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首页> 外文期刊>Virus Genes >Identification of putative functional motifs in viral proteins essential for human cytomegalovirus DNA replication.
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Identification of putative functional motifs in viral proteins essential for human cytomegalovirus DNA replication.

机译:鉴定人巨细胞病毒DNA复制所必需的病毒蛋白中的假定功能性基序。

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摘要

Six of the eleven genes essential for Human cytomegalovirus (HCMV) DNA synthesis have been analyzed for putative structural motifs that may have a significant functional role in DNA replication. The genes studied encode for the DNA polymerase accessory protein (UL44), single-stranded DNA binding protein (UL57), primase-helicase complex (UL70, UL102, and UL105), and the putative initiator protein (UL84). The full-length open reading frames of these genes were highly conserved between ten isolates with amino acid sequence identity of >97% for all genes. Using ScanProsite software from the Expert Protein Analysis System (ExPASy) proteomics server, we have mapped putative motifs throughout these HCMV replication genes. Interesting motifs identified include casein kinase-2 (CKII) phosphorylation sites, a microbodies signal motif in UL57, and an ATP binding site in the putative UL105 helicase. Our investigations have also elucidated motif-rich regions of the UL44 DNA polymerase accessory protein and identified cysteine motifs that have potential implications for UL57 and UL70 primase. Taken together, these findings provide insights to regions of these HCMV replication proteins that are important for post-translation modification, activation, and overall function, and this information can be utilized to target further research into these proteins and advance the development of novel antiviral agents that target these processes.
机译:已分析了人类巨细胞病毒(HCMV)DNA合成必不可少的11个基因中的6个基因的推定结构基序,这些基序可能在DNA复制中起重要作用。研究的基因编码DNA聚合酶辅助蛋白(UL44),单链DNA结合蛋白(UL57),引物酶-解旋酶复合物(UL70,UL102和UL105)和推定的引发剂蛋白(UL84)。这些基因的全长开放阅读框在十个分离株之间高度保守,所有基因的氨基酸序列同一性均> 97%。使用来自专家蛋白质分析系统(ExPASy)蛋白质组学服务器的ScanProsite软件,我们在这些HCMV复制基因中定位了推定的基序。确定的有趣基序包括酪蛋白激酶2(CKII)磷酸化位点,UL57中的微体信号基序和推定的UL105解旋酶中的ATP结合位点。我们的研究还阐明了UL44 DNA聚合酶辅助蛋白的丰富基序区域,并确定了对UL57和UL70引发酶有潜在影响的半胱氨酸基序。综上所述,这些发现为这些HCMV复制蛋白的区域提供了见解,这些区域对于翻译后修饰,激活和整体功能很重要,并且该信息可用于针对这些蛋白进行进一步研究并促进新型抗病毒剂的开发。针对这些过程。

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