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Essentiality of sterol synthesis genes in the planctomycete bacterium Gemmata obscuriglobus

机译:Pranctomycete细菌Gemmata Obsicuriglobus中甾醇合成基因的物质

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Sterols and hopanoids are chemically and structurally related lipids mostly found in eukaryotic and bacterial cell membranes. Few bacterial species have been reported to produce sterols and this anomaly had originally been ascribed to lateral gene transfer (LGT) from eukaryotes. In addition, the functions of sterols in these bacteria are unknown and the functional overlap between sterols and hopanoids is still unclear. Gemmata obscuriglobus is a bacterium from the Planctomycetes phylum that synthesizes sterols, in contrast to its hopanoid-producing relatives. Here we show that sterols are essential for growth of G. obscuriglobus, and that sterol depletion leads to aberrant membrane structures and defects in budding cell division. This report of sterol essentiality in a prokaryotic species advances our understanding of sterol distribution and function, and provides a foundation to pursue fundamental questions in evolutionary cell biology.
机译:甾醇和潜水蹄类化学和结构相关的脂质主要在真核和细菌细胞膜中发现。据报道,少量细菌物种生产甾醇,并且这种异常最初已经归因于来自真核生物的横向基因转移(LGT)。此外,甾醇在这些细菌中的功能未知,甾醇和潜水蛋白之间的功能重叠仍然尚不清楚。 Gemmata Obsomuriglobus是一种来自Planctomycetes Phylum的细菌,其合成甾醇,与其潜水剂的亲属相反。在这里,我们显示甾醇对G. Obsoliglobus的生长至关重要,并且甾醇耗尽导致萌芽细胞分裂中的异常膜结构和缺陷。该原核物种甾醇本质的报告推动了我们对对甾醇分配和功能的理解,并为进化细胞生物学提供了基础问题。

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