An Arg/Lys-->Gln mutant of recombinant murine myelin basic protein as a mimic of the deiminated form implicated in

Ian R Bates1, David S Libich, D Denise Wood

  • 1Department of Molecular Biology and Genetics, and Biophysics Interdepartmental Group, University of Guelph, 50 Stone Road East, Guelph, Ont., Canada N1G 2W1.

Insights

Researchers created a modified myelin basic protein (MBP) to model citrullination, a key process in multiple sclerosis (MS). This new protein model, rmMBP-qCit(6), mimics deiminated MBP and aids in studying MS pathogenesis.

Area of Science:

  • Biochemistry
  • Neuroscience
  • Protein Engineering

Background:

  • Post-translational deimination of myelin basic protein (MBP) correlates with multiple sclerosis (MS) severity.
  • Obtaining sufficient deiminated MBP from natural sources or in vitro is challenging due to limitations in current methods.

Purpose of the Study:

  • To engineer a stable, reproducible model of deiminated MBP for studying its role in MS.
  • To create a quasi-citrullinated MBP mutant (rmMBP-qCit(6)) using glutamine as a citrulline analogue.

Main Methods:

  • Constructed a mutant recombinant murine MBP (rmMBP) replacing 6 specific arginine residues with glutamine.
  • Utilized a modified expression system for high-purity protein production, verified by electrospray ionization mass spectrometry.
  • Characterized rmMBP-qCit(6) using biochemical and biophysical techniques.

Main Results:

  • Achieved highly homogeneous rmMBP-qCit(6) preparations with minimal lysine misincorporation.
  • The mutant protein exhibited reduced lipid vesicle aggregation and increased susceptibility to cathepsin D digestion.
  • rmMBP-qCit(6) displayed altered secondary structure and conformational responses to lipids compared to unmodified rmMBP.

Conclusions:

  • The properties of rmMBP-qCit(6) are consistent with the effects of deimination on MBP.
  • This engineered protein serves as a valuable model for investigating the impact of MBP deimination in multiple sclerosis.

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