Laboratory of Animal Microbiology, Department of Microbial Biotechnology, Graduate School of Agricultural Science, Tohoku University, 468-1 Aramaki Aza Aoba, Aoba-ku, Sendai, Miyagi, 980-8572, Japan.
Microbiology (Reading). 2022 Mar;168(3). doi: 10.1099/mic.0.001147.
AlaE is the smallest amino acid exporter identified in . It exports l-alanine using the proton motive force and plays a pivotal role in maintaining intracellular l-alanine homeostasis by acting as a safety valve. However, our understanding of the molecular mechanisms of substrate export by AlaE is still limited because structural information is lacking. Due to its small size (149 amino acid residues), it has been speculated that AlaE functions by forming an oligomer. In this study, we performed chemical cross-linking and pull-down assays and showed that AlaE indeed generates homo-oligomers as a functional unit. Previous random mutagenesis experiments identified three loss-of-function AlaE point mutations in the predicted transmembrane helix 4 (TM4) region, two of which are present in the GxxxG motif. When alanine-scanning mutagenesis was applied to the TM4 region, the AlaE derivatives that had amino acid substitutions around the GxxxG motif showed low l-alanine export activities, indicating that the GxxxG motif in TM4 plays an important role in substrate export. However, these AlaE variants with low activity could still form oligomers. We therefore concluded that AlaE forms homo-oligomers and that the GxxxG motif in the TM4 region plays an essential role in AlaE activity but is not involved in AlaE oligomer formation.
AlaE 是在 中鉴定出的最小的氨基酸外排体。它利用质子动力势将 l-丙氨酸输出,并通过充当安全阀在维持细胞内 l-丙氨酸动态平衡方面发挥关键作用。然而,由于缺乏结构信息,我们对 AlaE 底物输出的分子机制的理解仍然有限。由于其体积小(149 个氨基酸残基),因此有人推测 AlaE 通过形成寡聚体发挥作用。在这项研究中,我们进行了化学交联和下拉测定实验,结果表明 AlaE 确实作为功能单元生成同源寡聚体。先前的随机诱变实验在预测的跨膜螺旋 4(TM4)区域中鉴定出三个丧失功能的 AlaE 点突变,其中两个存在于 GxxxG 基序中。当将丙氨酸扫描诱变应用于 TM4 区域时,在 GxxxG 基序周围具有氨基酸取代的 AlaE 衍生物表现出低的 l-丙氨酸外排活性,表明 TM4 中的 GxxxG 基序在底物输出中起重要作用。然而,这些活性较低的 AlaE 变体仍能形成寡聚体。因此,我们得出结论,AlaE 形成同源寡聚体,并且 TM4 区域中的 GxxxG 基序在 AlaE 活性中起关键作用,但不参与 AlaE 寡聚体形成。