arXiv:2607.22143cs.LGcs.AI2026-07

用生物启发生成模型设计能诱导蛋白复合物形成的分子胶。

TriGlue: a Biology-Inspired Generative Model for Generating Molecular Glue-Induced Ternary Complex

论文配图:TriGlue: a Biology-Inspired Generative Model for Generating Molecular Glue-Induced Ternary Complex
图 1 · 摘自论文原文
  • 分两阶段生成:先预测蛋白界面,再据此生成分子胶和组装复合物。
  • 生成的分子化学有效,复合物结构合理,验证了方法可行性。
  • 适合药物研发人员快速探索新型分子胶,加速靶向降解药发现。

分子胶降解剂通过诱导E3泛素连接酶与靶蛋白形成三元复合物,成为靶向蛋白降解的有前景策略。尽管具有治疗潜力,但计算设计仍处于空白。与传统基于结构的药物设计不同,分子胶设计依赖未知的蛋白-蛋白相互作用界面,需同时建模配体生成、蛋白-蛋白对接和三元复合物组装。本文将分子胶设计定义为三元复合物生成问题,提出生物启发的生成框架TriGlue。受分子胶作用机制启发,将三元复合物生成分解为两个耦合阶段:界面估计与界面条件下的复合物生成。首先,构建一个SE(3)-等变的界面估计模块,从无结合的单体结构中预测几何受限的蛋白-蛋白界面。其次,引入界面条件下的三元流匹配网络,联合生成分子胶并预测组装所需的刚体变换。大量实验表明,TriGlue生成的分子化学有效,形成的三元复合物结构合理,凸显了生物启发生成建模在加速分子胶发现中的潜力。代码已开源:https://github.com/yuliangyan0807/molecular-glue-design。

原文摘要 · Abstract (English)

Molecular glue degraders have emerged as a promising strategy for targeted protein degradation by inducing ternary complex formation between an E3 ubiquitin ligase and a target protein. Despite their therapeutic potential, computational design of molecular glues remains largely unexplored. Unlike conventional structure-based drug design, molecular glue design is governed by the unknown protein-protein interface and requires the simultaneous modeling of ligand generation, protein-protein docking, and ternary complex assembly. In this work, we formulate molecular glue design as a ternary complex generation problem and propose a biology-inspired generative framework, TriGlue. Motivated by the mechanism of molecular glue action, we decompose ternary complex generation into two coupled stages: interface estimation and interface-conditioned complex generation. First, we develop an SE(3)-equivariant interface estimation module that predicts a geometrically constrained protein-protein interface from unbound monomer structures. Second, we introduce an interface-conditioned ternary flow matching network that jointly generates the molecular glue and predicts the rigid-body transformation required to assemble the ternary complex. Extensive experiments demonstrate that TriGlue generates chemically valid molecules and produces plausible ternary complexes, which highlight the potential of biology-inspired generative modeling for accelerating molecular glue discovery. Our code is available at https://github.com/yuliangyan0807/molecular-glue-design.

分子胶生成模型蛋白降解药物设计

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