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Increase of normal myeloblast viability and multiplication without blocking differentiation by type C RNA virus from

Insights

Type C virus from differentiating mouse myeloid leukemic cells enhances normal bone marrow cell viability and multiplication. This virus promotes differentiation when MGI is present, without blocking the cells' natural response to MGI.

Area of Science:

  • * Molecular Biology
  • * Cell Biology
  • * Virology

Background:

  • * Leukemic cell clones exhibit varying responses to MGI, a protein inducer of normal cell differentiation.
  • * These clones produce type C virus, prompting an investigation into its effects on normal bone marrow cells.

Purpose of the Study:

  • * To investigate the impact of type C viruses from MGI-responsive (MGI+D+) and non-responsive (MGI-D-) leukemic clones on normal bone marrow cell viability, multiplication, and differentiation.
  • * To determine if these viruses influence the response of normal cells to MGI.
  • * To identify the target cells for type C virus infection in the bone marrow.

Main Methods:

  • * Infection of normal mouse bone marrow cells with type C viruses from MGI+D+ and MGI-D- leukemic clones.
  • * Assessment of cell viability, multiplication, and differentiation in the presence and absence of MGI and fetal calf serum.
  • * Use of isolated myeloblast colony-forming cells to identify target cells and study viral effects.

Main Results:

  • * Virus from MGI+D+ clones increased myeloblast multiplication and viability without MGI, and enhanced differentiation with MGI, requiring less MGI and serum for colony formation.
  • * Virus from MGI+D+ clones was 500-fold more effective than virus from MGI-D- clones in promoting colony formation, despite equal viral replication.
  • * Virus from MGI+D+ clones did not inhibit MGI-induced differentiation and appeared to target myeloblast colony-forming cells.

Conclusions:

  • * Type C virus from MGI-competent leukemic cells enhances normal myeloblast viability and multiplication without impairing MGI-induced differentiation.
  • * The observed effects are linked to the leukemic host cells' competence for normal differentiation.
  • * Differences in viral integration sites may explain the varying effects of viruses from MGI+D+ and MGI-D- clones.

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