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Structural insights into the extra cellular segment of integrinβ5 and molecular interaction studies

机译:整合素β5胞外段的结构见解和分子相互作用研究

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摘要

Primary tumor cells often spread to other organs by metastasis. Despite of it, primary tumor cells break their surrounding extra cellular matrix (ECM) proteins and reach the destination organ by the process of intravasation and extravasation. Metastasized tumor cells induce the process of angiogenesis, this highly regulated process involves several ECM proteins. However, integrins are primarily involved in the blood vessel growth and repair. Therefore, integrins are promising angiogenesis targets. Integrins are receptors on cell surface, involved in signal transduction and attachments in extra cellular matrix (ECM). IntegrinαVβ3 and αVβ5 are implicated in tumor angiogenesis, metastasis, inflammation and bone resorption. The crystal structure of integrinαvβ5 is not available in protein structural databases, therefore; molecular model of integrinβ5 structure was prepared and stereo chemical model quality was checked. Integrin β5 active sites were identified based on insilico analysis tools. Further, molecular level interactions between integrinβ5 and ECM proteins were predicted. In the present study ECM proteins such as focal adhesion kinase 1 (FAK1), annexin A5 and P21 activated kinase 4 (PAK4) were considered for protein-protein docking, to understand inter molecular interactions. The predicted model is conceived to be stereo chemically good and can be used for molecular interaction studies of angiogenic inhibitors.
机译:原发性肿瘤细胞通常通过转移扩散到其他器官。尽管如此,原发性肿瘤细胞仍会通过其内渗和外渗过程破坏其周围的细胞外基质(ECM)蛋白并到达目的器官。转移的肿瘤细胞诱导血管生成过程,该高度调节的过程涉及几种ECM蛋白。但是,整联蛋白主要参与血管的生长和修复。因此,整联蛋白是有希望的血管生成靶标。整联蛋白是细胞表面上的受体,参与信号转导和细胞外基质(ECM)中的附着。整联蛋白αVβ3和αVβ5与肿瘤血管生成,转移,炎症和骨吸收有关。因此,整合素αvβ5的晶体结构在蛋白质结构数据库中不可用。制备整合素β5结构的分子模型,并检查立体化学模型的质量。基于insilico分析工具鉴定整合素β5活性位点。此外,还预测了整联蛋白β5与ECM蛋白之间的分子水平相互作用。在本研究中,考虑将ECM蛋白(如粘着斑激酶1(FAK1),膜联蛋白A5和P21活化激酶4(PAK4))用于蛋白-蛋白对接,以了解分子间的相互作用。该预测模型被认为是立体化学良好的,并且可以用于血管生成抑制剂的分子相互作用研究。

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