4.5 Article

Crystal structure and catalytic activity of the PPM1K N94K mutant

Journal

JOURNAL OF NEUROCHEMISTRY
Volume 148, Issue 4, Pages 550-560

Publisher

WILEY
DOI: 10.1111/jnc.14631

Keywords

active site; crystal structure; phosphatase activity; protein phosphatase Mg2+/Mn2+-dependent 1K; single nucleotide polymorphisms; third metal ion

Funding

  1. National Natural Science Foundation of China [31470789, 31611540337, 81773704, 31471102, 31671197, 31870781, 31700692]
  2. National Science Fund for Distinguished Young Scholars [81825022]
  3. Shandong Natural Science Fund for Distinguished Young Scholars [JQ201517]
  4. Shandong Natural Science Fund [ZR2016CQ07]
  5. Key Research and Development Program of Shandong Province [2018GSF118073, 2018GSF118147]
  6. Fundamental Research Fund of Shandong University [2016JC017]
  7. China Postdoctoral Science Foundation [2015M582082]
  8. Rolling program of 'ChangJiang Scholars and Innovative Research Team in University' [IRT_17R68]

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Protein Phosphatase Mg2+/Mn2+-Dependent 1K (PPM1K),also named as PP2Cm or branched-chain alpha-ketoacid dehydrogenase complex phosphatase, is a member of the metal-dependent phosphatase family and an important metabolic regulator. Single nucleotide polymorphisms (SNPs) in PPM1K contributing to protein functional defects have been found to be associated with numerous human diseases, such as cardiovascular disease, maple syrup urine disease, type 2 diabetes, and neurological disease. PPM1K N94K is an identified missense mutant produced by one of the SNPs in the human PPM1K coding sequence. However, the effects of the N94K mutant on its activity and structural property have not been defined. Here, we performed a detailed enzymological study using steady-state kinetics in the presence of pNPP or phospho-peptide substrates and crystallographic analyses of the wild-type and N94K PPM1K. The PPM1K-N94K significantly impaired its Mg2+-dependent catalytic activity and structural analysis demonstrated that the N94K mutation induced a conformational change in the key residue in coordinating the Mg2+ in the active site. Specifically, three Mg2+ were located in the active site of the PPM1K N94K instead of two Mg2+ in the PPM1K wild type. Therefore, our results provide a structure basis for the metal ion-dependent PPM1K-N94K phosphatase activity.

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