Abstract

Peptidylarginine deiminase 4 (PAD4) is a homodimeric enzyme that catalyzes Ca2+-dependent protein citrullination, which results in the conversion of arginine to citrulline. This paper demonstrates the functional role of dimerization in the regulation of PAD4 activity. To address this question, we created a series of dimer interface mutants of PAD4. The residues Arg8, Tyr237, Asp273, Glu281, Tyr435, Arg544 and Asp547, which are located at the dimer interface, were mutated to disturb the dimer organization of PAD4. Sedimentation velocity experiments were performed to investigate the changes in the quaternary structures and the dissociation constants (K d) between wild-type and mutant PAD4 monomers and dimers. The kinetic data indicated that disrupting the dimer interface of the enzyme decreases its enzymatic activity and calcium-binding cooperativity. The K d values of some PAD4 mutants were much higher than that of the wild-type (WT) protein (0.45 µM) and were concomitant with lower k cat values than that of WT (13.4 s−1). The K d values of the monomeric PAD4 mutants ranged from 16.8 to 45.6 µM, and the k cat values of the monomeric mutants ranged from 3.3 to 7.3 s−1. The k cat values of these interface mutants decreased as the K d values increased, which suggests that the dissociation of dimers to monomers considerably influences the activity of the enzyme. Although dissociation of the enzyme reduces the activity of the enzyme, monomeric PAD4 is still active but does not display cooperative calcium binding. The ionic interaction between Arg8 and Asp547 and the Tyr435-mediated hydrophobic interaction are determinants of PAD4 dimer formation.

Highlights

  • Peptidylarginine deiminase (PAD; protein-arginine deiminase; EC 3.5.3.15) is a Ca2+-dependent enzyme that catalyzes protein citrullination in the presence of Ca2+

  • The double mutants Y237A/E281A and D273A/R544A dimerized and had Kd values of 0.1 mM and 0.68 mM, respectively (Figure 2, D and E), which suggests that the salt bridge between Asp273 and Arg544 and the Tyr237 and Glu281-mediated hydrogen-bonding network are insignificant for peptidylarginine deiminase 4 (PAD4) dimer formation

  • In summary, we suggest that the dimerization of PAD4 is essential for full enzyme activity and calcium-binding cooperativity

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Summary

Introduction

Peptidylarginine deiminase (PAD; protein-arginine deiminase; EC 3.5.3.15) is a Ca2+-dependent enzyme that catalyzes protein citrullination (deimination) in the presence of Ca2+. PAD6 has been identified in embryonic stem cells and oocytes [3,17,18,19,20,21]. Histones and nucleophosmin/B23, which are citrullinated by PAD4, may be associated with apoptosis [24]. Some studies have shown that citrullination correlates with specific biological events, such as inflammation, apoptosis, trauma, aging and histone-related gene expression and regulation [10,11,25,26]; little is known about the physiological roles of PAD4 and other PAD isoforms in vivo

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