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IGF-II/IGF2R 识别的分子基础:分子动力学模拟、自由能计算和计算丙氨酸扫描研究的综合分析。

The molecular basis of IGF-II/IGF2R recognition: a combined molecular dynamics simulation, free-energy calculation and computational alanine scanning study.

机构信息

State Key Laboratory of Applied Organic Chemistry and Department of Chemistry, Lanzhou University, Lanzhou 730000, China.

出版信息

J Mol Model. 2012 Apr;18(4):1421-30. doi: 10.1007/s00894-011-1159-4. Epub 2011 Jul 15.

Abstract

Insulin-like growth factor-II (IGF-II) is a key regulator of cell growth, survival, migration and differentiation, and is thus pivotal in many cancers. An individual with a high IGF-II level is at high risk of developing cancer, whereas IGF2R is implicated as being important in tumor suppression. Thus, uncovering the essence of the IGF-II/IGF2R interaction is very important to understanding the origin of the tumor-suppressing effect of IGF2R. In this study, in order to investigate the interaction of the IGF-II/IGF2R complex and to characterize the binding hot spots of this interaction, a 10 ns molecular dynamics simulation combined with MM-PBSA/MM-GBSA computations and computational alanine scanning was performed on the IGF-II/IGF2R complex. From the results of the free-energy decomposition and the computational alanine scanning calculation, we identified the key residues in the IGF-II/IGF-2R interaction. The results from the calculation were consistent with reported experimental mutagenesis studies. The information on the interaction of IGF-II and IGF2R obtained is vital for understanding how the structure of IGF2R influences the function of IGF-II in growth and development. This study will also lead to new opportunities to develop molecular probes that can assist in diagnostic screening, and even novel approaches to controlling tumor development.

摘要

胰岛素样生长因子-II(IGF-II)是细胞生长、存活、迁移和分化的关键调节剂,因此在许多癌症中起着关键作用。IGF-II 水平高的个体患癌症的风险很高,而 IGF2R 被认为在肿瘤抑制中很重要。因此,揭示 IGF-II/IGF2R 相互作用的本质对于理解 IGF2R 的肿瘤抑制作用的起源非常重要。在这项研究中,为了研究 IGF-II/IGF2R 复合物的相互作用,并阐明这种相互作用的结合热点,我们对 IGF-II/IGF2R 复合物进行了 10ns 的分子动力学模拟,结合 MM-PBSA/MM-GBSA 计算和计算性丙氨酸扫描。从自由能分解和计算性丙氨酸扫描计算的结果中,我们确定了 IGF-II/IGF2R 相互作用中的关键残基。计算结果与已报道的实验诱变研究一致。获得的 IGF-II 和 IGF2R 相互作用信息对于理解 IGF2R 的结构如何影响 IGF-II 在生长和发育中的功能至关重要。这项研究还将为开发有助于诊断筛选的分子探针以及控制肿瘤发展的新方法提供新的机会。

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