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Cellular compartmentalization of secondary metabolism

机译:二次代谢的细胞区室化

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摘要

Fungal secondary metabolism is often considered apart from the essential housekeeping functions of the cell. However, there are clear links between fundamental cellular metabolism and the biochemical pathways leading to secondary metabolite synthesis. Besides utilizing key biochemical precursors shared with the most essential processes of the cell (e.g., amino acids, acetyl CoA, NADPH), enzymes for secondary metabolite synthesis are compartmentalized at conserved subcellular sites that position pathway enzymes to use these common biochemical precursors. Co-compartmentalization of secondary metabolism pathway enzymes also may function to channel precursors, promote pathway efficiency and sequester pathway intermediates and products from the rest of the cell. In this review we discuss the compartmentalization of three well-studied fungal secondary metabolite biosynthetic pathways for penicillin G, aflatoxin and deoxynivalenol, and summarize evidence used to infer subcellular localization. We also discuss how these metabolites potentially are trafficked within the cell and may be exported.
机译:除细胞的基本管家功能外,通常考虑到真菌的次级代谢。但是,基本的细胞代谢与导致次级代谢产物合成的生化途径之间存在明确的联系。除了利用与细胞最基本过程共有的关键生化前体(例如氨基酸,乙酰辅酶A,NADPH)以外,用于次生代谢产物合成的酶在保守的亚细胞部位被分隔,这些部位定位途径酶以使用这些常见的生化前体。次要代谢途径酶的共同分隔也可以起到引导前体,促进途径效率和隔离细胞其余部分的途径中间体和产物的作用。在这篇综述中,我们讨论了对青霉素G,黄曲霉毒素和脱氧雪茄烯醇的三个经过充分研究的真菌次级代谢产物生物合成途径的区室化,并总结了用于推断亚细胞定位的证据。我们还讨论了这些代谢物如何在细胞内潜在地运输并可能被输出。

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