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基于合成生物学构建具有改进的光动力抗癌活性的非天然二萘嵌苯醌。

Synthetic Biology-based Construction of Unnatural Perylenequinones with Improved Photodynamic Anticancer Activities.

机构信息

Key Laboratory of Carbohydrate Chemistry and Biotechnology, Ministry of Education, School of Biotechnology, Jiangnan University, Wuxi, 214122, P. R. China.

Wuxi School of Medicine, Jiangnan University, Wuxi, 214122, P. R. China.

出版信息

Angew Chem Int Ed Engl. 2024 Mar 11;63(11):e202317726. doi: 10.1002/anie.202317726. Epub 2024 Feb 8.

Abstract

The construction of structural complexity and diversity of natural products is crucial for drug discovery and development. To overcome high dark toxicity and poor photostability of natural photosensitizer perylenequinones (PQs) for photodynamic therapy, herein, we aim to introduce the structural complexity and diversity to biosynthesize the desired unnatural PQs in fungus Cercospora through synthetic biology-based strategy. Thus, we first elucidate the intricate biosynthetic pathways of class B PQs and reveal how the branching enzymes create their structural complexity and diversity from a common ancestor. This enables the rational reprogramming of cercosporin biosynthetic pathway in Cercospora to generate diverse unnatural PQs without chemical modification. Among them, unnatural cercosporin A displays remarkably low dark toxicity and high photostability with retention of great photodynamic anticancer and antimicrobial activities. Moreover, it is found that, unlike cercosporin, unnatural cercosporin A could be selectively accumulated in cancer cells, providing potential targets for drug development. Therefore, this work provides a comprehensive foundation for preparing unnatural products with customized functions through synthetic biology-based strategies, thus facilitating drug discovery pipelines from nature.

摘要

天然产物结构复杂性和多样性的构建对于药物发现和开发至关重要。为了克服天然光敏剂苝醌(PQs)用于光动力疗法时的高暗毒性和差的光稳定性,本文旨在通过基于合成生物学的策略,在真菌尾孢菌中引入结构复杂性和多样性来生物合成所需的非天然 PQs。因此,我们首先阐明了 B 类 PQs 的复杂生物合成途径,并揭示了分支酶如何从共同祖先中创造结构的复杂性和多样性。这使得可以在不进行化学修饰的情况下,通过理性重编程尾孢菌素生物合成途径来生成多种非天然 PQs。其中,非天然尾孢菌素 A 表现出极低的暗毒性和高的光稳定性,同时保持了良好的光动力抗癌和抗菌活性。此外,与尾孢菌素不同,发现非天然尾孢菌素 A 可以选择性地在癌细胞中积累,为药物开发提供了潜在的靶点。因此,这项工作为通过基于合成生物学的策略制备具有定制功能的非天然产物提供了全面的基础,从而促进了从自然界中发现药物的途径。

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