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Insights into structure and function of SHIP2-SH2: homology modeling docking and molecular dynamics study

机译:深入了解SHIP2-SH2的结构和功能:同源性建模对接和分子动力学研究

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摘要

SRC homology 2 (SH2)-containing inositol 5′-phosphatase protein (SHIP2) is a potential target for type 2 diabetes. Its ability to dephosphorylate the lipid messenger phosphatidylinositol 3,4,5-trisphosphate [PtdIns(3,4,5)P3], important for insulin signaling, makes it an important target against type 2 diabetes. The insulin-induced SHIP2 interaction with Shc is very important for the membrane localization and functioning of SHIP2. There is a bidentate relationship between the two proteins where two domains each from SHIP2 and Shc are involved in mutual binding. However in the present study, the SHIP2-SH2 domain binding with the phosphorylated tyrosine 317 on the collagen-homology (CH) domain of Shc, has been studied due to the indispensability of this interaction in SHIP2 localization. In the absence of the crystal structure of SHIP2-SH2, its structural model was developed followed by tracking its molecular interactions with Shc through molecular docking and dynamics studies. This study revealed much about the structural interactions between the SHIP2-SH2 and Shc-CH. Finally, docking study of a nonpeptide inhibitor into the SHIP2-SH2 domain further confirmed the structural interactions involved in ligand binding and also proposed the inhibitor as a major starting point against SHIP2-SH2 inhibition. The insights gained from the current study should prove useful in the design of more potent inhibitors against type 2 diabetes.
机译:含有SRC同源性2(SH2)的肌醇5'-磷酸酶蛋白(SHIP2)是2型糖尿病的潜在靶标。它具有使脂质信使磷脂酰肌醇3,4,5-三磷酸[PtdIns(3,4,5)P3]脱磷酸的能力,对胰岛素信号传导很重要,使其成为抵抗2型糖尿病的重要靶标。胰岛素诱导的SHIP2与Shc的相互作用对于SHIP2的膜定位和功能非常重要。这两种蛋白之间存在双齿关系,其中来自SHIP2和Shc的两个结构域相互结合。但是,在本研究中,由于SHIP2定位中这种相互作用的不可缺少性,已经研究了SHIP2-SH2结构域与Shc的胶原同源(CH)域上的磷酸化酪氨酸317结合。在没有SHIP2-SH2晶体结构的情况下,开发了其结构模型,然后通过分子对接和动力学研究跟踪了其与Shc的分子相互作用。这项研究揭示了很多关于SHIP2-SH2和Shc-CH之间的结构相互作用的信息。最后,将非肽抑制剂对接至SHIP2-SH2结构域的研究进一步证实了配体结合所涉及的结构相互作用,并且还提出该抑制剂是对抗SHIP2-SH2抑制的主要起点。从当前的研究中获得的见识应证明对设计更有效的2型糖尿病抑制剂具有帮助。

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