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一种BH3肽对促生存Bcl-2蛋白亲和力成熟的两种策略的比较。

A comparison of two strategies for affinity maturation of a BH3 peptide toward pro-survival Bcl-2 proteins.

作者信息

Zhang Siyan, Long Angel, Link A James

机构信息

Department of Chemical and Biological Engineering, Princeton University, Princeton, NJ 08544, USA.

出版信息

ACS Synth Biol. 2012 Mar 16;1(3):89-98. doi: 10.1021/sb200002m. Epub 2011 Oct 7.

Abstract

The Bcl-2 family of proteins regulates apoptosis at the level of mitochondrial permeabilization. Pro-death members of the family, including Bak and Bax, initiate apoptosis, whereas pro-survival members such as Bcl-x(L) and Mcl-1 antagonize the function of Bak and Bax via heterodimeric interactions. These heterodimeric interactions are primarily mediated by the binding of the helical amphipathic BH3 domain from a pro-death protein to a hydrophobic cleft on the surface of the pro-survival protein. Since high levels of pro-survival Bcl-2 proteins are present in many cancers, peptides corresponding to pro-death BH3 domains hold promise as therapeutics. Here we apply a high-throughput flow cytometry assay to engineer the Bak BH3 domain for improved affinity toward the pro-survival proteins Bcl-x(L) and Mcl-1. Two strategies, engineering the hydrophobic face of the Bak BH3 peptide and increasing its overall helicity, are successful in identifying Bak BH3 variants with improved affinity to Bcl-x(L) and Mcl-1. Hydrophobic face engineering of the Bak BH3 peptide led to variants with up to a 15-fold increase in affinity for Bcl-x(L) and increased specificity toward Bcl-x(L). Engineering of the helicity of Bak BH3 led to modest (3- to 4-fold) improvements in affinity with retention of promiscuous binding to all pro-survival proteins. HeLa cell killing studies demonstrate that the affinity matured Bak BH3 variants retain their expected biological function.

摘要

Bcl-2蛋白家族在线粒体通透性水平上调节细胞凋亡。该家族的促凋亡成员,包括Bak和Bax,引发细胞凋亡,而诸如Bcl-x(L)和Mcl-1等促生存成员则通过异源二聚体相互作用拮抗Bak和Bax的功能。这些异源二聚体相互作用主要由促凋亡蛋白的螺旋两亲性BH3结构域与促生存蛋白表面的疏水裂隙结合介导。由于许多癌症中存在高水平的促生存Bcl-2蛋白,与促凋亡BH3结构域对应的肽有望成为治疗药物。在此,我们应用高通量流式细胞术分析来改造Bak BH3结构域,以提高其对促生存蛋白Bcl-x(L)和Mcl-1的亲和力。两种策略,即改造Bak BH3肽的疏水表面并增加其整体螺旋度,成功地鉴定出对Bcl-x(L)和Mcl-1具有更高亲和力的Bak BH3变体。Bak BH3肽的疏水表面改造产生了对Bcl-x(L)亲和力提高多达15倍且对Bcl-x(L)特异性增加的变体。Bak BH3螺旋度的改造导致亲和力适度提高(3至4倍),同时保留了对所有促生存蛋白的混杂结合。HeLa细胞杀伤研究表明,亲和力成熟的Bak BH3变体保留了其预期的生物学功能。

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