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首页> 外文期刊>Virology >ANALYSIS OF THE ROLE OF THE AMINO-TERMINAL PEPTIDE OF VACCINIA VIRUS STRUCTURAL PROTEIN PRECURSORS DURING PROTEOLYTIC PROCESSING
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ANALYSIS OF THE ROLE OF THE AMINO-TERMINAL PEPTIDE OF VACCINIA VIRUS STRUCTURAL PROTEIN PRECURSORS DURING PROTEOLYTIC PROCESSING

机译:痘苗病毒结构蛋白前体的氨基末端肽在蛋白水解过程中的作用分析

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Several VV structural proteins are produced by the removal of amino-terminal peptides from their cognate precursors. In the experiments reported here, directed genetic approaches were used to investigate the possible role of these terminal peptides in protein processing. As a model system, the FLAG epitope-tagged P25K precursor was used to prepare constructs in which the 31-amino-acid P25K N-terminal peptide was removed or replaced by heterologous sequences, while the A-G*-A- cleavage motif was retained. Only a trace amount of the leaderless P25KF(Delta 31) polypeptide was found within the mature virions, implying that proteolytic processing is necessary for the incorporation of the 25K product into mature virions. In trans-processing assays, significant levels of the 25K product were generated from wild-type P25KF and P4b:25KF, which consists of the 61-amino-acid P4b terminal peptide, and from P4b:25KF with 15, 30, or 44 residues of the amino terminus deleted. In contrast, only a small amount of 25K was produced from the TK:25KF, which contains the amino-terminal 30 residues of VV thymidine kinase, a protein which is not cleaved under normal circumstances. Furthermore, it has been hypothesized that a hydrophobic residue is required at position P4 relative to the -A-G*-A- motif for the cleavage to take place. An intermediate level of the 25K product was detected from the TK:25KF(Q29V) muta nt which has the glutamine residue at P4 replaced with a valine residue, suggesting that the hydrophobic P4 residue and additional substrate determinants in the N-terminal peptide region are required for the proteolytic processing reaction to occur normally. Taken together, these data suggest that the amino-terminal peptides of the VV core proteins are to some extent interchangeable and that the residues proxima[ to the AGA site are of most importance. (C) 1995 Academic Press. Inc.
机译:通过从其同源前体中去除氨基末端肽,可以生产出几种VV结构蛋白。在这里报道的实验中,定向遗传方法被用来研究这些末端肽在蛋白质加工中的可能作用。作为模型系统,使用标记有FLAG表位的P25K前体来制备构建体,其中去除了31个氨基酸的P25K N-末端肽或被异源序列替代,同时保留了A-G * -A-切割基序。在成熟病毒体中仅发现了痕量的无前导P25KF(Δ31)多肽,这意味着蛋白水解过程对于将25K产物掺入成熟病毒体中是必需的。在转加工试验中,由野生型P25KF和P4b:25KF(由61个氨基酸的P4b末端肽组成)以及具有15、30或44个残基的P4b:25KF产生了大量的25K产物氨基末端的缺失。相比之下,TK:25KF仅产生少量25K,其中包含VV胸苷激酶的氨基末端30个残基,该蛋白在正常情况下不会裂解。此外,已经假设在相对于-A-G * -A-基序的位置P4处需要疏水残基以进行切割。从TK:25KF(Q29V)突变体检测到25K产物的中间水平,该突变体的P4上的谷氨酰胺残基被缬氨酸残基取代,表明N端肽区域中的疏水性P4残基和其他底物决定簇是正常进行蛋白水解加工反应所需要的。综上所述,这些数据表明,VV核心蛋白的氨基末端肽在一定程度上是可互换的,并且最接近AGA位点的残基。 (C)1995年学术出版社。公司

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