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Current knowledge and recent advances in understanding metabolism of the model cyanobacterium Synechocystis sp. PCC 6803

机译:在了解模型蓝藻集胞藻属的新陈代谢方面的最新知识和最新进展。 PCC 6803

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摘要

Cyanobacteria are key organisms in the global ecosystem, useful models for studying metabolic and physiological processes conserved in photosynthetic organisms, and potential renewable platforms for production of chemicals. Characterizing cyanobacterial metabolism and physiology is key to understanding their role in the environment and unlocking their potential for biotechnology applications. Many aspects of cyanobacterial biology differ from heterotrophic bacteria. For example, most cyanobacteria incorporate a series of internal thylakoid membranes where both oxygenic photosynthesis and respiration occur, while CO fixation takes place in specialized compartments termed carboxysomes. In this review, we provide a comprehensive summary of our knowledge on cyanobacterial physiology and the pathways in sp. PCC 6803 ( ) involved in biosynthesis of sugar-based metabolites, amino acids, nucleotides, lipids, cofactors, vitamins, isoprenoids, pigments and cell wall components, in addition to the proteins involved in metabolite transport. While some pathways are conserved between model cyanobacteria, such as , and model heterotrophic bacteria like , many enzymes and/or pathways involved in the biosynthesis of key metabolites in cyanobacteria have not been completely characterized. These include pathways required for biosynthesis of chorismate and membrane lipids, nucleotides, several amino acids, vitamins and cofactors, and isoprenoids such as plastoquinone, carotenoids, and tocopherols. Moreover, our understanding of photorespiration, lipopolysaccharide assembly and transport, and degradation of lipids, sucrose, most vitamins and amino acids, and haem, is incomplete. We discuss tools that may aid our understanding of cyanobacterial metabolism, notably CyanoSource, a barcoded library of targeted mutants, which will significantly accelerate characterization of individual proteins.
机译:蓝细菌是全球生态系统中的关键生物,是研究光合生物中保守的代谢和生理过程的有用模型,并且是生产化学品的潜在可再生平台。表征蓝细菌的代谢和生理学是了解它们在环境中的作用并释放其在生物技术应用中的潜力的关键。蓝细菌生物学的许多方面与异养细菌不同。例如,大多数蓝细菌掺入了一系列内部类囊体膜,其中发生了氧的光合作用和呼吸作用,而一氧化碳的固定则发生在称为羧基体的专门区域中。在这篇综述中,我们提供了我们对蓝细菌生理学和sp途径的全面总结。 PCC 6803()除涉及代谢物运输的蛋白质外,还参与糖基代谢物,氨基酸,核苷酸,脂质,辅因子,维生素,类异戊二烯,色素和细胞壁成分的生物合成。尽管在模型蓝细菌(例如)和模型异养细菌(例如)之间保留了一些途径,但尚未完全表征与蓝细菌关键代谢物的生物合成有关的许多酶和/或途径。这些包括生物合成分支酸和膜脂质,核苷酸,几种氨基酸,维生素和辅因子以及类异戊二烯(例如质体醌,类胡萝卜素和生育酚)所需的途径。此外,我们对光呼吸,脂多糖的组装和运输以及脂质,蔗糖,大多数维生素和氨基酸以及血红素降解的理解还不完整。我们讨论了可能有助于我们了解蓝细菌代​​谢的工具,尤其是CyanoSource,这是一种靶向突变体的条形码库,它将大大加快单个蛋白质的表征。

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