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Structure‐Enabled Discovery of a Stapled Peptide Inhibitor to Target the Oncogenic Transcriptional Repressor TLE1

机译:以结构为基础的发现以靶向致癌转录阻遏物TLE1的主肽抑制剂的发现

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摘要

TLE1 is an oncogenic transcriptional co‐repressor that exerts its repressive effects through binding of transcription factors. Inhibition of this protein–protein interaction represents a putative cancer target, but no small‐molecule inhibitors have been published for this challenging interface. Herein, the structure‐enabled design and synthesis of a constrained peptide inhibitor of TLE1 is reported. The design features the introduction of a four‐carbon‐atom linker into the peptide epitope found in many TLE1 binding partners. A concise synthetic route to a proof‐of‐concept peptide, cycFWRPW, has been developed. Biophysical testing by isothermal titration calorimetry and thermal shift assays showed that, although the constrained peptide bound potently, it had an approximately five‐fold higher K d than that of the unconstrained peptide. The co‐crystal structure suggested that the reduced affinity was likely to be due to a small shift of one side chain, relative to the otherwise well‐conserved conformation of the acyclic peptide. This work describes a constrained peptide inhibitor that may serve as the basis for improved inhibitors.
机译:TLE1是一种致癌转录共抑制因子,通过结合转录因子发挥其抑制作用。抑制这种蛋白间相互作用代表了一个可能的癌症靶标,但尚未有针对这一具有挑战性的界面的小分子抑制剂被发表。本文报道了TLE1约束肽抑制剂的结构化设计和合成。该设计的特点是在许多TLE1结合伴侣中发现的肽表位中引入了四碳原子接头。已经开发出一种简洁的合成途径来制备概念验证肽cycFWRPW。通过等温滴定热法和热位移测定法进行的生物物理测试表明,尽管受约束的肽有效结合,但其K d值比未受约束的肽高约五倍。共晶体结构表明,相对于无环肽原本保存良好的构象,亲和力降低可能是由于一侧链的微小位移所致。这项工作描述了一种受约束的肽抑制剂,可以作为改进抑制剂的基础。

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