de Duve Institute, Université Catholique de Louvain, Brussels, Belgium.
WELBIO, Brussels, Belgium.
J Bacteriol. 2019 Apr 24;201(10). doi: 10.1128/JB.00611-18. Print 2019 May 15.
The envelope of Gram-negative bacteria is a complex compartment that is essential for viability. To ensure survival of the bacterial cells in fluctuating environments, several signal transduction systems, called envelope stress response systems (ESRSs), exist to monitor envelope biogenesis and homeostasis. The Cpx two-component system is an extensively studied ESRS in that is active during exposure to a vast array of stresses and protects the envelope under those harmful circumstances. Overproduction of NlpE, a two-domain outer membrane lipoprotein of unclear function, has been used in numerous studies as a molecular trigger to turn on the system artificially. However, the mechanism of Cpx activation by NlpE, as well as its physiological relevance, awaited further investigation. In this paper, we provide novel insights into the role played by NlpE in the Cpx system. We found that, among all outer membrane lipoproteins in , NlpE is sufficient to induce Cpx when lipoprotein trafficking is perturbed. Under such conditions, fitness is increased by the presence of NlpE. Moreover, we show that NlpE, through its N-terminal domain, physically interacts with the Cpx sensor kinase CpxA. Our data suggest that NlpE also serves to activate the Cpx system during oxidative folding defects in the periplasm and that its C-terminal domain is involved in the sensing mechanism. Overall, our data demonstrate that NlpE acts as a sentinel for two important envelope biogenesis processes, namely, lipoprotein sorting and oxidative folding, and they further establish NlpE as a bona fide member of the Cpx two-component system. Bacteria rely on a sophisticated envelope to shield them against challenging environmental conditions and therefore need to ensure correct envelope assembly and integrity. A major signaling pathway that performs this role in Gram-negative species is the Cpx system. An outer membrane lipoprotein of unclear function, NlpE, has long been exploited as a research tool to study Cpx in , since it triggers this system when overproduced or mislocalized; however, the mechanism and physiological relevance of the NlpE-Cpx connection have awaited further investigation. We elucidate a new function for NlpE by showing that it physically interacts with the Cpx sensor CpxA and acts as a sentinel that specifically monitors two essential envelope biogenesis processes, namely, lipoprotein sorting and oxidative folding.
革兰氏阴性菌的包膜是一个复杂的隔室,对其生存至关重要。为了确保细菌细胞在不断变化的环境中存活,存在几种信号转导系统,称为包膜应激反应系统(ESRS),用于监测包膜生物发生和动态平衡。Cpx 双组分系统是在 中广泛研究的 ESRS,在暴露于各种压力和在这些有害情况下保护包膜时处于活跃状态。过量生产功能不明的两域外膜脂蛋白 NlpE 在许多研究中被用作人为开启系统的分子触发物。然而,NlpE 激活 Cpx 的机制及其生理相关性仍有待进一步研究。在本文中,我们提供了 NlpE 在 Cpx 系统中的作用的新见解。我们发现,在 中的所有外膜脂蛋白中,当脂蛋白运输受到干扰时,NlpE 足以诱导 Cpx。在这种情况下,NlpE 的存在会增加适应性。此外,我们表明,通过其 N 端结构域,NlpE 与 Cpx 传感器激酶 CpxA 发生物理相互作用。我们的数据表明,NlpE 还在周质中氧化折叠缺陷期间充当 Cpx 系统的激活物,并且其 C 端结构域参与感应机制。总体而言,我们的数据表明,NlpE 充当两个重要包膜生物发生过程(即脂蛋白分类和氧化折叠)的哨兵,并且它进一步将 NlpE 确立为 Cpx 双组分系统的真正成员。细菌依赖于复杂的包膜来保护它们免受挑战性的环境条件的影响,因此需要确保正确的包膜组装和完整性。在革兰氏阴性物种中执行此作用的主要信号通路是 Cpx 系统。一种功能不明的外膜脂蛋白 NlpE 长期以来一直被用作研究 中 Cpx 的研究工具,因为当过量产生或定位错误时,它会触发该系统;然而,NlpE-Cpx 连接的机制和生理相关性仍有待进一步研究。我们通过表明 NlpE 与 Cpx 传感器 CpxA 发生物理相互作用并充当专门监测两个重要包膜生物发生过程(即脂蛋白分类和氧化折叠)的哨兵,为 NlpE 确定了一个新功能。