4.4 Article

A Transient Kinetic Analysis of PRMT1 Catalysis

Journal

BIOCHEMISTRY
Volume 50, Issue 32, Pages 7033-7044

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/bi200456u

Keywords

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Funding

  1. AHA
  2. NIH [GM086717, GRM068626]
  3. Molecular Basis of Disease Fellowship at Georgia State University
  4. National Cancer Institute

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Post-translational modifications (PTMs) are important strategies used by eukaryotic organisms to modulate their phenotypes. One of the well-studied PTMs, arginine methylation, is catalyzed by protein arginine methyltransferases (PRMTs) with SAM as the methyl donor. The functions of PRMTs have been broadly studied in different biological processes and diseased states, but the molecular basis for arginine methylation is not well-defined. In this study, we report the transient-state kinetic analysis of PRMTI catalysis. The fast association and dissociation rates suggest that PRMTI catalysis of histone methylation follows a rapid equilibrium sequential kinetic mechanism. The data give direct evidence that the chemistry of methyl transfer is the major rate-limiting step and that binding of the cofactor SAM or SAH affects the association and dissociation of H4 with PRMTI. Importantly, from the stopped-flow fluorescence measurements, we have identified a critical kinetic step suggesting a precatalytic conformational transition induced by substrate binding. These results provide new insights into the mechanism of arginine methylation and the rational design of PRMT inhibitors.

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