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用于内生真菌中次生代谢产物激活的表观遗传调控:当前进展与未来方向

Epigenetic manipulation for secondary metabolite activation in endophytic fungi: current progress and future directions.

作者信息

Verma Ashish, Tiwari Harshita, Singh Swati, Gupta Priyamvada, Rai Nilesh, Kumar Singh Santosh, Singh Bhim Pratap, Rao Sombir, Gautam Vibhav

机构信息

Centre of Experimental Medicine and Surgery, Institute of Medical Sciences, Banaras Hindu University, Varanasi, India.

Department of Botany, Institute of Science, Banaras Hindu University, Varanasi, India.

出版信息

Mycology. 2023 Aug 8;14(4):275-291. doi: 10.1080/21501203.2023.2241486. eCollection 2023.

Abstract

Fungal endophytes have emerged as a promising source of secondary metabolites with significant potential for various applications in the field of biomedicine. The biosynthetic gene clusters of endophytic fungi are responsible for encoding several enzymes and transcriptional factors that are involved in the biosynthesis of secondary metabolites. The investigation of fungal metabolic potential at genetic level faces certain challenges, including the synthesis of appropriate amounts of chemicals, and loss of the ability of fungal endophytes to produce secondary metabolites in an artificial culture medium. Therefore, there is a need to delve deeper into the field of fungal genomics and transcriptomics to explore the potential of fungal endophytes in generating secondary metabolites governed by biosynthetic gene clusters. The silent biosynthetic gene clusters can be activated by modulating the chromatin structure using chemical compounds. Epigenetic modification plays a significant role by inducing cryptic gene responsible for the production of secondary metabolites using DNA methyl transferase and histone deacetylase. CRISPR-Cas9-based genome editing emerges an effective tool to enhance the production of desired metabolites by modulating gene expression. This review primarily focuses on the significance of epigenetic elicitors and their capacity to boost the production of secondary metabolites from endophytes. This article holds the potential to rejuvenate the drug discovery pipeline by introducing new chemical compounds.

摘要

真菌内生菌已成为次生代谢产物的一个有前景的来源,在生物医药领域具有多种应用的巨大潜力。内生真菌的生物合成基因簇负责编码参与次生代谢产物生物合成的多种酶和转录因子。在基因水平上研究真菌代谢潜力面临一些挑战,包括合成适量的化学物质,以及真菌内生菌在人工培养基中产生次生代谢产物的能力丧失。因此,有必要更深入地研究真菌基因组学和转录组学领域,以探索真菌内生菌在产生由生物合成基因簇控制的次生代谢产物方面的潜力。沉默的生物合成基因簇可以通过使用化合物调节染色质结构来激活。表观遗传修饰通过使用DNA甲基转移酶和组蛋白去乙酰化酶诱导负责次生代谢产物产生的隐秘基因发挥重要作用。基于CRISPR-Cas9的基因组编辑成为一种通过调节基因表达来提高所需代谢产物产量的有效工具。本综述主要关注表观遗传诱导剂的重要性及其促进内生菌次生代谢产物产生的能力。本文通过引入新的化学化合物,有可能使药物发现流程恢复活力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/49da/10769123/5a621e45e1c9/TMYC_A_2241486_F0001_OC.jpg

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