首页> 美国卫生研究院文献>Journal of Bacteriology >Characterization of a γ-Aminobutyric Acid Transport System of Rhizobium leguminosarum bv. viciae 3841
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Characterization of a γ-Aminobutyric Acid Transport System of Rhizobium leguminosarum bv. viciae 3841

机译:豆科根瘤菌γ-氨基丁酸转运系统的表征。蚕豆3841

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摘要

Spontaneous mutants of Rhizobium leguminosarum bv. viciae 3841 were isolated that grow faster than the wild type on γ-aminobutyric acid (GABA) as the sole carbon and nitrogen source. These strains (RU1736 and RU1816) have frameshift mutations (gtsR101 and gtsR102, respectively) in a GntR-type regulator (GtsR) that result in a high rate of constitutive GABA transport. Tn5 mutagenesis and quantitative reverse transcription-PCR showed that GstR regulates expression of a large operon (pRL100242 to pRL100252) on the Sym plasmid that is required for GABA uptake. An ABC transport system, GtsABCD (for GABA transport system) (pRL100248-51), of the spermidine/putrescine family is part of this operon. GtsA is a periplasmic binding protein, GtsB and GtsC are integral membrane proteins, and GtsD is an ATP-binding subunit. Expression of gtsABCD from a lacZ promoter confirmed that it alone is responsible for high rates of GABA transport, enabling rapid growth of strain 3841 on GABA. Gts transports open-chain compounds with four or five carbon atoms with carboxyl and amino groups at, or close to, opposite termini. However, aromatic compounds with similar spacing between carboxyl and amino groups are excellent inhibitors of GABA uptake so they may also be transported. In addition to the ABC transporter, the operon contains two putative mono-oxygenases, a putative hydrolase, a putative aldehyde dehydrogenase, and a succinate semialdehyde dehydrogenase. This suggests the operon may be involved in the transport and breakdown of a more complex precursor to GABA. Gts is not expressed in pea bacteroids, and gtsB mutants are unaltered in their symbiotic phenotype, suggesting that Bra is the only GABA transport system available for amino acid cycling.
机译:豆科根瘤菌的自发突变体。分离到的蚕豆3841在γ-氨基丁酸(GABA)作为唯一的碳和氮源下,其生长速度快于野生型。这些菌株(RU1736和RU1816)在GntR型调节子(GtsR)中具有移码突变(分别为gtsR101和gtsR102),从而导致高组成型GABA转运速率。 Tn5诱变和定量逆转录PCR显示,GstR调节GABA摄取所需的Sym质粒上大操纵子(pRL100242至pRL100252)的表达。该操纵子的一部分是亚精/腐胺家族的ABC转运系统GtsABCD(用于GABA转运系统)(pRL100248-51)。 GtsA是周质结合蛋白,GtsB和GtsC是完整的膜蛋白,而GtsD是ATP结合亚基。从lacZ启动子表达gtsABCD,证实了它单独负责高速率的GABA转运,从而使菌株3841在GABA上快速生长。 Gts输送在相对末端或接近末端具有四个或五个带有羧基和氨基的碳原子的开链化合物。但是,在羧基和氨基之间具有相似间隔的芳族化合物是GABA吸收的极好抑制剂,因此它们也可以被转运。除ABC转运蛋白外,操纵子还包含两种推定的单加氧酶,推定的水解酶,推定的醛脱氢酶和琥珀酸半醛脱氢酶。这表明操纵子可能参与了更复杂的GABA前体的转运和分解。 Gts在豌豆类固醇中不表达,并且gtsB突变体的共生表型没有改变,这表明Bra是唯一可用于氨基酸循环的GABA转运系统。

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