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脯氨酰异构化作为信号衔接蛋白c-CrkII变构调节中的一种分子记忆。

Prolyl isomerization as a molecular memory in the allosteric regulation of the signal adapter protein c-CrkII.

作者信息

Schmidpeter Philipp A M, Schmid Franz X

机构信息

From the Laboratorium für Biochemie und Bayreuther Zentrum für Molekulare Biowissenschaften, Universität Bayreuth, 95440 Bayreuth, Germany.

From the Laboratorium für Biochemie und Bayreuther Zentrum für Molekulare Biowissenschaften, Universität Bayreuth, 95440 Bayreuth, Germany

出版信息

J Biol Chem. 2015 Jan 30;290(5):3021-32. doi: 10.1074/jbc.M114.617308. Epub 2014 Dec 8.

Abstract

c-CrkII is a central signal adapter protein. A domain opening/closing reaction between its N- and C-terminal Src homology 3 domains (SH3N and SH3C, respectively) controls signal propagation from upstream tyrosine kinases to downstream targets. In chicken but not in human c-CrkII, opening/closing is coupled with cis/trans isomerization at Pro-238 in SH3C. Here, we used advanced double-mixing experiments and kinetic simulations to uncover dynamic domain interactions in c-CrkII and to elucidate how they are linked with cis/trans isomerization and how this regulates substrate binding to SH3N. Pro-238 trans → cis isomerization is not a simple on/off switch but converts chicken c-CrkII from a high affinity to a low affinity form. We present a double-box model that describes c-CrkII as an allosteric system consisting of an open, high affinity R state and a closed, low affinity T state. Coupling of the T-R transition with an intrinsically slow prolyl isomerization provides c-CrkII with a kinetic memory and possibly functions as a molecular attenuator during signal transduction.

摘要

c-CrkII是一种核心信号衔接蛋白。其N端和C端的Src同源3结构域(分别为SH3N和SH3C)之间的结构域打开/关闭反应控制着信号从上游酪氨酸激酶向下游靶点的传播。在鸡的c-CrkII中而非人类的c-CrkII中,打开/关闭与SH3C中Pro-238处的顺/反异构化相关联。在此,我们使用先进的双混合实验和动力学模拟来揭示c-CrkII中的动态结构域相互作用,并阐明它们如何与顺/反异构化相联系以及这如何调节底物与SH3N的结合。Pro-238的反式→顺式异构化并非简单的开关,而是将鸡的c-CrkII从高亲和力形式转变为低亲和力形式。我们提出了一个双箱模型,将c-CrkII描述为一个变构系统,由开放的高亲和力R态和封闭的低亲和力T态组成。T-R转变与本质上缓慢的脯氨酰异构化的耦合为c-CrkII提供了动力学记忆,并可能在信号转导过程中作为分子衰减器发挥作用。

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本文引用的文献

1
Contribution of hydrogen bonds to protein stability.氢键对蛋白质稳定性的贡献。
Protein Sci. 2014 May;23(5):652-61. doi: 10.1002/pro.2449. Epub 2014 Mar 25.
10
Prolyl isomerization as a molecular timer in phage infection.脯氨酰异构化作为噬菌体感染中的分子定时器
Nat Struct Mol Biol. 2005 Jul;12(7):619-23. doi: 10.1038/nsmb946. Epub 2005 Jun 5.

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