Site-Specific Phosphorylation of RTK KIT Kinase Insert Domain: Interactome Landscape Perspectives

Julie Ledoux, L. Tchertanov
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Abstract

The kinase insert domain (KID) of RTK KIT is a key recruitment region for downstream signalling proteins (DSPs). KID, as a multisite phosphorylation region, provides alternative recognition sites for DSPs and activates them by binding a phosphotyrosine (pY) to their SH2 domains. Significant steric, biochemical, and biophysical requirements must be fulfilled by each pair of interacting proteins as the adaptation of their configurations is mandatory for the selective activation of DSPs. The accurate 3D atomistic models obtained by modelling and molecular dynamics (MD) simulations of phosphorylated KID (p-KID) have been delivered to describe KID INTERACTOME. By taking phosphorylated KIDpY721 and the N-terminal SH2 domain of phosphatidylinositol 3-kinase (PI3K), a physiological partner of KID, we showed the two proteins are intrinsically disordered. Using 3D models of both proteins, we probe alternative orientations of KIDpY721 relative to the SH2 binding pocket using automatic docking (HADDOCK) and intuitive user-guided docking. This modelling yields to two possible models of the functionally related non-covalent complex KIDpY721/SH2, where one can be regarded as the first precursor to probe PI3K activation via KIT KID. We suggest that such generation of a KID/SH2 complex is best suited for future studies of the post-transduction effects of RTK KIT.
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RTK KIT激酶插入结构域的位点特异性磷酸化:相互作用组景观视角
RTK KIT的激酶插入结构域(KID)是下游信号蛋白(dsp)的关键募集区域。KID作为一个多位点磷酸化区域,为dsp提供了替代的识别位点,并通过将磷酸化酪氨酸(pY)结合到其SH2结构域来激活它们。每一对相互作用的蛋白质必须满足显著的立体、生化和生物物理要求,因为它们的结构适应是选择性激活dsp的必要条件。通过对磷酸化KID (p-KID)的建模和分子动力学(MD)模拟获得了精确的三维原子模型,用于描述KID INTERACTOME。通过磷酸化KIDpY721和KID的生理伙伴磷脂酰肌醇3-激酶(PI3K)的n端SH2结构域,我们发现这两个蛋白本质上是紊乱的。利用这两种蛋白的3D模型,我们利用自动对接(HADDOCK)和直观的用户引导对接来探测KIDpY721相对于SH2结合口袋的不同方向。该模型产生了两种可能的功能相关非共价复合物KIDpY721/SH2模型,其中一种可以被视为通过KIT KID探测PI3K激活的第一个前体。我们认为,这种KID/SH2复合物的产生最适合用于RTK KIT转导后效应的未来研究。
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