Inverse relationship between galactokinase activity and 2-deoxygalactose resistance in Chinese hamster ovary cells

Somatic Cell Genetics
|November 1, 1978
PubMed

Insights

Chinese hamster ovary cells resistant to 2-deoxygalactose exhibit reduced galactokinase activity. This resistance is a stable, recessive trait, potentially caused by mutations affecting enzyme regulation.

Area of Science:

  • Biochemistry
  • Genetics
  • Cell Biology

Background:

  • Galactokinase (GALK) is crucial for galactose metabolism.
  • Understanding resistance mechanisms provides insights into enzyme function and regulation.
  • Chinese hamster ovary (CHO) cells are a model for genetic and biochemical studies.

Purpose of the Study:

  • To investigate the molecular basis of 2-deoxygalactose resistance in CHO cells.
  • To characterize the galactokinase (GALK) activity and genetic properties of resistant cell lines.
  • To determine if mutations affect the structural gene or regulatory elements of GALK.

Main Methods:

  • Isolation and characterization of 2-deoxygalactose-resistant CHO cell clones.
  • Measurement of galactokinase enzyme activity in parental and resistant cells.
  • Analysis of genetic complementation in hybrid cells.
  • Biochemical characterization of GALK kinetics and stability.

Main Results:

  • 12 independent CHO cell clones resistant to 2-deoxygalactose showed significantly reduced galactokinase activity.
  • Resistance is a stable, recessive genetic trait.
  • High-resistance cells had <1% of parental GALK activity; low-resistance cells had 10-30%.
  • Kinetic parameters (Km, Ki) and thermolability of GALK were largely unchanged in low-resistance cells.

Conclusions:

  • Reduced galactokinase activity is the primary cause of 2-deoxygalactose resistance in these CHO cells.
  • The recessive nature and lack of complementation suggest mutations in a single gene or regulatory pathway.
  • Mutations may occur at the structural gene locus or, more likely, at a regulatory site affecting GALK expression levels.