富含糖蛋白的脂质双层中的重要作用,并且这一发现可能对 UL11 在 gE 介导的细胞间传播中的作用也具有重要意义。

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