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通过对接和分子动力学模拟探索未磷酸化/磷酸化的单体和三聚体Bcl-2的构象和结合特性。

Exploring the conformational and binding properties of unphosphorylated/phosphorylated monomeric and trimeric Bcl-2 through docking and molecular dynamics simulations.

作者信息

Zacarías-Lara Oscar J, Correa-Basurto José, Bello Martiniano

机构信息

Laboratorio de Modelado Molecular y Bioinformática de la Escuela Superior de Medicina, Instituto Politécnico Nacional, México.

出版信息

Biopolymers. 2016 Jul;105(7):393-413. doi: 10.1002/bip.22839.

Abstract

B-cell lymphoma (Bcl-2) is commonly associated with the progression and preservation of cancer and certain lymphomas; therefore, it is considered as a biological target against cancer. Nevertheless, evidence of all its structural binding sites has been hidden because of the lack of a complete Bcl-2 model, given the presence of a flexible loop domain (FLD), which is responsible for its complex behavior. FLD region has been implicated in phosphorylation, homotrimerization, and heterodimerization associated with Bcl-2 antiapoptotic function. In this contribution, homology modeling, molecular dynamics (MD) simulations in the microsecond (µs) time-scale and docking calculations were combined to explore the conformational complexity of unphosphorylated/phosphorylated monomeric and trimeric Bcl-2 systems. Conformational ensembles generated through MD simulations allowed for identifying the most populated unphosphorylated/phosphorylated monomeric conformations, which were used as starting models to obtain trimeric complexes through protein-protein docking calculations, also submitted to µs MD simulations. Principal component analysis showed that FLD represents the main contributor to total Bcl-2 mobility, and is affected by phosphorylation and oligomerization. Subsequently, based on the most representative unphosphorylated/phosphorylated monomeric and trimeric Bcl-2 conformations, docking studies were initiated to identify the ligand binding site of several known Bcl-2 inhibitors to explain their influence in homo-complex formation and phosphorylation. Docking studies showed that the different conformational states experienced by FLD, such as phosphorylation and oligomerization, play an essential role in the ability to make homo and hetero-complexes. © 2016 Wiley Periodicals, Inc. Biopolymers 105: 393-413, 2016.

摘要

B细胞淋巴瘤(Bcl-2)通常与癌症及某些淋巴瘤的进展和维持相关;因此,它被视为抗癌的生物学靶点。然而,由于存在一个负责其复杂行为的柔性环结构域(FLD),缺乏完整的Bcl-2模型,其所有结构结合位点的证据一直未被发现。FLD区域与Bcl-2抗凋亡功能相关的磷酸化、同源三聚化和异源二聚化有关。在本研究中,结合同源建模、微秒(µs)时间尺度的分子动力学(MD)模拟和对接计算,以探索未磷酸化/磷酸化的单体和三聚体Bcl-2系统的构象复杂性。通过MD模拟生成的构象集合有助于识别最丰富的未磷酸化/磷酸化单体构象,这些构象被用作起始模型,通过蛋白质-蛋白质对接计算获得三聚体复合物,该复合物也进行了µs MD模拟。主成分分析表明,FLD是Bcl-2整体流动性的主要贡献者,并受磷酸化和寡聚化的影响。随后,基于最具代表性的未磷酸化/磷酸化单体和三聚体Bcl-2构象开展对接研究,以确定几种已知Bcl-2抑制剂的配体结合位点,从而解释它们对同源复合物形成和磷酸化的影响。对接研究表明,FLD经历的不同构象状态,如磷酸化和寡聚化,在形成同源和异源复合物的能力中起着至关重要的作用。© 2016威利期刊公司。生物聚合物105: 393 - 413, 2016。

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