AI Article Synopsis

  • The Rcs system in enterobacteria monitors the integrity of the cell envelope and initiates a stress response when damage occurs.
  • Rcs operates through a complex two-component system involving proteins RcsF and IgaA, which are essential for its normal functioning.
  • The study demonstrates that IgaA plays a crucial role in transferring stress signals from the cell envelope to the cytoplasm, highlighting a unique aspect of Rcs compared to other stress response systems.

Article Abstract

In enterobacteria, the Rcs system (Regulator of capsule synthesis) monitors envelope integrity and induces a stress response when damages occur in the outer membrane or in the peptidoglycan layer. Built around a two-component system, Rcs controls gene expression via a cascade of phosphoryl transfer reactions. Being particularly complex, Rcs also involves the outer membrane lipoprotein RcsF and the inner membrane essential protein IgaA (Intracellular growth attenuator). RcsF and IgaA, which are located upstream of the phosphorelay, are required for normal Rcs functioning. Here, we establish the stress-dependent formation of a complex between RcsF and the periplasmic domain of IgaA as the molecular signal triggering Rcs. Moreover, molecular dissection of IgaA reveals that its negative regulatory role on Rcs is mostly carried by its first N-terminal cytoplasmic domain. Altogether, our results support a model in which IgaA regulates Rcs activation by playing a direct role in the transfer of signals from the cell envelope to the cytoplasm. This remarkable feature further distinguishes Rcs from other envelope stress response systems.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5978795PMC
http://dx.doi.org/10.1371/journal.pgen.1007398DOI Listing

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