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基于结构的 YAP 样共激活因子衍生肽的衍生和优化,通过烃 stapling 和环化选择性靶向 TEAD 家族转录因子。

Structure-based derivation and optimization of YAP-like coactivator-derived peptides to selectively target TEAD family transcription factors by hydrocarbon stapling and cyclization.

机构信息

Department of Cardiothoracic Surgery, The Second Affiliated Hospital of Chongqing Medical University, Chongqing, China.

Department of Thoracic Surgery, Chongqing Traditional Chinese Medicine Hospital, Chongqing, China.

出版信息

Chem Biol Drug Des. 2021 Jun;97(6):1129-1136. doi: 10.1111/cbdd.13813. Epub 2021 Mar 23.

DOI:10.1111/cbdd.13813
PMID:33283479
Abstract

Human transcriptional enhanced associate domain (TEAD) family consists of four paralogous transcription factors that function to modulate gene expression by interacting with YAP-like coactivators and have been recognized as potential therapeutic targets of diverse diseases including lung cancer and gastric tumor. Here, we attempt to explore the systematic interaction profile between the 4 TEAD proteins and the peptides derived from the binding sites of 8 known YAP-like coactivators, in order to analyze the binding affinity and recognition specificity of these peptides toward the TEAD family, and to design hydrocarbon-stapled/cyclized peptides that can target the specific interaction profile for each coactivator. Structural, energetic, and dynamic investigations of TEAD-coactivator interactions reveal that the coactivators adopt three independent secondary structure regions (β-strand, α-helix, and Ω-loop) to surround on the surface of TEAD proteins, in which the α-helical and Ω-loop regions are primarily responsible for the interactions. Five α-helical peptides and four Ω-loop peptides are derived from the 8 YAP-like coactivators, and their systematic binding profile toward the 4 TEAD proteins is created, and hydrocarbon stapling and cyclization strategies are employed to constrain the free α-helical and Ω-loop peptides into their native conformations, respectively, thus effectively promoting peptide binding to TEADs. The all-hydrocarbon and disulfide bridges are designed to point out the TEAD-peptide complex interface, which would not disrupt the direct intermolecular interaction between the TEAD and peptide. Therefore, the stapling and cyclization only improve peptide binding affinity to these TEADs, but do not alter peptide recognition specificity over different TEADs.

摘要

人类转录增强相关结构域(TEAD)家族由四个功能相似的转录因子组成,它们通过与 YAP 样共激活因子相互作用来调节基因表达,已被认为是包括肺癌和胃癌在内的多种疾病的潜在治疗靶点。在这里,我们试图探索 4 个 TEAD 蛋白与 8 个已知 YAP 样共激活因子结合位点衍生的肽之间的系统相互作用谱,以分析这些肽对 TEAD 家族的结合亲和力和识别特异性,并设计能够针对每个共激活因子的特定相互作用谱的烃 stapled/cyclized 肽。TEAD-共激活因子相互作用的结构、能量和动态研究表明,共激活因子采用三个独立的二级结构区域(β-链、α-螺旋和 Ω-环)来围绕 TEAD 蛋白的表面,其中α-螺旋和 Ω-环区域主要负责相互作用。从 8 个 YAP 样共激活因子中衍生出 5 个α-螺旋肽和 4 个Ω-环肽,并创建了它们对 4 个 TEAD 蛋白的系统结合谱,然后采用烃 stapling 和环化策略分别将游离的α-螺旋和 Ω-环肽约束到它们的天然构象中,从而有效地促进肽与 TEAD 的结合。全烃和二硫键被设计用来指出 TEAD-肽复合物的界面,这不会破坏 TEAD 与肽之间的直接分子间相互作用。因此,stapling 和环化仅提高了肽与这些 TEAD 的结合亲和力,但不会改变肽对不同 TEAD 的识别特异性。

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