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Violacein: Properties and Production of a Versatile Bacterial Pigment

机译:紫精:多种细菌色素的性质和生产

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摘要

Violacein-producing bacteria, with their striking purple hues, have undoubtedly piqued the curiosity of scientists since their first discovery. The bisindole violacein is formed by the condensation of two tryptophan molecules through the action of five proteins. The genes required for its production, vio ABCDE, and the regulatory mechanisms employed have been studied within a small number of violacein-producing strains. As a compound, violacein is known to have diverse biological activities, including being an anticancer agent and being an antibiotic against Staphylococcus aureus and other Gram-positive pathogens. Identifying the biological roles of this pigmented molecule is of particular interest, and understanding violacein's function and mechanism of action has relevance to those unmasking any of its commercial or therapeutic benefits. Unfortunately, the production of violacein and its related derivatives is not easy and so various groups are also seeking to improve the fermentative yields of violacein through genetic engineering and synthetic biology. This review discusses the recent trends in the research and production of violacein by both natural and genetically modified bacterial strains.
机译:自首次发现以来,产生紫罗兰素的细菌以其惊人的紫色色调无疑激起了科学家的好奇心。双吲哚紫胶素是通过两个色氨酸分子通过五个蛋白质的作用而缩合而形成的。已经在少数产生紫色素的菌株中研究了其产生所需的基因,vio ABCDE和所采用的调节机制。作为化合物,紫胶素具有多种生物活性,包括作为抗癌剂和针对金黄色葡萄球菌和其他革兰氏阳性病原体的抗生素。鉴定这种有色分子的生物学作用特别令人感兴趣,了解紫精的功能和作用机理与揭示其任何商业或治疗益处的相关。不幸的是,紫堇青素及其相关衍生物的生产并不容易,因此各个团体也在寻求通过基因工程和合成生物学提高紫堇青素的发酵产量。这篇评论讨论了天然和基因修饰的细菌菌株紫精的研究和生产的最新趋势。

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