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将一种拟蛋白质组泛Ras抑制剂改造为Ras降解剂。

Reengineering of a Proteomimetic Pan-Ras Inhibitor into a Ras Degrader.

作者信息

Ongkingco Joseph F, Hong Seong Ho, Toth Eugene D, Nguyen Thu, Arora Paramjit S

机构信息

Department of Chemistry, New York University, 100 Washington Square East, New York, NY, 10003, USA.

出版信息

Angew Chem Int Ed Engl. 2025 Jul 21;64(30):e202507092. doi: 10.1002/anie.202507092. Epub 2025 May 30.

Abstract

Bifunctional ligands that can coax protein-protein interactions have become attractive therapeutic modalities. Herein, we describe conformationally defined helix dimers as proteomimetic molecular glues. The helix dimers can be rationally designed to engage helical protein interfaces. We previously described a synthetic Sos protein mimic, CHD, as a Ras ligand that inhibits wild-type and oncogenic Ras signaling. This Sos proteomimetic consisted of a crosslinked helix dimer (CHD) that reproduced two helical domains, termed αH and αI, from Sos. The native αH helix of Sos constitutes the primary contact surface for Sos, while αI has minimal engagement. We conjectured that the αI domain of CHD could be reengineered to preserve Ras binding, while engaging another protein to fully leverage the contact residues available in a proteomimetic. Herein, we incorporate a second distinct binding epitope into CHD, thereby generating a bispecific proteomimetic. This secondary epitope was designed based on the p53 activation domain to engage the E3 ligase MDM2 and induce complexation with Ras. The resulting lead proteomimetic, CHD, associates with both MDM2 and Ras and demonstrates reduction of cellular Ras levels. Overall, the study offers a proof of concept for the development of a bispecific proteomimetic scaffold to target multiple protein interfaces.

摘要

能够诱导蛋白质-蛋白质相互作用的双功能配体已成为有吸引力的治疗方式。在此,我们将构象明确的螺旋二聚体描述为蛋白质模拟分子胶水。螺旋二聚体可以经过合理设计以结合螺旋状蛋白质界面。我们之前描述了一种合成的Sos蛋白模拟物CHD,作为一种Ras配体,可抑制野生型和致癌性Ras信号传导。这种Sos蛋白质模拟物由一个交联螺旋二聚体(CHD)组成,它重现了来自Sos的两个螺旋结构域,称为αH和αI。Sos的天然αH螺旋构成了Sos的主要接触表面,而αI的参与度最小。我们推测,可以对CHD的αI结构域进行重新设计,以保留Ras结合能力,同时结合另一种蛋白质,从而充分利用蛋白质模拟物中可用的接触残基。在此,我们将第二个不同的结合表位纳入CHD,从而生成一种双特异性蛋白质模拟物。这个二级表位是基于p53激活结构域设计的,以结合E3连接酶MDM2并诱导与Ras形成复合物。所得的先导蛋白质模拟物CHD与MDM2和Ras都结合,并证明细胞内Ras水平降低。总体而言,该研究为开发一种靶向多个蛋白质界面的双特异性蛋白质模拟支架提供了概念验证。

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