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向内在无序蛋白质扩散的蛋白质结合剂。

Diffusing protein binders to intrinsically disordered proteins.

作者信息

Liu Caixuan, Wu Kejia, Choi Hojun, Han Hannah, Zhang Xulie, Watson Joseph L, Shijo Sara, Bera Asim K, Kang Alex, Brackenbrough Evans, Coventry Brian, Hick Derrick R, Hoofnagle Andrew N, Zhu Ping, Li Xingting, Decarreau Justin, Gerben Stacey R, Yang Wei, Wang Xinru, Lamp Mila, Murray Analisa, Bauer Magnus, Baker David

机构信息

Department of Biochemistry, University of Washington, Seattle, WA, USA.

Institute for Protein Design, University of Washington, Seattle, WA, USA.

出版信息

bioRxiv. 2024 Jul 16:2024.07.16.603789. doi: 10.1101/2024.07.16.603789.

Abstract

Proteins which bind intrinsically disordered proteins (IDPs) and intrinsically disordered regions (IDRs) with high affinity and specificity could have considerable utility for therapeutic and diagnostic applications. However, a general methodology for targeting IDPs/IDRs has yet to be developed. Here, we show that starting only from the target sequence of the input, and freely sampling both target and binding protein conformation, RFdiffusion can generate binders to IDPs and IDRs in a wide range of conformations. We use this approach to generate binders to the IDPs Amylin, C-peptide and VP48 in a range of conformations with Kds in the 3 -100nM range. The Amylin binder inhibits amyloid fibril formation and dissociates existing fibers, and enables enrichment of amylin for mass spectrometry-based detection. For the IDRs G3bp1, common gamma chain (IL2RG) and prion, we diffused binders to beta strand conformations of the targets, obtaining 10 to 100 nM affinity. The IL2RG binder colocalizes with the receptor in cells, enabling new approaches to modulating IL2 signaling. Our approach should be widely useful for creating binders to flexible IDPs/IDRs spanning a wide range of intrinsic conformational preferences.

摘要

能够以高亲和力和特异性结合内在无序蛋白(IDP)和内在无序区域(IDR)的蛋白质在治疗和诊断应用中可能具有相当大的实用性。然而,针对IDP/IDR的通用方法尚未开发出来。在这里,我们表明,仅从输入的靶序列开始,并对靶标和结合蛋白的构象进行自由采样,RFdiffusion可以生成针对各种构象的IDP和IDR的结合剂。我们使用这种方法生成了针对多种构象的IDP胰岛淀粉样多肽(Amylin)、C肽和VP48的结合剂,其解离常数(Kd)在3-100 nM范围内。Amylin结合剂可抑制淀粉样纤维的形成并使现有纤维解离,并能够富集Amylin用于基于质谱的检测。对于IDR G3bp1、共同γ链(IL2RG)和朊病毒,我们使结合剂扩散到靶标的β链构象,获得了10至100 nM的亲和力。IL2RG结合剂在细胞中与受体共定位,为调节IL2信号传导提供了新方法。我们的方法对于创建针对具有广泛内在构象偏好的柔性IDP/IDR的结合剂应该具有广泛的用途。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6104/11275890/34b5d91127e5/nihpp-2024.07.16.603789v1-f0001.jpg

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