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BH3 模拟肽抑制剂的计算设计,可特异性结合 Mcl-1 或 Bcl-X:非热点残基的作用。

Computational Design of BH3-Mimetic Peptide Inhibitors That Can Bind Specifically to Mcl-1 or Bcl-X: Role of Non-Hot Spot Residues.

出版信息

Biochemistry. 2020 Nov 17;59(45):4379-4394. doi: 10.1021/acs.biochem.0c00661. Epub 2020 Nov 4.

Abstract

Interactions between pro- and anti-apoptotic Bcl-2 proteins decide the fate of the cell. The BH3 domain of pro-apoptotic Bcl-2 proteins interacts with the exposed hydrophobic groove of their anti-apoptotic counterparts. Through their design and development, BH3 mimetics that target the hydrophobic groove of specific anti-apoptotic Bcl-2 proteins have the potential to become anticancer drugs. We have developed a novel computational method for designing sequences with BH3 domain features that can bind specifically to anti-apoptotic Mcl-1 or Bcl-X. In this method, we retained the four highly conserved hydrophobic and aspartic residues of wild-type BH3 sequences and randomly substituted all other positions to generate a large number of BH3-like sequences. We modeled 20000 complex structures with Mcl-1 or Bcl-X using the BH3-like sequences derived from five wild-type pro-apoptotic BH3 peptides. Peptide-protein interaction energies calculated from these models for each set of BH3-like sequences resulted in negatively skewed extreme value distributions. The selected BH3-like sequences from the extreme negative tail regions have highly favorable interaction energies with Mcl-1 or Bcl-X. They are enriched in acidic and basic residues when they bind to Mcl-1 and Bcl-X, respectively. With the charged residues often away from the binding interface, the overall electric field generated by the charged residues results in strong long-range electrostatic interaction energies between the peptide and the protein giving rise to high specificity. Cell viability studies of representative BH3-like peptides further validated the predicted specificity. This study has revealed the importance of non-hot spot residues in BH3-mimetic peptides in providing specificity to a particular anti-apoptotic protein.

摘要

促凋亡和抗凋亡 Bcl-2 蛋白之间的相互作用决定了细胞的命运。促凋亡 Bcl-2 蛋白的 BH3 结构域与它们的抗凋亡对应物的暴露疏水性凹槽相互作用。通过设计和开发,靶向特定抗凋亡 Bcl-2 蛋白疏水性凹槽的 BH3 模拟物有可能成为抗癌药物。我们开发了一种新的计算方法,用于设计具有 BH3 结构域特征的序列,这些序列可以特异性结合抗凋亡 Mcl-1 或 Bcl-X。在这种方法中,我们保留了野生型 BH3 序列的四个高度保守的疏水性和天冬氨酸残基,并随机取代所有其他位置,从而产生了大量的 BH3 样序列。我们使用源自五个野生型促凋亡 BH3 肽的 BH3 样序列,对 Mcl-1 或 Bcl-X 构建了 20000 个复合物结构模型。从这些模型计算出的每一组 BH3 样序列的肽-蛋白相互作用能导致负偏极端值分布。从极端负尾区选择的 BH3 样序列与 Mcl-1 或 Bcl-X 具有非常有利的相互作用能。当它们分别与 Mcl-1 和 Bcl-X 结合时,它们富含酸性和碱性残基。由于带电荷的残基通常远离结合界面,带电荷残基产生的整体电场导致肽与蛋白之间产生强的长程静电相互作用能,从而产生高特异性。代表性 BH3 样肽的细胞活力研究进一步验证了预测的特异性。这项研究揭示了 BH3 模拟肽中非热点残基在赋予特定抗凋亡蛋白特异性方面的重要性。

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