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Peptidyl-prolyl Isomerase Pin1 Controls Down-regulation of Conventional Protein Kinase C Isozymes

机译:肽基脯氨酰异构酶Pin1控制常规蛋白激酶C同工酶的下调。

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摘要

The down-regulation or cellular depletion of protein kinase C (PKC) attendant to prolonged activation by phorbol esters is a widely described property of this key family of signaling enzymes. However, neither the mechanism of down-regulation nor whether this mechanism occurs following stimulation by physiological agonists is known. Here we show that the peptidyl-prolyl isomerase Pin1 provides a timer for the lifetime of conventional PKC isozymes, converting the enzymes into a species that can be dephosphorylated and ubiquitinated following activation induced by either phorbol esters or natural agonists. The regulation by Pin1 requires both the catalytic activity of the isomerase and the presence of a Pro immediately following the phosphorylated Thr of the turn motif phosphorylation site, one of two C-terminal sites that is phosphorylated during the maturation of PKC isozymes. Furthermore, the second C-terminal phosphorylation site, the hydrophobic motif, docks Pin1 to PKC. Our data are consistent with a model in which Pin1 binds the hydrophobic motif of conventional PKC isozymes to catalyze the isomerization of the phospho-Thr-Pro peptide bond at the turn motif, thus converting these PKC isozymes into species that can be efficiently down-regulated following activation.
机译:伴随着佛波酯的长时间激活而伴随的蛋白激酶C(PKC)的下调或细胞耗竭是该关键信号转导酶家族广泛描述的特性。然而,既不知道下调的机制,也不知道该机制是否在生理激动剂刺激后发生。在这里,我们显示肽基-脯氨酰异构酶Pin1为常规PKC同工酶的寿命提供了一个计时器,将这些酶转换为可以被佛波酸酯或天然激动剂激活后可以去磷酸化和泛素化的物种。通过Pin1进行调节既需要异构酶的催化活性,又需要在转位基序磷酸化位点(两个C末端位点之一,在PKC同工酶成熟期间被磷酸化)的磷酸化Thr后立即存在Pro。此外,第二个C末端磷酸化位点,即疏水基序,将Pin1停靠在PKC上。我们的数据与其中Pin1结合常规PKC同工酶的疏水性基序以催化在转向基序处的磷酸-Thr-Pro肽键的异构化,从而将这些PKC同工酶转化为可被有效下调的物种的模型相符。激活后。

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