Isolation of animal cell mutants deficient in plasmalogen biosynthesis and peroxisome assembly

Insights

Researchers identified Chinese hamster ovary cell mutants lacking dihydroxyacetonephosphate (DHAP) acyltransferase, crucial for peroxisome function and plasmalogen synthesis. These mutants reveal peroxisomes are essential for plasmalogen biosynthesis.

Area of Science:

  • Cell Biology
  • Biochemistry
  • Genetics

Background:

  • Peroxisomes play vital roles in cellular metabolism.
  • Dihydroxyacetonephosphate (DHAP) acyltransferase is a key enzyme in phospholipid biosynthesis.
  • Mutants affecting peroxisomal enzymes can provide insights into cellular pathways.

Purpose of the Study:

  • To develop a screening method for identifying mutants defective in DHAP acyltransferase.
  • To characterize the biochemical and genetic properties of these mutants.
  • To investigate the role of DHAP acyltransferase and peroxisomes in plasmalogen biosynthesis.

Main Methods:

  • Autoradiographic screening of mutagen-treated Chinese hamster ovary cells.
  • Enzymatic assays for DHAP acyltransferase and other peroxisomal enzymes.
  • Phospholipid analysis using 32P labeling and chromatography.

Main Results:

  • Identified 10 mutants defective in DHAP acyltransferase from 60,000 colonies.
  • Characterized 3 mutants showing significantly reduced DHAP acyltransferase activity at pH 5.5.
  • Observed reduced levels of other peroxisomal enzymes and a severe deficiency in plasmalogen synthesis in mutants.

Conclusions:

  • The study supports the existence of two DHAP acyltransferases in animal cells.
  • Peroxisomes are essential for the de novo biosynthesis of plasmalogens.
  • The identified mutants offer a valuable tool for studying peroxisome biogenesis and function.