Centre of Molecular and Environmental Biology (CBMA), Department of Biology, University of Minho, Campus de Gualtar, Braga, 4710-057, Portugal.
Biochem J. 2013 Sep 15;454(3):585-95. doi: 10.1042/BJ20130412.
In the present paper we describe a new carboxylic acid transporter in Escherichia coli encoded by the gene yaaH. In contrast to what had been described for other YaaH family members, the E. coli transporter is highly specific for acetic acid (a monocarboxylate) and for succinic acid (a dicarboxylate), with affinity constants at pH 6.0 of 1.24±0.13 mM for acetic acid and 1.18±0.10 mM for succinic acid. In glucose-grown cells the ΔyaaH mutant is compromised for the uptake of both labelled acetic and succinic acids. YaaH, together with ActP, described previously as an acetate transporter, affect the use of acetic acid as sole carbon and energy source. Both genes have to be deleted simultaneously to abolish acetate transport. The uptake of acetate and succinate was restored when yaaH was expressed in trans in ΔyaaH ΔactP cells. We also demonstrate the critical role of YaaH amino acid residues Leu¹³¹ and Ala¹⁶⁴ on the enhanced ability to transport lactate. Owing to its functional role in acetate and succinate uptake we propose its assignment as SatP: the Succinate-Acetate Transporter Protein.
在本研究中,我们描述了大肠杆菌中由基因 yaaH 编码的一种新型羧酸转运蛋白。与其他 YaaH 家族成员的描述不同,大肠杆菌转运蛋白对乙酸(一种一羧酸)和琥珀酸(一种二羧酸)具有高度特异性,在 pH 6.0 时,对乙酸的亲和常数为 1.24±0.13 mM,对琥珀酸的亲和常数为 1.18±0.10 mM。在葡萄糖生长的细胞中,ΔyaaH 突变体在摄取标记的乙酸和琥珀酸方面受到影响。YaaH 与之前被描述为乙酸转运蛋白的 ActP 一起,影响了乙酸作为唯一碳源和能源的利用。要消除乙酸转运,这两个基因都必须同时缺失。当 yaaH 在 ΔyaaH ΔactP 细胞中转录表达时,乙酸和琥珀酸盐的摄取得到恢复。我们还证明了 YaaH 氨基酸残基 Leu¹³¹ 和 Ala¹⁶⁴ 在增强乳酸运输能力方面的关键作用。由于其在乙酸和琥珀酸摄取中的功能作用,我们建议将其指定为 SatP:即琥珀酸-乙酸转运蛋白。