Department of Biotechnology and Laboratory Science in Medicine, National Yang Ming Chiao Tung University, Taipei, Taiwan.
Department of Pathology and Laboratory Medicine, Taipei Veterans General Hospital, Taipei, Taiwan.
Microbiol Spectr. 2023 Aug 17;11(4):e0108023. doi: 10.1128/spectrum.01080-23. Epub 2023 Jun 7.
Outer membrane protein A (OmpA) is the most abundant porin in bacterial outer membranes. KJΔOmpA, an C-terminal in-frame deletion mutant of Stenotrophomonas maltophilia KJ, exhibits pleiotropic defects, including decreased tolerance to menadione (MD)-mediated oxidative stress. Here, we elucidated the underlying mechanism of the decreased MD tolerance mediated by Δ. The transcriptomes of wild-type S. maltophilia and the KJΔOmpA mutant strain were compared, focusing on 27 genes known to be associated with oxidative stress alleviation; however, no significant differences were identified. was the most downregulated gene in KJΔOmpA. KJΔOmpA complementation with the chromosomally integrated gene restored MD tolerance to the wild-type level, indicating the role of OmpO in MD tolerance. To further clarify the possible regulatory circuit involved in defects and downregulation, σ factor expression levels were examined based on the transcriptome results. The expression levels of three σ factors were significantly different (downregulated levels of and upregulated levels of and ) in KJΔOmpA. Next, the involvement of the three σ factors in the Δ-mediated decrease in MD tolerance was evaluated using mutant strains and complementation assays. downregulation and upregulation contributed to the Δ-mediated decrease in MD tolerance. OmpA C-terminal domain loss induced an envelope stress response. Activated σ decreased and expression levels, in turn decreasing swimming motility and oxidative stress tolerance. Finally, we revealed both the Δ-- regulatory circuit and - cross regulation. The cell envelope is a morphological hallmark of Gram-negative bacteria. It consists of an inner membrane, a peptidoglycan layer, and an outer membrane. OmpA, an outer membrane protein, is characterized by an N-terminal β-barrel domain that is embedded in the outer membrane and a C-terminal globular domain that is suspended in the periplasmic space and connected to the peptidoglycan layer. OmpA is crucial for the maintenance of envelope integrity. Stress resulting from the destruction of envelope integrity is sensed by extracytoplasmic function (ECF) σ factors, which induce responses to various stressors. In this study, we revealed that loss of the OmpA-peptidoglycan (PG) interaction causes peptidoglycan and envelope stress while simultaneously upregulating σ and σ expression levels. The outcomes of σ and σ activation are different and are linked to β-lactam and oxidative stress tolerance, respectively. These findings establish that outer membrane proteins (OMPs) play a critical role in envelope integrity and stress tolerance.
外膜蛋白 A (OmpA) 是细菌外膜中最丰富的孔蛋白。嗜麦芽寡养单胞菌 KJ 的 C 端框内缺失突变体 KJΔOmpA 表现出多种缺陷,包括对亚甲二氢醌 (MD) 介导的氧化应激的耐受性降低。在这里,我们阐明了由 Δ 介导的 MD 耐受性降低的潜在机制。比较了野生型嗜麦芽寡养单胞菌 S. maltophilia 和 KJΔOmpA 突变株的转录组,重点关注与减轻氧化应激相关的 27 个已知基因;然而,没有发现显著差异。是 KJΔOmpA 中下调最明显的基因。用染色体整合的 基因对 KJΔOmpA 进行互补,使 MD 耐受性恢复到野生型水平,表明 OmpO 在 MD 耐受性中起作用。为了进一步阐明与 OmpA 缺失和 下调相关的可能调控回路,根据转录组结果检查了 σ 因子的表达水平。在 KJΔOmpA 中,三个 σ 因子的表达水平有显著差异(和下调水平和上调水平)。接下来,使用突变株和互补测定法评估了三个 σ 因子在 Δ 介导的 MD 耐受性降低中的作用。下调和上调导致 Δ 介导的 MD 耐受性降低。OmpA C 端结构域的丢失诱导了包膜应激反应。激活的 σ 降低了 和 的表达水平,进而降低了泳动性和氧化应激耐受性。最后,我们揭示了 Δ--调控回路和 - 交叉调控。细胞包膜是革兰氏阴性菌的形态学标志。它由内膜、肽聚糖层和外膜组成。OmpA,一种外膜蛋白,其特征是 N 端 β-桶结构域嵌入外膜和 C 端球状结构域悬挂在周质空间并连接到肽聚糖层。OmpA 对于维持包膜完整性至关重要。由于包膜完整性被破坏而产生的应激由细胞外功能 (ECF) σ 因子感知,这些因子诱导对各种应激源的反应。在这项研究中,我们揭示了 OmpA-肽聚糖 (PG) 相互作用的丧失导致 PG 和包膜应激,同时上调 σ 和 σ 表达水平。σ 和 σ 激活的结果是不同的,分别与β-内酰胺和氧化应激耐受性相关。这些发现表明,外膜蛋白 (OMPs) 在包膜完整性和应激耐受性中起关键作用。