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Interface Analysis of the Complex between ERK2 and PTP-SL

机译:ERK2与PTP-SL之间的复合体的接口分析

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摘要

The activity of ERK2, an essential component of MAP-kinase pathway, is under the strict control of various effector proteins. Despite numerous efforts, no crystal structure of ERK2 complexed with such partners has been obtained so far. PTP-SL is a major regulator of ERK2 activity. To investigate the ERK2–PTP-SL complex we used a combined method based on cross-linking, MALDI-TOF analysis, isothermal titration calorimetry, molecular modeling and docking. Hence, new insights into the stoichiometry, thermodynamics and interacting regions of the complex are obtained and a structural model of ERK2-PTP-SL complex in a state consistent with PTP-SL phosphatase activity is developed incorporating all the experimental constraints available at hand to date. According to this model, part of the N-terminal region of PTP-SL has propensity for intrinsic disorder and becomes structured within the complex with ERK2. The proposed model accounts for the structural basis of several experimental findings such as the complex-dissociating effect of ATP, or PTP-SL blocking effect on the ERK2 export to the nucleus. A general observation emerging from this model is that regions involved in substrate binding in PTP-SL and ERK2, respectively are interacting within the interface of the complex.
机译:ERK2的活性是MAP激酶途径的重要组成部分,受到各种效应蛋白的严格控制。尽管付出了许多努力,但迄今仍未获得与此类伴侣复合的ERK2晶体结构。 PTP-SL是ERK2活性的主要调节剂。为了研究ERK2-PTP-SL复合物,我们使用了基于交联,MALDI-TOF分析,等温滴定量热法,分子建模和对接的组合方法。因此,获得了对配合物的化学计量,热力学和相互作用区域的新见解,并开发了ERK2-PTP-SL配合物处于与PTP-SL磷酸酶活性相一致的状态的结构模型,并结合了迄今为止可用的所有实验性约束条件。 。根据该模型,PTP-SL的N端区域的一部分倾向于固有紊乱,并在与ERK2形成的复合物中形成结构。所提出的模型考虑了一些实验发现的结构基础,例如ATP的复杂解离作用或PTP-SL阻断对ERK2出口至核的作用。从该模型得出的一般观察结果是,参与PTP-SL和ERK2中底物结合的区域分别在复合物的界面内相互作用。

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