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Mcl-1–Bim complexes accommodate surprising point mutations via minor structural changes

机译:Mcl-1-Bim复合物通过微小的结构变化即可容纳令人惊讶的点突变

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摘要

Mcl-1 is an antiapoptotic Bcl-2-family protein that protects cells against death. Structures of Mcl-1, and of other anti-apoptotic Bcl-2 proteins, reveal a surface groove into which the α-helical BH3 regions of certain proapoptotic proteins can bind. Despite high overall structural conservation, differences in this groove afford binding specificity that is important for the mechanism of Bcl-2 family function. We report the crystal structure of human Mcl-1 bound to a BH3 peptide derived from human Bim and the structures for three complexes that accommodate large physicochemical changes at conserved Bim sites. The mutations had surprisingly modest effects on complex stability, and the structures show that Mcl-1 can undergo small changes to accommodate the mutant ligands. For example, a shift in a leucine side chain fills a hole left by an isoleucine-to-alanine mutation at the first hydrophobic buried position of Bim BH3. Larger changes are also observed, with shifting of helix α3 accommodating an isoleucine-to-tyrosine mutation at this same position. We surveyed the variation in available Mcl-1 and Bcl-xL structures and observed moderate flexibility that is likely critical for facilitating interactions of diverse BH3-only proteins with Mcl-1. With the antiapoptotic Bcl-2 family members attracting significant attention as therapeutic targets, these structures contribute to our growing understanding of how specificity is achieved and can help to guide the design of novel inhibitors that target Mcl-1.
机译:Mcl-1是一种抗凋亡Bcl-2家族蛋白,可保护细胞免于死亡。 Mcl-1和其他抗凋亡Bcl-2蛋白的结构揭示了一个表面沟槽,某些促凋亡蛋白的α-螺旋BH3区可以与之结合。尽管总体上具有较高的结构保守性,但该凹槽中的差异提供了结合特异性,这对于Bcl-2家族功能的机制很重要。我们报告人Mcl-1的晶体结构绑定到人Bim衍生的BH3肽和三个复合物的结构,在保守的Bim位点可容纳较大的理化变化。突变对复合物稳定性具有出乎意料的适度影响,该结构表明Mcl-1可能会发生微小变化以适应突变配体。例如,亮氨酸侧链的移位填补了Bim BH3的第一个疏水隐埋位的异亮氨酸至丙氨酸突变所留下的孔。还观察到较大的变化,在相同位置上螺旋α3的转移伴随着异亮氨酸到酪氨酸的突变。我们调查了可用的Mcl-1和Bcl-xL结构的变化,并观察到适度的柔韧性,这可能对促进仅BH3的多种蛋白与Mcl-1的相互作用至关重要。随着抗凋亡Bcl-2家族成员作为治疗靶点引起了极大关注,这些结构有助于我们对特异性的实现方法日益增长的了解,并有助于指导靶向Mcl-1的新型抑制剂的设计。

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