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Varicella-Zoster Virus Immediate-Early 63 Protein Interacts with Human Antisilencing Function 1 Protein and Alters Its Ability To Bind Histones H3.1 and H3.3▿

机译:水痘带状疱疹病毒立即早期63蛋白与人类抗沉默功能1蛋白相互作用,并改变其结合组蛋白H3.1和H3.3▿的能力

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摘要

Varicella-zoster virus (VZV) immediate-early 63 protein (IE63) is abundantly expressed during both acute infection in vitro and latent infection in human ganglia. Using the yeast two-hybrid system, we found that VZV IE63 interacts with human antisilencing function 1 protein (ASF1). ASF1 is a nucleosome assembly factor which is a member of the H3/H4 family of histone chaperones. IE63 coimmunoprecipitated and colocalized with ASF1 in transfected cells expressing IE63 and in VZV-infected cells. IE63 also colocalized with ASF1 in both lytic and latently VZV-infected enteric neurons. ASF1 exists in two isoforms, ASF1a and ASF1b, in mammalian cells. IE63 preferentially bound to ASF1a, and the amino-terminal 30 amino acids of ASF1a were critical for its interaction with IE63. VZV IE63 amino acids 171 to 208 and putative phosphorylation sites of IE63, both of which are critical for virus replication and latency in rodents, were important for the interaction of IE63 with ASF1. Finally, we found that IE63 increased the binding of ASF1 to histone H3.1 and H3.3, which suggests that IE63 may help to regulate levels of histones in virus-infected cells. Since ASF1 mediates eviction and deposition of histones during transcription, the interaction of VZV IE63 with ASF1 may help to regulate transcription of viral or cellular genes during lytic and/or latent infection.
机译:水痘带状疱疹病毒(VZV)的早期63蛋白(IE63)在体外急性感染和人神经节的潜伏感染中均大量表达。使用酵母双杂交系统,我们发现VZV IE63与人抗沉默功能1蛋白(ASF1)相互作用。 ASF1是核小体装配因子,是组蛋白伴侣H3 / H4家族的成员。 IE63在表达IE63的转染细胞和VZV感染的细胞中与ASF1共免疫沉淀和共定位。 IE63还与ASF1在溶解性和潜伏性VZV感染的肠道神经元中共定位。 ASF1在哺乳动物细胞中以两种亚型存在,即ASF1a和ASF1b。 IE63优先绑定到ASF1a,并且ASF1a的氨基末端30个氨基酸对其与IE63的相互作用至关重要。 VZV IE63氨基酸171至208和IE63的假定磷酸化位点对病毒复制和啮齿动物的潜伏期都至关重要,这对于IE63与ASF1的相互作用至关重要。最后,我们发现IE63增加了ASF1与组蛋白H3.1和H3.3的结合,这表明IE63可能有助于调节病毒感染细胞中组蛋白的水平。由于ASF1在转录过程中介导组蛋白的逐出和沉积,因此VZV IE63与ASF1的相互作用可能有助于在裂解和/或潜伏感染过程中调节病毒或细胞基因的转录。

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