Related Experiment Videos

Asparaginyl deamidation-methylation of rat ventricular myosin light chains

E M Cassidy1, B T Wakim, A G Ferguson

  • 1Department of Medicine, Loyola University Stritch School of Medicine, Maywood, IL 60153.

Insights

Spontaneous deamidation damages cytoskeletal proteins like myosin light chains. Protein carboxyl methyltransferase (PCMT) may repair or degrade these damaged proteins.

Area of Science:

  • Biochemistry
  • Molecular Biology
  • Protein Chemistry

Background:

  • Spontaneous asparaginyl deamidation damages cytoskeletal proteins.
  • This damage can lead to protein breakdown or repair.
  • Myofibrillar proteins are essential structural components of muscle.

Purpose of the Study:

  • To investigate if myofibrillar proteins undergo spontaneous deamidation damage in vitro.
  • To determine if protein carboxyl methyltransferase (PCMT) acts on these damaged proteins.

Main Methods:

  • Purified rat ventricular myosin light chains (MLC1v, MPLC2v) were incubated under various pH conditions.
  • Incubated proteins were tested as substrates for PCMT using [3H-methyl] S-adenosyl methionine.
  • 3H-incorporation was analyzed using SDS-PAGE and fluorography.
  • Methylated peptides were sequenced via HPLC and Edman degradation.

Main Results:

  • MLC1v and MPLC2v showed significant damage at neutral and alkaline pH.
  • PCMT incorporated 3H-label into both light chains and a 14 kDa polypeptide.
  • Sequencing identified deamidation sites in MPLC2v (Asn99-Ala100) and MLC1v (Asn108-Ser109).

Conclusions:

  • Myofibrillar proteins undergo selective non-enzymatic deamidation at neutral/alkaline pH.
  • This deamidation creates methyl acceptor sites for PCMT.
  • PCMT-mediated methylation may be crucial for repairing or degrading ventricular myosin light chains.

Related Concept Videos