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YejM 调节 YciM/FtsH 蛋白酶复合物的活性以防止脂多糖的致命积累。

YejM Modulates Activity of the YciM/FtsH Protease Complex To Prevent Lethal Accumulation of Lipopolysaccharide.

机构信息

Department of Molecular Biology, Princeton University, Lewis Thomas Laboratory, Princeton, New Jersey, USA.

Department of Molecular Biology, Princeton University, Lewis Thomas Laboratory, Princeton, New Jersey, USA

出版信息

mBio. 2020 Apr 14;11(2):e00598-20. doi: 10.1128/mBio.00598-20.

Abstract

Lipopolysaccharide (LPS) is an essential glycolipid present in the outer membrane (OM) of many Gram-negative bacteria. Balanced biosynthesis of LPS is critical for cell viability; too little LPS weakens the OM, while too much LPS is lethal. In , this balance is maintained by the YciM/FtsH protease complex, which adjusts LPS levels by degrading the LPS biosynthesis enzyme LpxC. Here, we provide evidence that activity of the YciM/FtsH protease complex is inhibited by the essential protein YejM. Using strains in which LpxC activity is reduced, we show that is epistatic to , demonstrating that YejM acts upstream of YciM to prevent toxic overproduction of LPS. Previous studies have shown that this toxicity can be suppressed by deleting , which codes for a highly abundant OM lipoprotein. It was assumed that deletion of restores lipid balance by increasing the number of acyl chains available for glycerophospholipid biosynthesis. We show that this is not the case. Rather, our data suggest that preventing attachment of to the peptidoglycan sacculus allows excess LPS to be shed in vesicles. We propose that this loss of OM material allows continued transport of LPS to the OM, thus preventing lethal accumulation of LPS within the inner membrane. Overall, our data justify the commitment of three essential inner membrane proteins to avoid toxic over- or underproduction of LPS. Gram-negative bacteria are encapsulated by an outer membrane (OM) that is impermeable to large and hydrophobic molecules. As such, these bacteria are intrinsically resistant to several clinically relevant antibiotics. To better understand how the OM is established or maintained, we sought to clarify the function of the essential protein YejM in Here, we show that YejM inhibits activity of the YciM/FtsH protease complex, which regulates synthesis of the essential OM glycolipid lipopolysaccharide (LPS). Our data suggest that disrupting proper communication between LPS synthesis and transport to the OM leads to accumulation of LPS within the inner membrane (IM). The lethality associated with this event can be suppressed by increasing OM vesiculation. Our research has identified a completely novel signaling pathway that we propose coordinates LPS synthesis and transport.

摘要

脂多糖(LPS)是许多革兰氏阴性菌外膜(OM)中存在的必需糖脂。 LPS 的平衡生物合成对于细胞活力至关重要; LPS 太少会削弱 OM,而 LPS 过多则是致命的。在 ,这种平衡是通过 YciM/FtsH 蛋白酶复合物维持的,该复合物通过降解 LPS 生物合成酶 LpxC 来调节 LPS 水平。在这里,我们提供的证据表明,必需蛋白 YejM 抑制了 YciM/FtsH 蛋白酶复合物的活性。使用 LpxC 活性降低的菌株,我们表明 是 的上位基因,表明 YejM 作用于 YciM 的上游,以防止 LPS 的毒性过度产生。先前的研究表明,这种毒性可以通过删除 来抑制,该基因编码一种高度丰富的 OM 脂蛋白。人们认为,通过增加甘油磷脂生物合成可用的酰基链数量, 删除 可以恢复脂质平衡。我们表明事实并非如此。相反,我们的数据表明,防止 将附着到肽聚糖囊泡上,使过量的 LPS 可以在囊泡中脱落。我们提出,这种 OM 物质的损失允许 LPS 继续向 OM 转运,从而防止 LPS 在内膜中致命积累。总的来说,我们的数据证明了三种必需的内膜蛋白的投入是合理的,以避免 LPS 的毒性过度或不足产生。革兰氏阴性菌被外膜(OM)包裹,该膜对大的和疏水性分子是不可渗透的。因此,这些细菌对内源性的几种临床相关抗生素具有抗性。为了更好地了解 OM 是如何建立或维持的,我们试图澄清必需蛋白 YejM 在 中的功能。在这里,我们表明 YejM 抑制了 YciM/FtsH 蛋白酶复合物的活性,该复合物调节必需的 OM 糖脂脂多糖(LPS)的合成。我们的数据表明,破坏 LPS 合成与向 OM 转运之间的适当通讯会导致 LPS 在内膜(IM)中积累。通过增加 OM 囊泡化,可以抑制与该事件相关的致死性。我们的研究已经确定了一种全新的信号通路,我们提出该通路协调 LPS 的合成和转运。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d8c2/7157816/81ddfa390266/mBio.00598-20-f0001.jpg

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