E2F transcription factors are implicated in diverse cellular functions. The founding member, E2F-1, is endowed with contradictory activities, being able to promote cell-cycle progression and induce apoptosis. However, the mechanisms that underlie the opposing outcomes of E2F-1 activation remain largely unknown. We show here that E2F-1 is directly methylated by PRMT5 (protein arginine methyltransferase 5), and that arginine methylation is responsible for regulating its biochemical and functional properties, which impacts on E2F-1-dependent growth control. Thus, depleting PRMT5 causes increased E2F-1 protein levels, which coincides with decreased growth rate and associated apoptosis. Arginine methylation influences E2F-1 protein stability, an...
Activation of the p53 tumour suppressor protein in response to DNA damage leads to apoptosis or cell...
Arginine methylation governs important cellular processes that impact growth and proliferation, as w...
Abstract Protein arginine methylation is a common post-translational modification where a methyl gro...
E2F transcription factors are implicated in diverse cellular functions. The founding member, E2F-1, ...
E2F transcription factors are implicated in diverse cellular functions. The founding member, E2F-1, ...
The mechanisms that underlie and dictate the different biological outcomes of E2F-1 activity have ye...
The mechanisms that underlie and dictate the different biological outcomes of E2F-1 activity have ye...
The transcription factor E2F1 can have diverse phenotypic effects on the cell, from stimulating cell...
E2F1 plays contrasting biological roles in both cellular proliferation and apoptosis. Recent studies...
E2F1 plays contrasting biological roles in both cellular proliferation and apoptosis. Recent studies...
The retinoblastoma protein (pRb/p105) tumor suppressor plays a pivotal role in cell cycle regulation...
E2F is a family of master transcription regulators involved in mediating diverse cell fates. Here, w...
E2F is a family of master transcription regulators involved in mediating diverse cell fates. Here, w...
The retinoblastoma protein (pRb/p105) tumor suppressor plays a pivotal role in cell cycle regulation...
Summary: DNA methylation plays crucial roles in chromatin structure and gene expression. Aberrant DN...
Activation of the p53 tumour suppressor protein in response to DNA damage leads to apoptosis or cell...
Arginine methylation governs important cellular processes that impact growth and proliferation, as w...
Abstract Protein arginine methylation is a common post-translational modification where a methyl gro...
E2F transcription factors are implicated in diverse cellular functions. The founding member, E2F-1, ...
E2F transcription factors are implicated in diverse cellular functions. The founding member, E2F-1, ...
The mechanisms that underlie and dictate the different biological outcomes of E2F-1 activity have ye...
The mechanisms that underlie and dictate the different biological outcomes of E2F-1 activity have ye...
The transcription factor E2F1 can have diverse phenotypic effects on the cell, from stimulating cell...
E2F1 plays contrasting biological roles in both cellular proliferation and apoptosis. Recent studies...
E2F1 plays contrasting biological roles in both cellular proliferation and apoptosis. Recent studies...
The retinoblastoma protein (pRb/p105) tumor suppressor plays a pivotal role in cell cycle regulation...
E2F is a family of master transcription regulators involved in mediating diverse cell fates. Here, w...
E2F is a family of master transcription regulators involved in mediating diverse cell fates. Here, w...
The retinoblastoma protein (pRb/p105) tumor suppressor plays a pivotal role in cell cycle regulation...
Summary: DNA methylation plays crucial roles in chromatin structure and gene expression. Aberrant DN...
Activation of the p53 tumour suppressor protein in response to DNA damage leads to apoptosis or cell...
Arginine methylation governs important cellular processes that impact growth and proliferation, as w...
Abstract Protein arginine methylation is a common post-translational modification where a methyl gro...