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Cytomegalovirus assemblin: the amino and carboxyl domains of the proteinase form active enzyme when separately cloned and coexpressed in eukaryotic cells.

机译:巨细胞病毒组装蛋白:当分别克隆并在真核细胞中共表达时蛋白酶的氨基和羧基结构域形成活性酶。

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摘要

The cytomegalovirus (CMV) serine proteinase assemblin is synthesized as a precursor that undergoes three principal autoproteolytic cleavages. Two of these are common to the assemblin homologs of all herpes group viruses: one at the maturational site near the carboxyl end of the precursor and another at the release site near the midpoint of the precursor. Release-site cleavage frees the proteolytic amino domain, assemblin, from the nonproteolytic carboxyl domain of the precursor. In CMV, a third autoproteolytic cleavage at an internal site divides assemblin into an amino subunit (An) and a carboxyl subunit (Ac) of approximately the same size that remain associated as an active "two-chain" enzyme. We have cloned the sequences encoding An and Ac as separate genes and expressed them by transfecting human cells with recombinant plasmids and by infecting insect cells with recombinant baculoviruses. When An and Ac from either simian CMV or human CMV were coexpressed in human or insect cells, active two-chain assemblin was formed. This finding demonstrates that An and Ac do not require synthesis as single-chain assemblin to fold and associate correctly in these eukaryotic systems, and it suggests that they may be structurally, if not functionally, distinct domains. An interaction between the independently expressed An and Ac subunits was demonstrated by coimmunoprecipitation experiments, and efforts to disrupt the complex indicate that the subunit interaction is hydrophobic. Cell-based cleavage assays of the two-chain assemblin formed from independently expressed An and Ac also indicate that (i) its specificity for both CMV and herpes simplex virus native substrates is similar to that of single-chain assemblin, (ii) R-site cleavage is not essential for the activity of two-chain recombinant assemblin, and (iii) the human CMV and simian CMV An and Ac recombinant subunits are functionally interchangeable.
机译:巨细胞病毒(CMV)丝氨酸蛋白酶组装蛋白被合成为经历三个主要自蛋白水解裂解的前体。其中两种是所有疱疹病毒的集合蛋白同源物共有的:一种在前体羧基末端附近的成熟位点,另一种在前体中点附近的释放位点。释放位点的裂解从前体的非蛋白水解羧基结构域释放蛋白水解氨基结构域,asemblin。在CMV中,在内部位点的第三次自蛋白水解裂解将组装蛋白分成大小相同的氨基亚基(An)和羧基亚基(Ac),它们仍与活性的“双链”酶相关。我们已经克隆了编码An和Ac的序列作为单独的基因,并通过用重组质粒转染人细胞并用重组杆状病毒感染昆虫细胞来表达它们。当来自猿猴CMV或人CMV的An和Ac在人或昆虫细胞中共表达时,形成了活性的两链组装蛋白。该发现表明An和Ac不需要作为单链装配蛋白的合成就可以在这些真核系统中正确折叠和缔合,并且表明它们可能在结构上(如果不是功能上)是不同的结构域。通过共免疫沉淀实验证明了独立表达的An和Ac亚基之间的相互作用,破坏复合物的努力表明该亚基相互作用是疏水的。由独立表达的An和Ac形成的双链装配蛋白的基于细胞的裂解试验还表明(i)其对CMV和单纯疱疹病毒天然底物的特异性与单链装配蛋白相似(ii)R-位点切割对于两链重组组装蛋白的活性不是必需的,并且(iii)人CMV和猿猴CMV An和Ac重组亚基在功能上是可互换的。

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