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Seeking mTORC1 Inhibitors Through Molecular Dynamics Simulation of Arginine Analogs Inhibiting CASTOR1

机译:通过精氨酸类似物抑制CASTOR1的分子动力学模拟寻找mTORC1抑制剂

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Background: Hyperactivity of the mechanistic target of rapamycin complex 1 (mTORC1) is implicated in a variety of diseases such as cancer and diabetes. Treatment may benefit from effective mTORC1 inhibition, which can be achieved by preventing arginine from disrupting the cytosolic arginine sensor for mTORC1 subunit 1 (CASTOR1)-GTPase-activating proteins toward RAGS subcomplex 2 (GATOR2) complex through binding with CASTOR1. An attractive idea is to determine analogues of arginine that are as competent as arginine in binding with CASTOR1, but without disrupting the CASTOR1-GATOR2 interaction. Materials and Methods: Molecular dynamics simulations were performed for binding of arginine analogues with CASTOR1 and binding free energy, hydrogen bond formation, and root mean squared deviation and root mean square fluctuation kinetics were then calculated. Results: The binding free energy calculations revealed that N-acetyl-arginine, citrulline, and norarginine have sufficient binding affinity with CASTOR1 to compete with arginine. The hydrogen bond analysis revealed that norarginine, N-acetyl-arginine and D-arginine have proficient H-bonds that can facilitate their entering the narrow binding pocket. Conclusion: Norarginine and N-acetyl-arginine are the top drug candidates for mTORC1 inhibition, with N-acetyl-arginine being the best choice.
机译:背景:雷帕霉素复合物1(mTORC1)的机制靶标过活跃与多种疾病(例如癌症和糖尿病)有关。可以通过有效抑制mTORC1来治疗,这可以通过防止精氨酸通过与CASTOR1结合而破坏针对RAGS亚复合物2(GATOR2)复合物的mTORC1亚基1(CASTOR1)-GTPase激活蛋白的胞质精氨酸传感器来实现。一个有吸引力的想法是确定精氨酸类似物与CASTOR1的结合能力与精氨酸一样,但不会破坏CASTOR1-GATOR2的相互作用。材料和方法:对精氨酸类似物与CASTOR1的结合进行分子动力学模拟,并结合自由能,氢键形成,然后计算均方根偏差和均方根波动动力学。结果:结合自由能计算表明,N-乙酰基精氨酸,瓜氨酸和去甲精氨酸与CASTOR1具有足够的结合亲和力,可与精氨酸竞争。氢键分析表明,精氨酸,N-乙酰基精氨酸和D-精氨酸具有熟练的氢键,可促进它们进入狭窄的结合口袋。结论:精氨酸和N-乙酰精氨酸是抑制mTORC1的最佳候选药物,N-乙酰精氨酸是最佳选择。

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