4.4 Article

Molecular basis for the recognition of cyclic-di-AMP by PstA, a PII-like signal transduction protein

期刊

MICROBIOLOGYOPEN
卷 4, 期 3, 页码 361-374

出版社

WILEY
DOI: 10.1002/mbo3.243

关键词

Crystal structure; cyclic-di-AMP; Firmicutes; Listeria monocytogenes; P-II-like protein; signal transduction

资金

  1. National Institutes of Health (NIH) [R56AI108698, R01DK067238]
  2. NIH [S10OD012018]
  3. NIH Medical Scientist Training Program [GM007367]

向作者/读者索取更多资源

Cyclic-di-AMP (c-di-AMP) is a broadly conserved bacterial second messenger that is of importance in bacterial physiology. The molecular receptors mediating the cellular responses to the c-di-AMP signal are just beginning to be discovered. PstA is a previously uncharacterized P-II-like protein which has been identified as a c-di-AMP receptor. PstA is widely distributed and conserved among Gram-positive bacteria in the phylum Firmicutes. Here, we report the biochemical, structural, and functional characterization of PstA from Listeria monocytogenes. We have determined the crystal structures of PstA in the c-di-AMP-bound and apo forms at 1.6 and 2.9 angstrom resolution, respectively, which provide the molecular basis for its specific recognition of c-di-AMP. PstA forms a homotrimer structure that has overall similarity to the P-II protein family which binds ATP. However, PstA is markedly different from P-II proteins in the loop regions, and these structural differences mediate the specific recognition of their respective nucleotide ligand. The residues composing the c-di-AMP binding pocket are conserved, suggesting that c-di-AMP recognition by PstA is of functional importance. Disruption of pstA in L. monocytogenes affected c-di-AMP-mediated alterations in bacterial growth and lysis. Overall, we have defined the PstA family as a conserved and specific c-di-AMP receptor in bacteria.

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