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小分子诱导的蛋白质聚合:机制与治疗意义

Small-Molecule-Induced Protein Polymerization: Mechanisms and Therapeutic Implications.

作者信息

Hah Young-Sool, Han Sun-Young

机构信息

Biomedical Research Institute, Gyeongsang National University Hospital, Jinju 52727, Republic of Korea.

College of Pharmacy and Research Institute of Pharmaceutical Sciences, Gyeongsang National University, Jinju 52828, Republic of Korea.

出版信息

Biomol Ther (Seoul). 2025 Sep 1;33(5):804-812. doi: 10.4062/biomolther.2024.211. Epub 2025 Aug 12.

Abstract

Small molecules that induce protein polymerization represent an emerging class of compounds with diverse therapeutic potential. This review provides a comprehensive overview of five such molecules: arsenic trioxide (AsO), BI-3802, NVS-STG2, paclitaxel, and verteporfin. These compounds target different proteins (PML-RARα, BCL6, STING, β-tubulin, and p62, respectively) and exhibit varied mechanisms of action. Some, like AsO and BI-3802, induce polymerization leading to protein degradation, while others, such as NVS-STG2, activate protein function through polymerization. Paclitaxel, distinct from these, induces the stabilization of tubulin polymers. Verteporfin, on the other hand, uniquely causes covalent cross-linking of its target and other cellular proteins. This review explores the molecular mechanisms, structural insights, and therapeutic implications of these compounds, highlighting their potential in targeted protein degradation, cancer treatment, and modulation of cellular processes, such as autophagy and immune response. The diverse effects of these molecules underscore the complexity of protein polymerization in cellular function and disease, opening new avenues for drug discovery and development.

摘要

诱导蛋白质聚合的小分子代表了一类具有多种治疗潜力的新兴化合物。本综述全面概述了五种此类分子:三氧化二砷(AsO)、BI-3802、NVS-STG2、紫杉醇和维替泊芬。这些化合物分别靶向不同的蛋白质(PML-RARα、BCL6、STING、β-微管蛋白和p62),并表现出不同的作用机制。一些化合物,如AsO和BI-3802,诱导聚合导致蛋白质降解,而其他化合物,如NVS-STG2,则通过聚合激活蛋白质功能。与这些不同的是,紫杉醇诱导微管蛋白聚合物的稳定。另一方面,维替泊芬独特地导致其靶标和其他细胞蛋白的共价交联。本综述探讨了这些化合物的分子机制、结构见解和治疗意义,强调了它们在靶向蛋白质降解、癌症治疗以及调节自噬和免疫反应等细胞过程中的潜力。这些分子的多样作用凸显了蛋白质聚合在细胞功能和疾病中的复杂性,为药物发现和开发开辟了新途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5dea/12408205/d7fbc1805b3c/bt-33-5-804-f1.jpg

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