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化学表观遗传修饰剂引发的从真菌中寻找生物活性次生代谢产物的最新进展

Recent Advances in Search of Bioactive Secondary Metabolites from Fungi Triggered by Chemical Epigenetic Modifiers.

作者信息

Xue Mengyao, Hou Xuwen, Fu Jiajin, Zhang Jiayin, Wang Jiacheng, Zhao Zhitong, Xu Dan, Lai Daowan, Zhou Ligang

机构信息

State Key Laboratory of Agrobiotechnology, Department of Plant Pathology, College of Plant Protection, China Agricultural University, Beijing 100193, China.

出版信息

J Fungi (Basel). 2023 Jan 28;9(2):172. doi: 10.3390/jof9020172.

Abstract

Genomic analysis has demonstrated that many fungi possess essential gene clusters for the production of previously unobserved secondary metabolites; however, these genes are normally reduced or silenced under most conditions. These cryptic biosynthetic gene clusters have become treasures of new bioactive secondary metabolites. The induction of these biosynthetic gene clusters under stress or special conditions can improve the titers of known compounds or the production of novel compounds. Among the inducing strategies, chemical-epigenetic regulation is considered a powerful approach, and it uses small-molecule epigenetic modifiers, which mainly act as the inhibitors of DNA methyltransferase, histone deacetylase, and histone acetyltransferase, to promote changes in the structure of DNA, histones, and proteasomes and to further activate cryptic biosynthetic gene clusters for the production of a wide variety of bioactive secondary metabolites. These epigenetic modifiers mainly include 5-azacytidine, suberoylanilide hydroxamic acid, suberoyl bishydroxamic acid, sodium butyrate, and nicotinamide. This review gives an overview on the method of chemical epigenetic modifiers to trigger silent or low-expressed biosynthetic pathways to yield bioactive natural products through external cues of fungi, mainly based on the research progress in the period from 2007 to 2022. The production of about 540 fungal secondary metabolites was found to be induced or enhanced by chemical epigenetic modifiers. Some of them exhibited significant biological activities such as cytotoxic, antimicrobial, anti-inflammatory, and antioxidant activity.

摘要

基因组分析表明,许多真菌拥有用于产生先前未观察到的次级代谢产物的必需基因簇;然而,这些基因在大多数情况下通常会减少或沉默。这些隐秘的生物合成基因簇已成为新型生物活性次级代谢产物的宝库。在应激或特殊条件下诱导这些生物合成基因簇可以提高已知化合物的产量或新化合物的产生。在诱导策略中,化学表观遗传调控被认为是一种强大的方法,它使用小分子表观遗传修饰剂,这些修饰剂主要作为DNA甲基转移酶、组蛋白脱乙酰酶和组蛋白乙酰转移酶的抑制剂,以促进DNA、组蛋白和蛋白酶体结构的变化,并进一步激活隐秘的生物合成基因簇以产生多种生物活性次级代谢产物。这些表观遗传修饰剂主要包括5-氮杂胞苷、辛二酰苯胺异羟肟酸、辛二酰双异羟肟酸、丁酸钠和烟酰胺。本综述主要基于2007年至2022年期间的研究进展,概述了化学表观遗传修饰剂通过真菌的外部线索触发沉默或低表达的生物合成途径以产生生物活性天然产物的方法。发现约540种真菌次级代谢产物的产生可被化学表观遗传修饰剂诱导或增强。其中一些表现出显著的生物活性,如细胞毒性、抗菌、抗炎和抗氧化活性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5b25/9961798/7ee0e0a8c1b5/jof-09-00172-g001a.jpg

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