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硫酸糖酵解:硫酸奎诺糖代谢的分解代谢途径。

Sulfoglycolysis: catabolic pathways for metabolism of sulfoquinovose.

机构信息

York Structural Biology Laboratory, Department of Chemistry, University of York, Heslington, YO10 5DD, UK.

School of Chemistry, University of Melbourne, Parkville, Victoria 3010, Australia.

出版信息

Chem Soc Rev. 2021 Dec 13;50(24):13628-13645. doi: 10.1039/d1cs00846c.

Abstract

Sulfoquinovose (SQ), a derivative of glucose with a C6-sulfonate, is produced by photosynthetic organisms and is the headgroup of the sulfolipid sulfoquinovosyl diacylglycerol. The degradation of SQ allows recycling of its elemental constituents and is important in the global sulfur and carbon biogeochemical cycles. Degradation of SQ by bacteria is achieved through a range of pathways that fall into two main groups. One group involves scission of the 6-carbon skeleton of SQ into two fragments with metabolic utilization of carbons 1-3 and excretion of carbons 4-6 as dihydroxypropanesulfonate or sulfolactate that is biomineralized to sulfite/sulfate by other members of the microbial community. The other involves the complete metabolism of SQ by desulfonylation involving cleavage of the C-S bond to release sulfite and glucose, the latter of which can enter glycolysis. The discovery of sulfoglycolytic pathways has revealed a wide range of novel enzymes and SQ binding proteins. Biochemical and structural characterization of the proteins and enzymes in these pathways have illuminated how the sulfonate group is recognized by Nature's catalysts, supporting bioinformatic annotation of sulfoglycolytic enzymes, and has identified functional and structural relationships with the pathways of glycolysis.

摘要

硫酸奎诺糖(SQ)是一种带有 C6-磺酸基的葡萄糖衍生物,由光合生物产生,是硫酸脂酰二酰甘油的头基。SQ 的降解可以回收其元素成分,对全球硫和碳生物地球化学循环具有重要意义。细菌通过多种途径降解 SQ,这些途径可分为两大类。一类途径涉及 SQ 的 6 碳骨架的断裂,将其分解为两个片段,利用碳 1-3 进行代谢利用,并将碳 4-6 排泄为二羟丙基磺酸盐或磺基乳酸盐,这些盐被微生物群落中的其他成员生物矿化为亚硫酸盐/硫酸盐。另一类途径则通过脱硫作用将 SQ 完全代谢,涉及 C-S 键的断裂,释放亚硫酸盐和葡萄糖,后者可进入糖酵解途径。硫酸糖酵解途径的发现揭示了广泛的新型酶和 SQ 结合蛋白。对这些途径中的蛋白质和酶进行生化和结构特征分析,阐明了自然界催化剂如何识别硫酸盐基团,支持对硫酸糖酵解酶进行生物信息学注释,并确定了其与糖酵解途径的功能和结构关系。

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