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首页> 外文期刊>Fungal Genetics and Biology >Compartmentalization and molecular traffic in secondary metabolism: a new understanding of established cellular processes. (Special Issue: Fungal secondary metabolism.)
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Compartmentalization and molecular traffic in secondary metabolism: a new understanding of established cellular processes. (Special Issue: Fungal secondary metabolism.)

机译:隔室代谢和次级代谢中的分子运输:对已建立的细胞过程的新理解。 (特刊:真菌二次代谢。)

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摘要

Great progress has been made in understanding the regulation of expression of genes involved in secondary metabolism. Less is known about the mechanisms that govern the spatial distribution of the enzymes, cofactors, and substrates that mediate catalysis of secondary metabolites within the cell. Filamentous fungi in the genus Aspergillus synthesize an array of secondary metabolites and provide useful systems to analyze the mechanisms that mediate the temporal and spatial regulation of secondary metabolism in eukaryotes. For example, aflatoxin biosynthesis in Aspergillus parasiticus has been studied intensively because this mycotoxin is highly toxic, mutagenic, and carcinogenic in humans and animals. Using aflatoxin synthesis to illustrate key concepts, this review focuses on the mechanisms by which sub-cellular compartmentalization and intra-cellular molecular traffic contribute to the initiation and completion of secondary metabolism within the cell. We discuss the recent discovery of aflatoxisomes, specialized trafficking vesicles that participate in the compartmentalization of aflatoxin synthesis and export of the toxin to the cell exterior; this work provides a new and clearer understanding of how cells integrate secondary metabolism into basic cellular metabolism via the intra-cellular trafficking machinery.
机译:在理解涉及次级代谢的基因表达的调节方面已取得了很大的进步。关于控制介导细胞内次级代谢产物催化的酶,辅因子和底物的空间分布的机制知之甚少。曲霉属中的丝状真菌合成了一系列次级代谢产物,为分析介导真核生物次级代谢的时空调控机制提供了有用的系统。例如,已经对寄生曲霉(Aspergillus parasiticus)的黄曲霉毒素的生物合成进行了深入研究,因为这种霉菌毒素对人和动物具有高毒性,致突变性和致癌性。使用黄曲霉毒素合成来阐明关键概念,本综述着重于亚细胞区室化和细胞内分子运输有助于细胞内次级代谢的启动和完成的机制。我们讨论了黄曲霉毒素的最新发现,黄曲霉毒素是参与黄曲霉毒素合成的区室化和毒素向细胞外部输出的专门运输小泡;这项工作使人们对细胞如何通过细胞内运输机制将次级代谢整合到基本细胞代谢中有了新的认识。

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