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“卷曲螺旋”基序对于人巨细胞病毒蛋白 UL77 的寡聚化和 DNA 结合特性很重要。

A "coiled-coil" motif is important for oligomerization and DNA binding properties of human cytomegalovirus protein UL77.

机构信息

Institute of Virology, Charité Universitätsmedizin Berlin, Berlin, Germany.

出版信息

PLoS One. 2011;6(10):e25115. doi: 10.1371/journal.pone.0025115. Epub 2011 Oct 5.

Abstract

Human cytomegalovirus (HCMV) UL77 gene encodes the essential protein UL77, its function is characterized in the present study. Immunoprecipitation identified monomeric and oligomeric pUL77 in HCMV infected cells. Immunostaining of purified virions and subviral fractions showed that pUL77 is a structural protein associated with capsids. In silico analysis revealed the presence of a coiled-coil motif (CCM) at the N-terminus of pUL77. Chemical cross-linking of either wild-type pUL77 or CCM deletion mutant (pUL77ΔCCM) implicated that CCM is critical for oligomerization of pUL77. Furthermore, co-immunoprecipitations of infected and transfected cells demonstrated that pUL77 interacts with the capsid-associated DNA packaging motor components, pUL56 and pUL104, as well as the major capsid protein. The ability of pUL77 to bind dsDNA was shown by an in vitro assay. Binding to certain DNA was further confirmed by an assay using biotinylated 36-, 250-, 500-, 1000-meric dsDNA and 966-meric HCMV-specific dsDNA designed for this study. The binding efficiency (BE) was determined by image processing program defining values above 1.0 as positive. While the BE of the pUL56 binding to the 36-mer bio-pac1 containing a packaging signal was 10.0 ± 0.63, the one for pUL77 was only 0.2±0.03. In contrast to this observation the BE of pUL77 binding to bio-500 bp or bio-1000 bp was 2.2 ± 0.41 and 4.9 ± 0.71, respectively. By using pUL77ΔCCM it was demonstrated that this protein could not bind to dsDNA. These data indicated that pUL77 (i) could form homodimers, (ii) CCM of pUL77 is crucial for oligomerization and (iii) could bind to dsDNA in a sequence independent manner.

摘要

人巨细胞病毒(HCMV)UL77 基因编码必需蛋白 UL77,本研究对其功能进行了研究。免疫沉淀鉴定了 HCMV 感染细胞中的单体和寡聚 pUL77。免疫染色纯化的病毒粒子和亚病毒组分表明 pUL77 是与衣壳相关的结构蛋白。计算机分析显示 pUL77 的 N 端存在卷曲螺旋基序(CCM)。化学交联野生型 pUL77 或 CCM 缺失突变体(pUL77ΔCCM)表明 CCM 对 pUL77 寡聚化至关重要。此外,感染和转染细胞的共免疫沉淀表明 pUL77 与衣壳相关的 DNA 包装马达成分 pUL56 和 pUL104 以及主要衣壳蛋白相互作用。体外测定显示 pUL77 具有结合 dsDNA 的能力。通过使用为本研究设计的生物素化 36-、250-、500-、1000 聚体 dsDNA 和 966 聚体 HCMV 特异性 dsDNA 的测定进一步证实了与某些 DNA 的结合。通过图像处理程序定义值大于 1.0 为阳性来确定结合效率(BE)。虽然 pUL56 与包含包装信号的 36-mer bio-pac1 的结合的 BE 为 10.0 ± 0.63,但 pUL77 的 BE 仅为 0.2±0.03。与此相反,pUL77 与 bio-500 bp 或 bio-1000 bp 的结合的 BE 分别为 2.2 ± 0.41 和 4.9 ± 0.71。使用 pUL77ΔCCM 表明该蛋白不能结合 dsDNA。这些数据表明 pUL77(i)可以形成同源二聚体,(ii)pUL77 的 CCM 对寡聚化至关重要,(iii)可以以序列非依赖的方式结合 dsDNA。

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