Department of Cell Physiology and Molecular Biophysics, Center for Membrane Protein Research, School of Medicine, Texas Tech University Health Sciences Center, Lubbock, TX 79430, USA.
Laboratory of Animal Microbiology, Department of Animal Science, Graduate School of Agricultural Science, Tohoku University, 468-1, Aramaki Aza Aoba, Aoba-ku, Sendai 980-0845, Japan.
Int J Mol Sci. 2023 Jun 16;24(12):10242. doi: 10.3390/ijms241210242.
d-amino acids have recently been found to be present in the extracellular milieu at millimolar levels and are therefore assumed to play a physiological function. However, the pathway (or potential pathways) by which these d-amino acids are secreted remains unknown. Recently, has been found to possess one or more energy-dependent d-alanine export systems. To gain insight into these systems, we developed a novel screening system in which cells expressing a putative d-alanine exporter could support the growth of d-alanine auxotrophs in the presence of l-alanyl-l-alanine. In the initial screening, five d-alanine exporter candidates, AlaE, YmcD, YciC, YraM, and YidH, were identified. Transport assays of radiolabeled d-alanine in cells expressing these candidates indicated that YciC and AlaE resulted in lower intracellular levels of d-alanine. Further detailed transport assays of AlaE in intact cells showed that it exports d-alanine in an expression-dependent manner. In addition, the growth constraints on cells in the presence of 90 mM d-alanine were mitigated by the overexpression of AlaE, implying that AlaE could export free d-alanine in addition to l-alanine under conditions in which intracellular d/l-alanine levels are raised. This study also shows, for the first time, that YciC could function as a d-alanine exporter in intact cells.
d-氨基酸最近在细胞外环境中以毫摩尔水平被发现存在,因此被认为具有生理功能。然而,这些 d-氨基酸分泌的途径(或潜在途径)仍然未知。最近,已经发现 具有一个或多个依赖能量的 d-丙氨酸输出系统。为了深入了解这些系统,我们开发了一种新的筛选系统,其中表达假定的 d-丙氨酸外排蛋白的细胞可以在 l-丙氨酰-l-丙氨酸存在的情况下支持 d-丙氨酸营养缺陷型的生长。在初步筛选中,鉴定出了五个 d-丙氨酸外排蛋白候选物,AlaE、YmcD、YciC、YraM 和 YidH。在表达这些候选物的细胞中进行放射性标记的 d-丙氨酸转运测定表明,YciC 和 AlaE 导致细胞内 d-丙氨酸水平降低。在完整细胞中对 AlaE 的详细转运测定表明,它以表达依赖性方式输出 d-丙氨酸。此外,在 90mM d-丙氨酸存在的情况下,通过过表达 AlaE 减轻了细胞的生长限制,这意味着 AlaE 可以在细胞内 d/l-丙氨酸水平升高的情况下,除了 l-丙氨酸之外,还可以输出游离的 d-丙氨酸。本研究还首次表明,YciC 可以在完整细胞中作为 d-丙氨酸外排蛋白发挥作用。