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Unique glycine-activated riboswitch linked to glycine-serine auxotrophy in SAR11

机译:独特的甘氨酸激活核糖开关与SAR11中的甘氨酸丝氨酸营养缺陷有关

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摘要

The genome sequence of the marine bacterium 'Candidatus Pelagibacter ubique' and subsequent analyses have shown that while it has a genome as small as many obligate parasites, it nonetheless possesses a metabolic repertoire that allows it to grow as one of the most successful free-living cells in the ocean. An early report based on metabolic reconstruction indicated that SAR11 cells are prototrophs for all amino acids. However, here we report experimental evidence that 'Cand. P. ubique' is effectively auxotrophic for glycine and serine. With glucose and acetate added to seawater to supply organic carbon, the addition of 125 nM to 1.5 mu M glycine to growth medium containing all other nutrients in excess resulted in a linear increase in maximum cell density from 1.14 x 10(6) cells ml(-1) to 8.16 x 10(6) cells ml(-1) (R-2 = 0.992). Serine was capable of substituting for glycine at 1.5 mu M. 'Cand. P. ubique' contains a glycine-activated riboswitch preceding malate synthase, an unusual genomic context that is conserved in the SAR11 group. Malate synthase plays a critical role in central metabolism by enabling TCA intermediates to be regenerated through the glyoxylate cycle. In vitro analysis of this riboswitch indicated that it responds solely to glycine but not close structural analogues, such as glycine betaine, malate, glyoxylate, glycolate, alanine, serine or threonine. We conclude that 'Cand. P. ubique' is therefore a glycine-serine auxotroph that appears to use intracellular glycine level to regulate its use of carbon for biosynthesis and energy. Comparative genomics and metagenomics indicate that these conclusions may hold throughout much of the SAR11 clade.
机译:海洋细菌'Candidatus Pelagibacter ubique'的基因组序列和随后的分析表明,尽管其基因组的数目与许多专性寄生虫一样小,但它具有新陈代谢库,可以使其成为最成功的自由生活之一。海洋中的细胞。一份基于代谢重建的早期报道表明,SAR11细胞是所有氨基酸的原养型。但是,这里我们报告的实验证据是“ Cand。 P. ubique'对甘氨酸和丝氨酸有效地营养缺陷。将葡萄糖和乙酸盐添加到海水中以提供有机碳后,向含有所有其他营养成分过量的生长培养基中的1.5μM甘氨酸中添加125 nM甘氨酸,导致最大细胞密度从1.14 x 10(6)个细胞ml线性增加( -1)到8.16 x 10(6)个细胞ml(-1)(R-2 = 0.992)。丝氨酸能够以1.5μM的甘氨酸代替甘氨酸。 P. ubique'包含一个在苹果酸合酶之前的甘氨酸激活的核糖开关,这是一种不寻常的基因组背景,在SAR11组中得到了保守。苹果酸合酶通过使TCA中间体能够通过乙醛酸循环再生而在中枢代谢中起关键作用。对该核糖开关的体外分析表明,它仅对甘氨酸有反应,而对紧密的结构类似物无反应,例如甘氨酸甜菜碱,苹果酸,乙醛酸,乙醇酸,丙氨酸,丝氨酸或苏氨酸。我们得出的结论是“ Cand。因此,P。ubique'是一种甘氨酸-丝氨酸营养缺陷型,似乎利用细胞内甘氨酸水平来调节其碳的生物合成和能量利用。比较基因组学和宏基因组学表明,这些结论可能在整个SAR11进化枝中都适用。

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