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Src尾部磷酸化受到调节性酪氨酸激酶Csk结构变化的限制。

SRC tail phosphorylation is limited by structural changes in the regulatory tyrosine kinase Csk.

作者信息

Lieser Scot A, Shaffer Jennifer, Adams Joseph A

机构信息

Department of Chemistry and Biochemistry and Pharmacology, University of California, San Diego, La Jolla, California 92093, USA.

出版信息

J Biol Chem. 2006 Dec 8;281(49):38004-12. doi: 10.1074/jbc.M607824200. Epub 2006 Oct 3.

Abstract

Src family tyrosine kinases are down-regulated through phosphorylation of a single C-terminal tyrosine by the nonreceptor tyrosine kinase Csk. Despite the fundamental role of Csk in controlling cell growth and differentiation, it is unclear what limits this key signaling reaction and controls the production of catalytically repressed Src. To investigate this issue, stopped-flow fluorescence experiments were performed to determine which steps modulate catalysis. Both Src binding and phosphorylation can be monitored by changes in intrinsic tryptophan fluorescence. Association kinetics are biphasic with the initial phase corresponding to the bimolecular interaction of both proteins and the second phase representing a slow conformational change that coincides with the rate of maximum turnover. The kinetic transients for the phosphorylation reaction are also biphasic with the initial phase corresponding to the rapid phosphorylation and the release of phospho-Src. These data, along with equilibrium sedimentation and product inhibition experiments, suggest that steps involving Src association, phosphorylation, and product release are fast and that a structural change in Csk participates in limiting the catalytic cycle.

摘要

Src家族酪氨酸激酶通过非受体酪氨酸激酶Csk对单个C末端酪氨酸的磷酸化作用而下调。尽管Csk在控制细胞生长和分化中起着基本作用,但尚不清楚是什么限制了这一关键信号反应并控制了催化抑制的Src的产生。为了研究这个问题,进行了停流荧光实验以确定哪些步骤调节催化作用。Src的结合和磷酸化都可以通过内在色氨酸荧光的变化来监测。缔合动力学是双相的,初始阶段对应于两种蛋白质的双分子相互作用,第二阶段代表与最大周转速率一致的缓慢构象变化。磷酸化反应的动力学瞬变也是双相的,初始阶段对应于快速磷酸化和磷酸化Src的释放。这些数据,连同平衡沉降和产物抑制实验,表明涉及Src缔合、磷酸化和产物释放的步骤很快,并且Csk的结构变化参与限制催化循环。

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