AbstractGrowth and proliferation potentiated by deregulated myc oncogene expression is balanced by myc-induced apoptosis. Abrogation of this apoptotic pathway in Myc overexpressing cells leads to cancer progression. Recent work has shown that cell clones in the Drosophila wing disc with higher dMyc expression levels act as supercompetitors to potentiate the programmed death of surrounding normal cells. Yet another paper identifies dE2F1 as a critical component of pathways that normally restrict the ability of growth perturbing genes like dMyc to cause organ overgrowth
<div><p>Autophagy, a lysosomal self-degradation and recycling pathway, plays dual roles in tumorigen...
Transcription factors of the Myc proto-oncogene family promote cell division, but how they do this i...
The proteins encoded by the myc proto-oncogene family are involved in cell proliferation, apoptosis,...
AbstractGrowth and proliferation potentiated by deregulated myc oncogene expression is balanced by m...
AbstractOverexpression of myc protooncogenes has been implicated in the genesis of many human tumors...
Deregulation of MYC family proteins in cancer is associated with a global reprogramming of gene expr...
Myc proteins seem to regulate diverse biological processes, but their role in tumorigenesis remains ...
AbstractDuring Drosophila development, cells with elevated levels of the Myc oncoprotein grow faster...
Overexpression of myc protooncogenes has been implicated in the genesis of many human tumors. Myc pr...
The term “field cancerisation” describes a precancerous area in which genetically altered but histol...
none2Cell competition was first discovered as a homeostatic mechanism resulting from bi-directional ...
Neoplastic growth requires the cooperation of several oncogenic mutations leading to major rearrange...
Transcription factors of the Myc proto-oncogene family promote cell division, but how they do this i...
AbstractTranscription factors of the Myc proto-oncogene family promote cell division, but how they d...
Autophagy, a lysosomal self-degradation and recycling pathway, plays dual roles in tumorigenesis. Au...
<div><p>Autophagy, a lysosomal self-degradation and recycling pathway, plays dual roles in tumorigen...
Transcription factors of the Myc proto-oncogene family promote cell division, but how they do this i...
The proteins encoded by the myc proto-oncogene family are involved in cell proliferation, apoptosis,...
AbstractGrowth and proliferation potentiated by deregulated myc oncogene expression is balanced by m...
AbstractOverexpression of myc protooncogenes has been implicated in the genesis of many human tumors...
Deregulation of MYC family proteins in cancer is associated with a global reprogramming of gene expr...
Myc proteins seem to regulate diverse biological processes, but their role in tumorigenesis remains ...
AbstractDuring Drosophila development, cells with elevated levels of the Myc oncoprotein grow faster...
Overexpression of myc protooncogenes has been implicated in the genesis of many human tumors. Myc pr...
The term “field cancerisation” describes a precancerous area in which genetically altered but histol...
none2Cell competition was first discovered as a homeostatic mechanism resulting from bi-directional ...
Neoplastic growth requires the cooperation of several oncogenic mutations leading to major rearrange...
Transcription factors of the Myc proto-oncogene family promote cell division, but how they do this i...
AbstractTranscription factors of the Myc proto-oncogene family promote cell division, but how they d...
Autophagy, a lysosomal self-degradation and recycling pathway, plays dual roles in tumorigenesis. Au...
<div><p>Autophagy, a lysosomal self-degradation and recycling pathway, plays dual roles in tumorigen...
Transcription factors of the Myc proto-oncogene family promote cell division, but how they do this i...
The proteins encoded by the myc proto-oncogene family are involved in cell proliferation, apoptosis,...