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细小病毒对细胞内信号传导的干扰:MVM感染的A9成纤维细胞中PKCeta激活的机制

Parvovirus interference with intracellular signalling: mechanism of PKCeta activation in MVM-infected A9 fibroblasts.

作者信息

Lachmann Sylvie, Bär Severine, Rommelaere Jean, Nüesch Jürg P F

机构信息

Program 'Infection and Cancer', Abteilung F010 and Institut National de la Santé et de la Recherche Médicale U701, Deutsches Krebsforschungszentrum, Heidelberg, Germany.

出版信息

Cell Microbiol. 2008 Mar;10(3):755-69. doi: 10.1111/j.1462-5822.2007.01082.x. Epub 2007 Nov 27.

Abstract

Autonomous parvoviruses are strongly dependent on the phosphorylation of the major non-structural protein NS1 by members of the protein kinase C (PKC) family. Besides being accompanied with changes in the overall phosphorylation pattern of NS1 and acquiring new modifications at consensus PKC sites, ongoing minute virus of mice (MVM) infections lead to the appearance of new phosphorylated cellular protein species. This prompted us to investigate whether MVM actively interferes with phosphoinositol-dependent kinase (PDK)/PKC signalling. The activity, subcellular localization and phosphorylation status of the protein kinases PDK1, PKCeta and PKClambda were measured in A9 cells in the presence or absence of MVM infection. Parvovirus infection was found to result in activation of both PDK1 and PKCeta, as evidenced by changes in their subcellular distribution and overall (auto)phosphorylation. We show evidence that activation of PKCeta by PDK1 is driven by atypical PKClambda. By modifying the hydrophobic motif of PKCeta, PKClambda appeared to control docking and consecutive phosphorylation of PKCeta's activation-loop by PDK1, a process that was inhibited in vivo in the presence of a dominant-negative PKClambda mutant.

摘要

自主性细小病毒强烈依赖蛋白激酶C(PKC)家族成员对主要非结构蛋白NS1的磷酸化作用。除了伴随着NS1整体磷酸化模式的变化以及在共有PKC位点获得新的修饰外,持续的小鼠微小病毒(MVM)感染还会导致新的磷酸化细胞蛋白种类出现。这促使我们研究MVM是否会主动干扰磷酸肌醇依赖性激酶(PDK)/PKC信号传导。在有或没有MVM感染的情况下,在A9细胞中测量了蛋白激酶PDK1、PKCη和PKCλ的活性、亚细胞定位和磷酸化状态。发现细小病毒感染会导致PDK1和PKCη的激活,这可通过它们亚细胞分布和整体(自身)磷酸化的变化来证明。我们提供的证据表明,PDK1对PKCη的激活是由非典型PKCλ驱动的。通过修饰PKCη的疏水基序,PKCλ似乎控制了PDK1对PKCη激活环的对接和连续磷酸化,在存在显性负性PKCλ突变体的情况下,这一过程在体内受到抑制。

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