Department of Pharmacology, Yale University School of Medicine, New Haven, CT, 06520, USA.
Department of Molecular Biophysics and Biochemistry, Yale University, New Haven, CT, 06520, USA.
Nat Commun. 2022 Aug 5;13(1):4576. doi: 10.1038/s41467-022-32277-1.
Lipopolysaccharide (LPS) is an essential glycolipid and forms a protective permeability barrier for most Gram-negative bacteria. In E. coli, LPS levels are under feedback control, achieved by FtsH-mediated degradation of LpxC, which catalyzes the first committed step in LPS synthesis. FtsH is a membrane-bound AAA+ protease, and its protease activity toward LpxC is regulated by essential membrane proteins LapB and YejM. However, the regulatory mechanisms are elusive. We establish an in vitro assay to analyze the kinetics of LpxC degradation and demonstrate that LapB is an adaptor protein that utilizes its transmembrane helix to interact with FtsH and its cytoplasmic domains to recruit LpxC. Our YejM/LapB complex structure reveals that YejM is an anti-adaptor protein, competing with FtsH for LapB to inhibit LpxC degradation. Structural analysis unravels that LapB and LPS have overlapping binding sites in YejM. Thus, LPS levels control formation of the YejM/LapB complex to determine LpxC protein levels.
脂多糖 (LPS) 是一种重要的糖脂,为大多数革兰氏阴性菌形成保护性渗透屏障。在大肠杆菌中,LPS 水平受到反馈控制,这是通过 FtsH 介导的 LpxC 降解来实现的,LpxC 催化 LPS 合成的第一步。FtsH 是一种膜结合的 AAA+蛋白酶,其对 LpxC 的蛋白酶活性受到必需膜蛋白 LapB 和 YejM 的调节。然而,调节机制尚不清楚。我们建立了一种体外分析方法来分析 LpxC 降解的动力学,并证明 LapB 是一种衔接蛋白,它利用其跨膜螺旋与 FtsH 及其细胞质结构域相互作用,从而募集 LpxC。我们的 YejM/LapB 复合物结构揭示了 YejM 是一种反衔接蛋白,与 FtsH 竞争 LapB 以抑制 LpxC 降解。结构分析表明,LapB 和 LPS 在 YejM 中有重叠的结合位点。因此,LPS 水平控制 YejM/LapB 复合物的形成,从而决定 LpxC 蛋白水平。