首页> 美国卫生研究院文献>Journal of Bacteriology >Proline Betaine Uptake in Sinorhizobium meliloti: Characterization of Prb an Opp-Like ABC Transporter Regulated by both Proline Betaine and Salinity Stress
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Proline Betaine Uptake in Sinorhizobium meliloti: Characterization of Prb an Opp-Like ABC Transporter Regulated by both Proline Betaine and Salinity Stress

机译:苜蓿中华根瘤菌中脯氨酸甜菜碱的摄取:脯氨酸甜菜碱和盐度胁迫调节的Opp样ABC转运蛋白Prb的表征

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摘要

Sinorhizobium meliloti uses proline betaine (PB) as an osmoprotectant when osmotically stressed and as an energy source in low-osmolarity environments. To fulfill this dual function, two separate PB transporters, BetS and Hut, that contribute to PB uptake at high and low osmolarity, respectively, have been previously identified. Here, we characterized a novel transport system that mediates the uptake of PB at both high and low osmolarities. Sequence analysis of Tn5-luxAB chromosomal insertions from several PB-inducible mutants has revealed the presence of a four-gene locus encoding the components of an ABC transporter, Prb, which belongs to the oligopeptide permease (Opp) family. Surprisingly, prb mutants were impaired in their ability to transport PB, and oligopeptides were not shown to be competitors for PB uptake. Further analysis of Prb specificity has shown its ability to take up other quaternary ammonium compounds such as choline and, to a lesser extent, glycine betaine. Interestingly, salt stress and PB were found to control prb expression in a positive and synergistic way and to increase Prb transport activity. At low osmolarity, Prb is largely implicated in PB uptake by stationary-phase cells, likely to provide PB as a source of carbon and nitrogen. Furthermore, at high osmolarity, the analysis of prb and betS single and double mutants demonstrated that Prb, together with BetS, is a key system for protection by PB.
机译:苜蓿中华根瘤菌在渗透压下使用脯氨酸甜菜碱(PB)作为渗透保护剂,并在低渗环境中用作能源。为了实现这一双重功能,先前已经确定了两个单独的PB转运蛋白BetS和Hut,它们分别导致高渗透压和低渗透压下的PB吸收。在这里,我们表征了一种新颖的转运系统,该系统介导高渗透压和低渗透压下的PB吸收。几个PB诱导型突变体对Tn5-luxAB染色体插入的序列分析显示,存在一个编码ABC转运蛋白Prb组分的四基因位点,该蛋白属于寡肽通透酶(Opp)家族。出人意料的是,prb突变体的转运PB能力受损,并且未显示寡肽是PB吸收的竞争者。对Prb特异性的进一步分析表明,它具有吸收其他季铵化合物(如胆碱)和(较小程度地)甘氨酸甜菜碱的能力。有趣的是,发现盐胁迫和PB以积极和协同的方式控制了prb的表达并增加了Prb的转运活性。在低渗透压下,Prb很大程度上与固定相细胞对PB的吸收有关,可能提供PB作为碳和氮的来源。此外,在高渗透压下,对prb和betS单双突变体的分析表明,Prb和BetS一起是PB保护的关键系统。

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