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Role of surface modulating assemblies in growth control of normal and transformed fibroblasts

Insights

Cellular assemblies regulate cell growth by controlling receptor mobility. Agents like colchicine and concanavalin A (Con A) block cell cycle entry, supporting the surface modulating assembly

Area of Science:

  • Cell Biology
  • Molecular Biology
  • Cancer Research

Background:

  • Cellular structures like microtubules and microfilaments, along with surface receptors, are hypothesized to form a surface modulating assembly.
  • This assembly is thought to regulate cell growth and surface receptor mobility.

Purpose of the Study:

  • To investigate the role of the surface modulating assembly in cell growth regulation.
  • To examine the effects of colchicine, concanavalin A (Con A), and the Rous sarcoma virus src gene product on chick embryo fibroblasts.

Main Methods:

  • Treatment of chick embryo fibroblasts with colchicine, Con A, and succinyl-Con A.
  • Infection of fibroblasts with a temperature-sensitive Rous sarcoma virus (tsNY68) to study the src gene product's effects.
  • Analysis of cell cycle entry (S phase), cytoplasmic factors for DNA replication, and microtubule/microfilament morphology.

Main Results:

  • Colchicine and Con A blocked cell entry into S phase, while succinyl-Con A did not.
  • Both Con A and colchicine inhibited the appearance of cytoplasmic factors that stimulate DNA replication.
  • The src gene product directly affects the surface modulating assembly, influencing microtubule and microfilament structures.
  • Con A partially blocked src-induced "transformation" of the surface modulating assembly.

Conclusions:

  • The surface modulating assembly plays a critical role in regulating cell growth signals.
  • Disruption of this assembly by agents like colchicine and Con A inhibits cell proliferation.
  • The src gene product's oncogenic activity involves direct modulation of this assembly.

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