The antiproliferative aspects of mortalin (review)

R Wadhwa1, Y Mitsui, T Ide

  • 1NATL INST BIOSCI & HUMAN TECHNOL,AGCY IND SCI & TECHNOL,TSUKUBA,IBARAKI 305,JAPAN. HIROSHIMA UNIV,SCH MED,DEPT CELL & MOLEC BIOL,HIROSHIMA 734,JAPAN.

Insights

Mortalin, a protein in the hsp70 family, influences cell division. Its intracellular distribution changes with cell division capacity, offering insights into cellular mortal and immortal phenotypes.

Area of Science:

  • Cell Biology
  • Molecular Biology
  • Genetics

Background:

  • Cellular phenotypes distinguish normal (mortal) and cancerous (immortal) cells based on division capacity.
  • Genetic control underlies cell growth, but specific genes and regulations remain unclear.
  • Mortalin, a murine hsp70 family protein, is identified as a gene influencing cellular divisional phenotypes in vitro.

Purpose of the Study:

  • To investigate the role of mortalin in determining cellular divisional phenotypes.
  • To explore the anti-proliferative activity of mortalin in human cells.
  • To correlate intracellular mortalin distribution with cellular mortal and immortal phenotypes.

Main Methods:

  • Review of existing literature on mortalin and cell division.
  • Microinjection of anti-mortalin antibody into human skin fibroblasts (TIG-73PD).
  • Immunofluorescence studies of mortalin distribution in SV40-immortalized human cells (pre-crisis and post-crisis).

Main Results:

  • Anti-mortalin antibody demonstrated anti-proliferative activity in human skin fibroblasts.
  • Changes in intracellular mortalin distribution were observed in relation to cellular divisional phenotype.
  • A link exists between cytosolically distributed mortalin and the cellular mortal phenotype.

Conclusions:

  • Mortalin plays a significant role in regulating cellular division and phenotype.
  • Intracellular localization of mortalin is a key factor in determining cell division capacity.
  • Further research into the molecular basis of mortalin's association with the mortal phenotype is crucial for understanding cellular replicative potential.

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