The senescence response to oncogenes is believed to be a barrier to oncogenic transformation in premalignant lesions, and describing the mechanisms by which tumor cells evade this response is important for early diagnosis and treatment. The male germ cell-associated protein SSX2 is ectopically expressed in many types of cancer and is functionally involved in regulating chromatin structure and supporting cell proliferation. Similar to many well-characterized oncogenes, SSX2 has the ability to induce senescence in cells. In this study, we performed a functional genetic screen to identify proteins implicated in SSX2-induced senescence and identified several subunits of the Mediator complex, which is central in regulating RNA polymerase-mediate...
Introduction: The molecular pathways that dictate the acquisition of senescence-associated secretory...
In response to progressive telomere shortening in successive cell divisions, normal somatic cells en...
Background: Histone modification H4K20me3 and its methyltransferase SUV420H2 have been implicated in...
The senescence response to oncogenes is believed to be a barrier to oncogenic transformation in prem...
Senescence stimuli activate multiple tumor suppressor pathways to initiate cycle arrest and a differ...
Senescence is a proliferation arrest that can result from a variety of stresses. Cancer cells can al...
Summary: Polycomb group (PcG) factors maintain facultative heterochromatin and mediate many importan...
International audienceSenescence is a tumor suppressive mechanism that induces a permanent prolifera...
Senescent cells secrete senescence-associated secretory phenotype (SASP) proteins to carry out sever...
Cellular senescence describes an irreversible growth arrest characterized by distinct morphology, ge...
The CDKN2A locus encodes two important tumor suppressors, INK4a and ARF, which respond to oncogenic ...
Cellular senescence is a stable cell cycle arrest and can be triggered by various signals including ...
Cellular senescence suppresses cancer by arresting cell proliferation, essentially permanently, in r...
Cellular senescence is a state of irreversibly arrested proliferation, often induced by genotoxic st...
Cellular senescence is a state of irreversibly arrested proliferation, often induced by genotoxic st...
Introduction: The molecular pathways that dictate the acquisition of senescence-associated secretory...
In response to progressive telomere shortening in successive cell divisions, normal somatic cells en...
Background: Histone modification H4K20me3 and its methyltransferase SUV420H2 have been implicated in...
The senescence response to oncogenes is believed to be a barrier to oncogenic transformation in prem...
Senescence stimuli activate multiple tumor suppressor pathways to initiate cycle arrest and a differ...
Senescence is a proliferation arrest that can result from a variety of stresses. Cancer cells can al...
Summary: Polycomb group (PcG) factors maintain facultative heterochromatin and mediate many importan...
International audienceSenescence is a tumor suppressive mechanism that induces a permanent prolifera...
Senescent cells secrete senescence-associated secretory phenotype (SASP) proteins to carry out sever...
Cellular senescence describes an irreversible growth arrest characterized by distinct morphology, ge...
The CDKN2A locus encodes two important tumor suppressors, INK4a and ARF, which respond to oncogenic ...
Cellular senescence is a stable cell cycle arrest and can be triggered by various signals including ...
Cellular senescence suppresses cancer by arresting cell proliferation, essentially permanently, in r...
Cellular senescence is a state of irreversibly arrested proliferation, often induced by genotoxic st...
Cellular senescence is a state of irreversibly arrested proliferation, often induced by genotoxic st...
Introduction: The molecular pathways that dictate the acquisition of senescence-associated secretory...
In response to progressive telomere shortening in successive cell divisions, normal somatic cells en...
Background: Histone modification H4K20me3 and its methyltransferase SUV420H2 have been implicated in...