Department of Infectious Diseases, College of Veterinary Medicine, University of Georgia, Athens, Georgia, USA.
Department of Infectious Diseases, College of Veterinary Medicine, University of Georgia, Athens, Georgia, USA
mBio. 2019 Jun 25;10(3):e01302-19. doi: 10.1128/mBio.01302-19.
Outer membrane biogenesis is a complex process for Gram-negative bacteria as the components are synthesized in the cytoplasm or at the inner membrane and then transported to the outer membrane. Stress pathways monitor and respond to problems encountered in assembling the outer membrane. The two-component system CpxAR was recently reported to be a stress pathway for transport of lipoproteins to the outer membrane, but it was unclear how this stress is sensed. May et al. [K. L. May, K. M. Lehman, A. M. Mitchell, and M. Grabowicz, mBio 10(3):e00618-19, 2019, https://doi.org/10.1128/mBio.00618-19] determined that an outer membrane lipoprotein, NlpE, is the sensor for lipoprotein biogenesis stress. The group demonstrated that CpxAR is activated by the N-terminal domain of NlpE when the lipoprotein accumulates at the inner membrane. Further, this work resolved a previously debated role for NlpE in sensing copper stress; copper was shown to inhibit acylation of lipoproteins, preventing them from being transported to the outer membrane.
外膜生物发生对于革兰氏阴性细菌来说是一个复杂的过程,因为这些成分是在细胞质中或内膜上合成的,然后被转运到外膜上。应激途径监测并响应在外膜组装过程中遇到的问题。最近有报道称,双组分系统 CpxAR 是一种用于将脂蛋白转运到外膜的应激途径,但尚不清楚这种应激是如何被感知的。May 等人[K. L. May, K. M. Lehman, A. M. Mitchell, and M. Grabowicz, mBio 10(3):e00618-19, 2019, https://doi.org/10.1128/mBio.00618-19]确定,一种外膜脂蛋白 NlpE 是脂蛋白生物发生应激的传感器。该小组表明,当脂蛋白在内膜积累时,CpxAR 被 NlpE 的 N 端结构域激活。此外,这项工作解决了之前关于 NlpE 在感应铜应激中作用的争议;铜被证明抑制了脂蛋白的酰化,从而阻止它们被转运到外膜。