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The activity of differentiation factors induces apoptosis in polyomavirus large T-expressing myoblasts
G M Fimia1, V Gottifredi, B Bellei
1Isituto Pasteur-Fondazione Cenci Bolognetti, Dipartimento di Biotecnologie Cellulari ed Ematologia, Università di Roma La Sapienza, 00161 Roma, Italy.
Abstract:
It is commonly accepted that pathways that regulate proliferation/differentiation processes, if altered in their normal interplay, can lead to the induction of programmed cell death. In a previous work we reported that Polyoma virus Large Tumor antigen (PyLT) interferes with in vitro terminal differentiation of skeletal myoblasts by binding and inactivating the retinoblastoma antioncogene product. This inhibition occurs after the activation of some early steps of the myogenic program. In the present work we report that myoblasts expressing wild-type PyLT, when subjected to differentiation stimuli, undergo cell death and that this cell death can be defined as apoptosis. Apoptosis in PyLT-expressing myoblasts starts after growth factors removal, is promoted by cell confluence, and is temporally correlated with the expression of early markers of myogenic differentiation. The block of the initial events of myogenesis by transforming growth factor beta or basic fibroblast growth factor prevents PyLT-induced apoptosis, while the acceleration of this process by the overexpression of the muscle-regulatory factor MyoD further increases cell death in this system. MyoD can induce PyLT-expressing myoblasts to accumulate RB, p21, and muscle- specific genes but is unable to induce G0(0) arrest. Several markers of different phases of the cell cycle, such as cyclin A, cdk-2, and cdc-2, fail to be down-regulated, indicating the occurrence of cell cycle progression. It has been frequently suggested that apoptosis can result from an unbalanced cell cycle progression in the presence of a contrasting signal, such as growth factor deprivation. Our data involve differentiation pathways, as a further contrasting signal, in the generation of this conflict during myoblast cell apoptosis.
Insights
Polyoma virus Large Tumor antigen (PyLT) causes skeletal myoblast apoptosis during differentiation. This programmed cell death is linked to cell cycle progression despite differentiation signals.
Area of Science:
- Molecular Biology
- Cell Biology
- Virology
Background:
- Altered proliferation/differentiation pathways can induce programmed cell death.
- Polyoma virus Large Tumor antigen (PyLT) previously shown to inhibit skeletal myoblast differentiation by inactivating the retinoblastoma tumor suppressor.
Purpose of the Study:
- To investigate the mechanism of cell death in myoblasts expressing wild-type PyLT.
- To determine if this cell death is apoptosis and its correlation with myogenic differentiation.
Main Methods:
- Cultured myoblasts expressing wild-type PyLT were subjected to differentiation stimuli.
- Apoptosis was assessed after growth factor removal and cell confluence.
- The role of myogenic regulatory factors (TGF-β, FGF, MyoD) and cell cycle markers (cyclin A, cdk-2, cdc-2) were analyzed.
Main Results:
- Myoblasts expressing PyLT undergo apoptosis upon differentiation stimuli.
- Apoptosis is initiated post-growth factor removal, enhanced by confluence, and temporally linked to early myogenic differentiation markers.
- Inhibition of myogenesis prevents PyLT-induced apoptosis, while MyoD overexpression exacerbates it, leading to cell cycle progression without G0 arrest.
Conclusions:
- PyLT induces apoptosis in differentiating skeletal myoblasts.
- This apoptosis results from a conflict between cell cycle progression and differentiation signals, exacerbated by PyLT.
- Differentiation pathways act as a contrasting signal contributing to apoptosis in PyLT-expressing myoblasts.