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Identification of an osmo-dependent and an osmo-independent choline transporter in Acinetobacter baylyi: implications in osmostress protection and metabolic adaptation

机译:湾不动杆菌中一种依赖于渗透和不依赖于渗透的胆碱转运蛋白的鉴定:对渗透压保护和代谢适应的影响

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摘要

Members of the genus Acinetobacter are well known for their metabolic versatility that allows them to adapt to different ecological niches. In previous studies, we have demonstrated that Acinetobacter baylyi ADP1 can cope with high salinities by uptake and accumulation of the well-known compatible solute glycine betaine. Here, we demonstrate that addition of choline restores growth at high salinities.We further show that choline was actively taken up by the cells and converted to glycine betaine. Uptake of choline was induced by high salinity and the presence of choline in the growth medium. At high salinities, glycine betaine was accumulated in the cells whereas in the absence of osmotic stress it was exported. Inspection of the genome sequence followed by mutant studies led to the identification of two genes encoding secondary transporters (BetT1 and BetT2) of the betaine-cholinecarnitine transporter (BCCT) family. The BetT1 transporter lacks an extended C-terminal domain usually found in osmoregulated choline BCCTs. BetT1 was found to facilitate osmolarity-independent choline transport most likely by a uniport mechanism. We propose that BetT1 does not primarily function in osmoadaptation but might play a role in metabolic adaptation to choline-rich environments.
机译:不动杆菌属的成员以其新陈代谢的多功能性而闻名,这使他们能够适应不同的生态位。在以前的研究中,我们已经证明,不动杆菌ADP1可以通过吸收和积累众所周知的相容性溶质甘氨酸甜菜碱来应对高盐度。在这里,我们证明了胆碱的添加在高​​盐度下恢复了生长。我们进一步表明胆碱被细胞积极吸收并转化为甘氨酸甜菜碱。高盐度和生长培养基中存在胆碱可诱导胆碱摄取。在高盐度下,甘氨酸甜菜碱在细胞中积累,而在没有渗透胁迫的情况下,它被输出。检查基因组序列,然后进行突变研究,导致鉴定出编码甜菜碱-胆碱肉碱转运蛋白(BCCT)家族的二级转运蛋白(BetT1和BetT2)的两个基因。 BetT1转运蛋白缺乏通常在渗透压胆碱BCCT中发现的延伸的C末端结构域。发现BetT1最有可能通过单端口机制促进与渗透压无关的胆碱运输。我们提出,BetT1并不主要在渗透适应中起作用,但可能在对胆碱丰富的环境的代谢适应中发挥作用。

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