首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >PNAS Plus: Iterative optimization yields Mcl-1–targeting stapled peptides with selective cytotoxicity to Mcl-1–dependent cancer cells
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PNAS Plus: Iterative optimization yields Mcl-1–targeting stapled peptides with selective cytotoxicity to Mcl-1–dependent cancer cells

机译:PNAS Plus:迭代优化可产生靶向Mcl-1的固定肽对Mcl-1依赖性癌细胞具有选择性的细胞毒性

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摘要

Bcl-2 family proteins regulate apoptosis, and aberrant interactions of overexpressed antiapoptotic family members such as Mcl-1 promote cell transformation, cancer survival, and resistance to chemotherapy. Discovering potent and selective Mcl-1 inhibitors that can relieve apoptotic blockades is thus a high priority for cancer research. An attractive strategy for disabling Mcl-1 involves using designer peptides to competitively engage its binding groove, mimicking the structural mechanism of action of native sensitizer BH3-only proteins. We transformed Mcl-1–binding peptides into α-helical, cell-penetrating constructs that are selectively cytotoxic to Mcl-1–dependent cancer cells. Critical to the design of effective inhibitors was our introduction of an all-hydrocarbon cross-link or “staple” that stabilizes α-helical structure, increases target binding affinity, and independently confers binding specificity for Mcl-1 over related Bcl-2 family paralogs. Two crystal structures of complexes at 1.4 Å and 1.9 Å resolution demonstrate how the hydrophobic staple induces an unanticipated structural rearrangement in Mcl-1 upon binding. Systematic sampling of staple location and iterative optimization of peptide sequence in accordance with established design principles provided peptides that target intracellular Mcl-1. This work provides proof of concept for the development of potent, selective, and cell-permeable stapled peptides for therapeutic targeting of Mcl-1 in cancer, applying a design and validation workflow applicable to a host of challenging biomedical targets.
机译:Bcl-2家族蛋白调节细胞凋亡,过度表达的抗凋亡家族成员(如Mcl-1)的异常相互作用促进细胞转化,癌症存活和对化学疗法的抵抗力。因此,发现可以减轻细胞凋亡阻滞的有效且选择性的Mcl-1抑制剂是癌症研究的重中之重。禁用Mcl-1的一种有吸引力的策略涉及使用设计肽竞争性地结合其结合槽,从而模仿仅BH3敏化剂的天然作用机理。我们将Mcl-1结合肽转化为对特定Mcl-1依赖性癌细胞具有选择性细胞毒性的α螺旋,可穿透细胞的构建体。设计有效抑制剂的关键是我们引入了全烃交联或“钉”,可稳定α-螺旋结构,增加靶标结合亲和力,并相对于相关的Bcl-2家族旁系同源物独立赋予Mcl-1结合特异性。两种复合物的晶体结构分别为1.4Å和1.9Å分辨率,这表明疏水性缝钉在结合后如何在Mcl-1中引起意想不到的结构重排。根据已建立的设计原则,对钉书钉位置进行系统采样并反复优化肽序列,可提供靶向细胞内Mcl-1的肽。这项工作提供了适用于多种具有挑战性的生物医学靶标的设计和验证工作流程,为开发用于治疗癌症中Mcl-1的有效,选择性和细胞可渗透性固定肽的概念验证。

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