首页> 美国卫生研究院文献>Journal of Virology >Strain Variations in Single Amino Acids of the 86-Kilodalton Human Cytomegalovirus Major Immediate-Early Protein (IE2) Affect Its Functional and Biochemical Properties: Implications of Dynamic Protein Conformation
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Strain Variations in Single Amino Acids of the 86-Kilodalton Human Cytomegalovirus Major Immediate-Early Protein (IE2) Affect Its Functional and Biochemical Properties: Implications of Dynamic Protein Conformation

机译:86公斤的人类巨细胞病毒主要立即早期蛋白质(IE2)的单个氨基酸中的菌株变异影响其功能和生化特性:动态蛋白质构象的含义。

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摘要

The 86-kDa major immediate-early protein, IEP86 (IE2, IE2579aa, or ppUL122a), from the Towne and AD169 strains of human cytomegalovirus show four amino acid variations, namely, R68Q, K455E, T541A, and seven consecutive serines beginning at position 258 in Towne and eight serines in AD169. A commonly utilized IEP86 cDNA expression clone (herein called the original cDNA) (E. Baracchini, E. Glezer, K. Fish, R. M. Stenberg, J. A. Nelson, and P. Ghazal, Virology 188:518-529, 1992) shows the Towne R68 and seven serines but contains the AD169 E455 and A541 plus two amino acid mutations, M242I and A463T. In transcriptional activation analyses using several promoters, the IEP86 produced by the original cDNA was 40 to 60% less active than wild-type (WT) Towne IEP86, whereas AD169 IEP86 was two to three times more active than WT Towne IEP86. To determine which amino acid variations or mutations accounted for the differences in transcriptional activation, they were individually tested in the WT Towne IEP86 background. K455E, M242I, and the eighth serine had little effect on transcriptional activation or sumoylation when inserted into the Towne background. T541A significantly increased transcriptional activation on all promoters tested and showed increased sumoylation; T541A is the primary reason that WT AD169 IEP86 has increased activity over WT Towne IEP86. The increased sumoylation seen with T541A was quantitatively reduced to WT Towne levels when the K455E alteration was present, suggesting that K455 may be a sumoylation site or that E455 may cause alterations in the IEP86 structure which affect overall sumoylation. A463T was very deleterious to transcriptional activation and caused reduced sumoylation. The A436T mutation in the original cDNA is partially compensated by the presence of the T541A variation. Phosphopeptide mapping suggests that a threonine at 463 or 541 does not introduce a phosphorylation site. However, the A463T mutation does affect phosphorylation at a distant site, suggesting that it alters the conformation of the protein. Promoter-specific effects were noted with some of the amino acid variations, particularly T541A. Structural modeling is presented which suggests how A463T and T541A alter the functional structure of WT Towne IEP86. A hydrophobic core containing A463 is predicted to be responsible for the functional integrity of the carboxy-terminal region of IEP86 between amino acids 344 and 579.
机译:来自人类巨细胞病毒Towne和AD169株的86 kDa主要早期蛋白质IEP86(IE2,IE2579aa或ppUL122a)显示四个氨基酸变异,即R68Q,K455E,T541A和七个连续的丝氨酸起始位置Towne中有258个,AD169中有8个丝氨酸。常用的IEP86 cDNA表达克隆(以下称为原始cDNA)(E。Baracchini,E。Glezer,K。Fish,RM Stenberg,JA Nelson和P. Ghazal,Virology 188:518-529,1992)显示了Towne R68和七个丝氨酸,但包含AD169 E455和A541以及两个氨基酸突变M242I和A463T。在使用几种启动子的转录激活分析中,原始cDNA产生的IEP86的活性比野生型(WT)Towne的IEP86低40%至60%,而AD169 IEP86的活性比WT Towne的IEP86高2至3倍。为了确定哪些氨基酸变异或突变是造成转录激活差异的原因,我们在WT Towne IEP86背景下对它们进行了单独测试。当插入Towne背景时,K455E,M242I和第八个丝氨酸对转录激活或sumoylation的影响很小。 T541A在所有测试的启动子上显着增加了转录激活,并显示了磺酰化增加; T541A是WT AD169 IEP86比WT Towne IEP86活性增加的主要原因。当存在K455E改变时,用T541A观察到的增加的SUMO化作用被定量降低至WT Towne水平,这表明K455可能是SUMO化作用位点,或者E455可能引起IEP86结构的改变而影响总SUMO化作用。 A463T对转录激活非常有害,并导致sumoylation减少。原始cDNA中的A436T突变被T541A变异的存在部分补偿。磷酸肽图谱表明,在463或541处的苏氨酸不会引入磷酸化位点。但是,A463T突变确实会影响远处的磷酸化,表明它改变了蛋白质的构象。注意到一些氨基酸变异,特别是T541A,具有启动子特异性作用。提出了结构建模,该结构建模建议了A463T和T541A如何改变WT Towne IEP86的功能结构。预计包含A463的疏水核心负责IEP86氨基酸344和579之间的羧基末端区域的功能完整性。

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