首页> 外文OA文献 >Assembly Protein Precursor (pUL80.5 Homolog) of Simian Cytomegalovirus Is Phosphorylated at a Glycogen Synthase Kinase 3 Site and Its Downstream “Priming” Site: Phosphorylation Affects Interactions of Protein with Itself and with Major Capsid Protein
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Assembly Protein Precursor (pUL80.5 Homolog) of Simian Cytomegalovirus Is Phosphorylated at a Glycogen Synthase Kinase 3 Site and Its Downstream “Priming” Site: Phosphorylation Affects Interactions of Protein with Itself and with Major Capsid Protein

机译:猿猴巨细胞病毒的装配蛋白前体(pUL80.5同源)在糖原合酶激酶3位点及其下游“引物”位点被磷酸化:磷酸化影响蛋白与自身和主要衣壳蛋白的相互作用。

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摘要

Capsid assembly among the herpes-group viruses is coordinated by two related scaffolding proteins. In cytomegalovirus (CMV), the main scaffolding constituent is called the assembly protein precursor (pAP). Like its homologs in other herpesviruses, pAP is modified by proteolytic cleavage and phosphorylation. Cleavage is essential for capsid maturation and production of infectious virus, but the role of phosphorylation is undetermined. As a first step in evaluating the significance of this modification, we have identified the specific sites of phosphorylation in the simian CMV pAP. Two were established previously to be adjacent serines (Ser156 and Ser157) in a casein kinase II consensus sequence. The remaining two, identified here as Thr231 and Ser235, are within consensus sequences for glycogen synthase kinase 3 (GSK-3) and mitogen-activated protein kinase, respectively. Consistent with Thr231 being a GSK-3 substrate, its phosphorylation required a downstream “priming” phosphate (i.e., Ser235) and was reduced by a GSK-3-specific inhibitor. Phosphorylation of Ser235 converts pAP to an electrophoretically slower-mobility isoform, pAP*; subsequent phosphorylation of pAP* at Thr231 converts pAP* to a still-slower isoform, pAP**. The mobility shift to pAP* was mimicked by substituting an acidic amino acid for either Thr231 or Ser235, but the shift to pAP** required that both positions be phosphorylated. Glu did not substitute for pSer235 in promoting phosphorylation of Thr231. We suggest that phosphorylation of Thr231 and Ser235 causes charge-driven conformational changes in pAP, and we demonstrate that preventing these modifications alters interactions of pAP with itself and with major capsid protein, suggesting a functional significance.
机译:疱疹病毒群之间的衣壳装配由两个相关的支架蛋白协调。在巨细胞病毒(CMV)中,主要的支架成分称为装配蛋白前体(pAP)。像其在其他疱疹病毒中的同系物一样,pAP被蛋白水解切割和磷酸化修饰。切割对于衣壳的成熟和传染性病毒的产生是必不可少的,但是磷酸化的作用尚未确定。作为评估这种修饰的重要性的第一步,我们已经确定了猿猴CMV pAP中特定的磷酸化位点。先前已经确定了两个酪蛋白激酶II共有序列中的相邻丝氨酸(Ser156和Ser157)。其余两个,在此处标识为Thr231和Ser235,分别位于糖原合酶激酶3(GSK-3)和促分裂原活化蛋白激酶的共有序列内。与Thr231是GSK-3底物一致,其磷酸化需要下游的“引发”磷酸盐(即Ser235),并被GSK-3特异性抑制剂还原。 Ser235的磷酸化将pAP转化为电泳速度较慢的同工型pAP *;随后在Thr231上pAP *的磷酸化将pAP *转化为仍然更慢的同种型pAP **。用酸性氨基酸替代Thr231或Ser235可以模拟迁移到pAP *的迁移,但是迁移到pAP **要求两个位置都被磷酸化。 Glu不能替代pSer235来促进Thr231的磷酸化。我们建议Thr231和Ser235的磷酸化导致pAP的电荷驱动构象变化,并且我们证明了防止这些修饰会改变pAP与自身以及与主要衣壳蛋白的相互作用,提示其功能意义。

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