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基于片段的药物设计中的连接子:文献综述

Linkers in fragment-based drug design: an overview of the literature.

作者信息

Grenier Dylan, Audebert Solène, Preto Jordane, Guichou Jean-François, Krimm Isabelle

机构信息

Team Small Molecules for Biological Targets, Centre de Recherche En Cancérologie (CRCL) - INSERM 1052 - CNRS 5286 - Centre Léon Bérard - Université Claude Bernard Lyon 1, Institut Convergence Plascan, Lyon, France.

Centre de Biologie Structurale, CNRS, INSERM, Univ. Montpellier, Montpellier, France.

出版信息

Expert Opin Drug Discov. 2023 Jul-Dec;18(9):987-1009. doi: 10.1080/17460441.2023.2234285. Epub 2023 Jul 19.

Abstract

INTRODUCTION

In fragment-based drug design, fragment linking is a popular strategy where two fragments binding to different sub-pockets of a target are linked together. This attractive method remains challenging especially due to the design of ideal linkers.

AREAS COVERED

The authors review the types of linkers and chemical reactions commonly used to the synthesis of linkers, including those utilized in protein-templated fragment self-assembly, where fragments are directly linked in the presence of the protein. Finally, they detail computational workflows and software including generative models that have been developed for fragment linking.

EXPERT OPINION

The authors believe that fragment linking offers key advantages for compound design, particularly for the design of bivalent inhibitors linking two distinct pockets of the same or different subunits. On the other hand, more studies are needed to increase the potential of protein-templated approaches in FBDD. Important computational tools such as structure-based de novo software are emerging to select suitable linkers. Fragment linking will undoubtedly benefit from developments in computational approaches and machine learning models.

摘要

引言

在基于片段的药物设计中,片段连接是一种常用策略,即将与靶点不同亚口袋结合的两个片段连接在一起。这种颇具吸引力的方法仍然具有挑战性,尤其是在理想连接子的设计方面。

涵盖领域

作者回顾了常用于连接子合成的连接子类型和化学反应,包括那些在蛋白质模板化片段自组装中使用的反应,即在蛋白质存在的情况下片段直接连接。最后,他们详细介绍了计算工作流程和软件,包括为片段连接而开发的生成模型。

专家观点

作者认为片段连接为化合物设计提供了关键优势,特别是对于连接同一或不同亚基的两个不同口袋的二价抑制剂的设计。另一方面,需要更多研究来提高蛋白质模板化方法在基于片段的药物设计中的潜力。诸如基于结构的从头设计软件等重要的计算工具正在涌现,以选择合适的连接子。片段连接无疑将受益于计算方法和机器学习模型的发展。

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