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蛋白质柔性与配体刚性:基于免疫受体酪氨酸激活基序的配体与Syk串联SH2结构域结合的热力学和动力学研究

Protein flexibility and ligand rigidity: a thermodynamic and kinetic study of ITAM-based ligand binding to Syk tandem SH2.

作者信息

de Mol Nico J, Catalina M Isabel, Dekker Frank J, Fischer Marcel J E, Heck Albert J R, Liskamp Rob M J

机构信息

Department of Medicinal Chemistry, Utrecht Institute for Pharmaceutical Sciences, Utrecht University (UIPS), Sorbonnelaan 16, 3584 CA Utrecht, The Netherlands.

出版信息

Chembiochem. 2005 Dec;6(12):2261-70. doi: 10.1002/cbic.200500141.

Abstract

The Syk tandem Src homology 2 domain (Syk tSH2) constitutes a flexible protein module involved in the regulation of Syk kinase activity. The Syk tSH2 domain is assumed to function by adapting the distance between its two SH2 domains upon bivalent binding to diphosphotyrosine ligands. A thermodynamic and kinetic analysis of ligand binding was performed by using surface plasmon resonance (SPR). Furthermore, the effect of binding on the Syk tSH2 structural dynamics was probed by hydrogen/deuterium exchange and electrospray mass spectrometry (ESI-MS). Two ligands were studied: 1, a flexible peptide derived from the tSH2 recognition ITAM sequence at the gamma chain of the FcepsilonRI-receptor, and 2, a ligand in which the amino acids between the two SH2 binding motifs in ligand 1 have been replaced by a rigid linker of comparable length. Both ligands display comparable affinity for Syk tSH2 at 25 degrees C, yet a major difference in thermodynamics is observed. Upon binding of the rigid ligand, 2, the expected entropy advantage is not realized. On the contrary, 2 binds with a considerably higher entropy price of approximately 9 kcal mol-1, which is attributed to a further decrease in protein flexibility upon binding to this rigid ligand. The significant reduction in deuterium incorporation in the Syk tSH2 protein upon binding of either 1 or 2, as monitored by ESI-MS, indicates a major reduction in protein dynamics upon binding. The results are consistent with a two-step binding model: after an initial binding step, a rapid structural change of the protein occurs, followed by a second binding step. Such a bivalent binding model allows high affinity and fast dissociation kinetics, which are very important in transient signal-transduction processes.

摘要

脾酪氨酸激酶串联Src同源2结构域(Syk tSH2)构成一个灵活的蛋白质模块,参与脾酪氨酸激酶活性的调节。Syk tSH2结构域被认为通过在与双磷酸酪氨酸配体进行二价结合时调整其两个SH2结构域之间的距离来发挥作用。利用表面等离子体共振(SPR)对配体结合进行了热力学和动力学分析。此外,通过氢/氘交换和电喷雾质谱(ESI-MS)探究了结合对Syk tSH2结构动力学的影响。研究了两种配体:1,一种源自FcepsilonRI受体γ链上tSH2识别ITAM序列的柔性肽;2,一种配体,其中配体1中两个SH2结合基序之间的氨基酸被一个长度相当的刚性接头取代。两种配体在25℃时对Syk tSH2显示出相当的亲和力,但观察到热力学上的一个主要差异。在刚性配体2结合时,预期的熵优势并未实现。相反,2以约9千卡摩尔-1的相当高的熵代价结合,这归因于与该刚性配体结合后蛋白质灵活性的进一步降低。通过ESI-MS监测,在1或2结合后Syk tSH2蛋白中氘掺入的显著减少表明结合后蛋白质动力学的大幅降低。结果与两步结合模型一致:在初始结合步骤之后,蛋白质发生快速的结构变化,随后是第二个结合步骤。这样的二价结合模型允许高亲和力和快速解离动力学,这在瞬时信号转导过程中非常重要。

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