Program in Applied Biological Sciences, Chulabhorn Graduate Institute, Bangkok, Thailand.
Laboratory of Biotechnology, Chulabhorn Research Institute, Bangkok, Thailand.
Sci Rep. 2024 Nov 3;14(1):26484. doi: 10.1038/s41598-024-78296-4.
Ribosomal RNA (rRNA) modifications are involved in multiple biological processes. KsgA is a 16S rRNA adenine dimethyltransferase that methylates at the adenines 1518 and 1519 (A1518/1519) positions, which are located near the ribosome decoding center. These methylations are conserved and important for ribosome biogenesis and protein translation. In this study, we demonstrated the absence of A1518/1519 methylation in the 16S rRNA of a Pseudomonas aeruginosa ksgA mutant. Biolog phenotypic microarrays were used to screen the phenotypes of the ksgA mutant against various antimicrobial agents. The loss of ksgA led to increased sensitivity to menadione, a superoxide generator, which was, at least in part, attributed to decreased in a superoxide dismutase (SOD) activity. Interestingly, the decrease in SOD activity in the ksgA mutant was linked to a decrease in the SodM protein levels, but not the sodM mRNA levels. Furthermore, the ksgA mutant strain exhibited sensitivity to hygromycin B and tylosin antibiotics. The tylosin-sensitive phenotype was correlated with decreased transcriptional levels of tufA, tufB, and tsf, which encode elongation factors. Additionally, the ksgA mutant showed resistance to kasugamycin. Collectively, these findings highlight the role of KsgA in oxidative stress responses and antibiotic sensitivity in P. aeruginosa.
核糖体 RNA(rRNA)修饰参与多种生物过程。KsgA 是一种 16S rRNA 腺嘌呤二甲基转移酶,可使位于核糖体解码中心附近的腺嘌呤 1518 和 1519(A1518/1519)位置发生甲基化。这些甲基化是保守的,对于核糖体生物发生和蛋白质翻译至关重要。在这项研究中,我们证明了铜绿假单胞菌 ksgA 突变体 16S rRNA 中不存在 A1518/1519 甲基化。生物表型微阵列用于筛选 ksgA 突变体对各种抗菌剂的表型。ksgA 的缺失导致对甲萘醌(一种超氧化物生成剂)的敏感性增加,至少部分归因于超氧化物歧化酶(SOD)活性降低。有趣的是,ksgA 突变体中 SOD 活性的降低与 SodM 蛋白水平的降低有关,但与 sodM mRNA 水平无关。此外,ksgA 突变株对潮霉素 B 和泰乐菌素抗生素敏感。泰乐菌素敏感表型与编码延伸因子的 tufA、tufB 和 tsf 的转录水平降低有关。此外,ksgA 突变体对 kasugamycin 表现出抗性。总的来说,这些发现强调了 KsgA 在铜绿假单胞菌的氧化应激反应和抗生素敏感性中的作用。