Comprehensive Analysis of in Vivo Phosphoproteome of Mouse Liver Microsomes

Oh Kwang Kwon1, JuHee Sim1, Sun Ju Kim1

  • 1College of Pharmacy, Research Institute of Pharmaceutical Sciences, Kyungpook National University , Daegu 41566, Republic of Korea.

Insights

This study identified 699 phosphorylation sites on 527 proteins in mouse liver microsomes (MLMs), revealing novel phosphoproteins involved in RNA processing and ribosome function. These findings offer insights into protein phosphorylation

Area of Science:

  • Biochemistry
  • Molecular Biology
  • Proteomics

Background:

  • Protein phosphorylation is a crucial post-translational modification regulating cellular processes.
  • Microsomes, derived from eukaryotic cell organelles, contain proteins involved in various functions.
  • Understanding the phosphoproteome of microsomes provides insights into cellular regulation.

Purpose of the Study:

  • To comprehensively identify and characterize the phosphoproteome of mouse liver microsomes (MLMs).
  • To discover novel phosphoproteins and phosphorylation sites within MLMs.
  • To elucidate the functional roles of phosphorylated proteins in MLMs.

Main Methods:

  • Utilized TiO2 enrichment of phosphopeptides.
  • Employed on-line 2D-LC-MS/MS for phosphopeptide analysis.
  • Applied Motif-X, Gene Ontology (GO), and Kyoto Encyclopedia of Genes and Genomes (KEGG) pathway analysis.

Main Results:

  • Identified 699 phosphorylation sites on 527 proteins in MLMs.
  • Discovered 155 novel phosphoproteins compared to existing databases.
  • Phosphoproteins were predominantly involved in mRNA processing, RNA splicing, and ribosome function.
  • Identified potential substrates for cAMP-dependent protein kinase A and casein kinase II, including ribosomal proteins.

Conclusions:

  • Provides a comprehensive overview of the MLM phosphoproteome.
  • Highlights the role of protein phosphorylation in mRNA processing, RNA splicing, and translation.
  • Establishes a valuable resource for future research on protein synthesis and phosphorylation in microsomes.

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