Department of Molecular Biology, Princeton University, Princeton, New Jersey, USA.
J Bacteriol. 2013 Mar;195(6):1327-34. doi: 10.1128/JB.02142-12. Epub 2013 Jan 11.
Lipopolysaccharide (LPS) is the major outer leaflet constituent of the Gram-negative outer membrane (OM) bilayer. A bipartite protein complex of LptD and LptE assembles LPS into the OM. It has been established that LptE assists folding and assembly of its β-barrel partner LptD, yet reported biochemical evidence suggested additional LptE functions. Here, we isolated dominant negative lptE mutations, seeking to inform these functions. The lptE14 mutation increased OM permeability to erythromycin, even when the wild-type lptE gene was present. We show that the lptE14 mutation does not cause a defect in either LptD assembly or LPS export. A spontaneous IS1 insertion in secA suppressed lptE14 erythromycin sensitivity by removing the C-terminal SecB-binding domain of SecA. While this suppressor mutation broadly impeded SecB-dependent secretion of preproteins, we show that suppression was a direct and specific consequence of reduced LptD levels in the OM. We suggest that lptE14 causes poor plugging of the LptD β barrel and that a reduction of ineffectively plugged LptD-LptE14 complexes in the OM decreases permeability to erythromycin. Hence, lptE14 supports a proposed plug-and-barrel LptE-LptD arrangement.
脂多糖 (LPS) 是革兰氏阴性外膜 (OM) 双层的主要外叶成分。LptD 和 LptE 的二部分蛋白复合物将 LPS 组装到 OM 中。已经确定 LptE 协助其β桶伴侣 LptD 的折叠和组装,但报道的生化证据表明 LptE 具有其他功能。在这里,我们分离了显性负性 lptE 突变体,试图阐明这些功能。lptE14 突变使 OM 对红霉素的通透性增加,即使存在野生型 lptE 基因也是如此。我们表明,lptE14 突变不会导致 LptD 组装或 LPS 出口缺陷。secA 中的自发 IS1 插入通过去除 SecA 的 C 末端 SecB 结合结构域来抑制 lptE14 红霉素敏感性。虽然这种抑制突变广泛阻碍了 SecB 依赖性前蛋白的分泌,但我们表明抑制作用是 OM 中 LptD 水平降低的直接和特定结果。我们认为 lptE14 导致 LptD β 桶的堵塞不良,并且 OM 中无效堵塞的 LptD-LptE14 复合物的减少降低了对红霉素的通透性。因此,lptE14 支持拟议的插件和桶 LptE-LptD 排列。