Department of Biomedical Sciences and Pathobiology, Virginia-Maryland College of Veterinary Medicine, Blacksburg, Virginia, United States of America.
Center for One Health Research, Blacksburg, Virginia, United States of America.
PLoS One. 2020 Aug 26;15(8):e0237371. doi: 10.1371/journal.pone.0237371. eCollection 2020.
The neurotransmitter gamma-aminobutyric acid (GABA) is the most abundant inhibitory neurotransmitter in the human brain; however, it is becoming more evident that this non-proteinogenic amino acid plays multiple physiological roles in biology. In the present study, the transport and function of GABA is studied in the highly infectious intracellular bacterium Brucella abortus. The data show that 3H-GABA is imported by B. abortus under nutrient limiting conditions and that the small RNAs AbcR1 and AbcR2 negatively regulate this transport. A specific transport system, gts, is responsible for the transport of GABA as determined by measuring 3H-GABA transport in isogenic deletion strains of known AbcR1/2 regulatory targets; however, this locus is unnecessary for Brucella infection in BALB/c mice. Similar assays revealed that 3H-GABA transport is uninhibited by the 20 standard proteinogenic amino acids, representing preference for the transport of 3H-GABA. Metabolic studies did not show any potential metabolic utilization of GABA by B. abortus as a carbon or nitrogen source, and RNA sequencing analysis revealed limited transcriptional differences between B. abortus 2308 with or without exposure to GABA. While this study provides evidence for GABA transport by B. abortus, questions remain as to why and when this transport is utilized during Brucella pathogenesis.
神经递质γ-氨基丁酸(GABA)是人类大脑中含量最丰富的抑制性神经递质;然而,越来越明显的是,这种非蛋白氨基酸在生物学中发挥着多种生理作用。在本研究中,研究了高度传染性的胞内细菌布鲁氏菌中 GABA 的转运和功能。数据表明,在营养限制条件下,B. abortus 可以摄取 3H-GABA,并且小 RNA AbcR1 和 AbcR2 负调控这种转运。通过测量同源缺失株中 3H-GABA 的转运,可以确定特定的转运系统 gts 负责 GABA 的转运,这些缺失株是已知 AbcR1/2 调控靶点的基因;然而,该基因座对于 BALB/c 小鼠中的布鲁氏菌感染并非必需。类似的测定表明,3H-GABA 的转运不受 20 种标准蛋白氨基酸的抑制,这表明 3H-GABA 的转运具有偏好性。代谢研究表明,B. abortus 不会将 GABA 作为碳源或氮源进行任何潜在的代谢利用,并且 RNA 测序分析显示,暴露于 GABA 前后 B. abortus 2308 之间的转录差异有限。虽然本研究为 B. abortus 中的 GABA 转运提供了证据,但仍存在一些问题,即为什么以及何时在布鲁氏菌病发病机制中利用这种转运。