4.8 Article

Nucleotide binding by the widespread high-affinity cyclic di-GMP receptor MshEN domain

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NATURE COMMUNICATIONS
卷 7, 期 -, 页码 -

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NATURE PUBLISHING GROUP
DOI: 10.1038/ncomms12481

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  1. Ministry of Education, Taiwan, ROC under the ATU plan
  2. Ministry of Science and Technology, Taiwan, ROC [102-2113-M-005 -006 -MY3]
  3. NIH [RO1 AI102584]
  4. NIH Intramural Research Program at the US National Library of Medicine

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C-di-GMP is a bacterial second messenger regulating various cellular functions. Many bacteria contain c-di-GMP-metabolizing enzymes but lack known c-di-GMP receptors. Recently, two MshE-type ATPases associated with bacterial type II secretion system and type IV pilus formation were shown to specifically bind c-di-GMP. Here we report crystal structure of the MshE N-terminal domain (MshEN(1-145)) from Vibrio cholerae in complex with c-di-GMP at a 1.37 resolution. This structure reveals a unique c-di-GMP-binding mode, featuring a tandem array of two highly conserved binding motifs, each comprising a 24-residue sequence RLGxx(L/V/I)(L/V/I)xxG(L/V/I)(L/V/I)xxxxLxxxLxxQ that binds half of the c-di-GMP molecule, primarily through hydrophobic interactions. Mutating these highly conserved residues markedly reduces c-di-GMP binding and biofilm formation by V. cholerae. This c-di-GMP-binding motif is present in diverse bacterial proteins exhibiting binding affinities ranging from 0.5 mu M to as low as 14 nM. The MshEN domain contains the longest nucleotide-binding motif reported to date.

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