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Lining the pockets of kinases and phosphatases

机译:衬里激酶和磷酸酶的口袋

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摘要

The regulation of the activity of kinases and phosphatases is an essential aspect of intracellular signal transcluction. Recently determined structures of AGC protein kinases, including isoforms of PKB, PKC, GRK and ROCK, indicate that occupancy of a hydrophobic pocket in the kinase N-lobe by a segment of the protein immediately C terminal to the kinase domain provides a mechanism for regulating kinase activity. In addition, crystal structures of Aurora-A and Aurora-B, which are closely related to AGC family kinases, in complex with their activators, TIPX2 and INCENP, respectively, show how allosteric kinase activation is achieved by the binding of the activator protein to an equivalent hydrophobic pocket. Hence, regulation of kinase activity by analogous interactions is a shared regulatory mechanism of these kinases. Two crystal structures have explained the molecular basis of PKA anchoring through its regulatory subunits by members of the AKAP family of scaffold proteins. AKAPs can also interact directly with protein kinase and phosphatase catalytic domains. The crystal structure of the PP1 catalytic subunit in complex with the targeting subunit MYPT1 indicates that there is also scope for intimate phosphatase regulation by scaffold proteins.
机译:激酶和磷酸酶活性的调节是细胞内信号转导的重要方面。最近确定的AGC蛋白激酶的结构(包括PKB,PKC,GRK和ROCK的同工型)表明,紧靠C端至激酶结构域的一段蛋白在激酶N瓣中占据了疏水性口袋,提供了一种调节机制激酶活性。此外,与AGC家族激酶密切相关的Aurora-A和Aurora-B晶体结构分别与激活剂TIPX2和INCENP结合,显示出如何通过激活剂蛋白与等效的疏水袋。因此,通过类似的相互作用调节激酶活性是这些激酶的共同调节机制。两种晶体结构解释了AKAP支架蛋白家族成员通过其调节亚基锚定PKA的分子基础。 AKAP还可以直接与蛋白激酶和磷酸酶催化域相互作用。与靶向亚基MYPT1配合的PP1催化亚基的晶体结构表明,也存在通过支架蛋白进行紧密磷酸酶调节的范围。

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