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Allosteric histidine switch for regulation of intracellular zinc(II) fluctuation.

Rongfeng ZhuYanqun SongHaiping LiuYufei YangShenlin WangChengqi YiPeng R Chen
Published in: Proceedings of the National Academy of Sciences of the United States of America (2017)
Metalloregulators allosterically control transcriptional activity through metal binding-induced reorganization of ligand residues and/or hydrogen bonding networks, while the coordination atoms on the same ligand residues remain seldom changed. Here we show that the MarR-type zinc transcriptional regulator ZitR switches one of its histidine nitrogen atoms for zinc coordination during the allosteric control of DNA binding. The Zn(II)-coordination nitrogen on histidine 42 within ZitR's high-affinity zinc site (site 1) switches from Nε2 to Nδ1 upon Zn(II) binding to its low-affinity zinc site (site 2), which facilitates ZitR's conversion from the nonoptimal to the optimal DNA-binding conformation. This histidine switch-mediated cooperation between site 1 and site 2 enables ZitR to adjust its DNA-binding affinity in response to a broad range of zinc fluctuation, which may allow the fine tuning of transcriptional regulation.
Keyphrases
  • dna binding
  • transcription factor
  • oxide nanoparticles
  • gene expression
  • heavy metals
  • oxidative stress
  • reactive oxygen species
  • air pollution
  • mass spectrometry
  • diabetic rats