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Cell mutants as a tool to study malignant transformation of fibroblasts

Progress in Clinical and Biological Research
|January 1, 1980
PubMed

Insights

Cell surface carbohydrate defects cause altered cell behavior, but not malignancy. These changes, including low adhesion and round shape, are reversible and distinct from uncontrolled growth in cancer.

Area of Science:

  • Cell Biology
  • Biochemistry
  • Cancer Research

Background:

  • Transformed fibroblasts exhibit altered phenotypes like low adhesion and round morphology.
  • These changes are often associated with malignant transformation and uncontrolled growth.

Purpose of the Study:

  • To investigate the causal relationship between specific biochemical defects and altered cell phenotypes.
  • To determine if these phenotypic alterations are separable from malignant transformation and tumorigenicity.

Main Methods:

  • Selection and biochemical characterization of mutant cell lines (AD6, DS7) with defects in carbohydrate and glucose metabolism.
  • Reversion studies using specific biochemical supplements (N-acetylglucosamine) and metabolic analyses.
  • Assessment of anchorage independence, growth control, and tumorigenicity in vivo.

Main Results:

  • AD6 cells, deficient in glucosamine-6-phosphate N-acetylase, showed reduced cell surface carbohydrates and altered phenotypes reversible with N-acetylglucosamine.
  • Despite a transformed phenotype, AD6 cells maintained normal growth control and were non-tumorigenic.
  • DS7 cells, with impaired glucose metabolism, retained in vitro transformed characteristics and tumorigenicity, indicating metabolic alterations are not solely responsible for malignancy.

Conclusions:

  • Altered cell surface carbohydrates and metabolic changes can cause transformed cell phenotypes independently of malignant transformation.
  • Phenotypic alterations like low adhesiveness and altered morphology are secondary events, dissociable from the loss of growth control that defines malignancy.
  • These findings highlight that specific cellular defects can mimic transformed characteristics without conferring tumorigenic potential.

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