4.6 Article

Probing DNA- and ATP-mediated Conformational Changes in the MutS Family of Mispair Recognition Proteins Using Deuterium Exchange Mass Spectrometry

Journal

JOURNAL OF BIOLOGICAL CHEMISTRY
Volume 285, Issue 17, Pages 13170-13182

Publisher

AMER SOC BIOCHEMISTRY MOLECULAR BIOLOGY INC
DOI: 10.1074/jbc.M110.108894

Keywords

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Funding

  1. National Institutes of Health [GM50006, CA92584, AI076961, AI081982, AI2008031, AI072106, AI068730, GM037684, GM020501, GM066170]
  2. Innovative Technologies for the Molecular Analysis of Cancer Program [CA099835, CA118595]
  3. University of California Industry [UC10591]
  4. BiogenIDEC corporate

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We have performed deuterium exchange mass spectrometry (DXMS) to probe the conformational changes that the bacterial MutS homodimer and the homologous eukaryotic heterodimer Msh2-Msh6 undergo when binding to ATP or DNA. The DXMS data support the view that high affinity binding to mispair-containing DNA and low affinity binding to fully base-paired DNA both involve forming rings by MutS protein family dimers around the DNA; however, mispair binding protects additional regions from deuterium exchange. DXMS also reveals two distinct conformations upon binding one or two ATP molecules and that binding of two ATP molecules propagates conformational changes to other regions of the protein complexes. The regions showing major changes in deuterium exchange upon ATP binding tend to occur in regions distinct from those involved in DNA binding, suggesting that although communication occurs between DNA and nucleotide binding, sliding clamps formed by binding both ATP and mispairs could result from the simultaneous action of two independent conformational changes.

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