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We considered the possibility that removal of E2F4, as a key regulator of cellular quiescence, would cause systemic perturbations in the expression of E2F4 bound genes involved in cell cycle and proliferation. To test whether these pertubrations were reflected in the adult tissues' gene expression p...
ORGANISM(S): Mus musculus 
E2F transcription factors are central regulators of cell cycle progression and cell fate decisions in mammalian cells. E2F4 is a transcriptional repressor implicated in cell cycle arrest and whose repressive activity depends on its interaction with members of the RB family. E2F4 often represents the...
ORGANISM(S): Homo sapiens (Human) Mus musculus (Mouse) 
2019-04-26 | PXD008796 | Pride
The transcription factor E2F4 is a member of the E2F family of regulators which has critical roles in cell cycle control and differentiation. In order to fully understand the physiological roles of E2F4 and the regulatory networks it mediates, and to reveal its relationships with other members of th...
ORGANISM(S): Homo sapiens 
The transcription factor E2F4 is a member of the E2F family of regulators which has critical roles in cell cycle control and differentiation. We investigated the genome-wide binding profile of E2F4 using a newly developed peak calling program based on a kernel density estimation and identified appro...
ORGANISM(S): Homo sapiens 
We investigated the potential proteins degraded by E2F4-induced autophagy via quantitative proteomics. To gain insight into protein partner essential for E2F4 stability, co-immunoprecipitation and mass spectrometry assays were performed.
ORGANISM(S): Homo Sapiens 
2021-11-19 | PXD029858 |
Tumor suppressor p53 and its related proteins, p63 and p73, can be synthesized as multiple isoforms lacking part of the N- or C-terminal regions. Specifically, high expression of the Np73 isoform is notoriously associated with poor prognosis in cancer. Here, we have performed proteomics analysis of ...
ORGANISM(S): Homo sapiens (Human) 
2023-02-28 | PXD022947 | Pride
Despite being expressed in most tissues, a number of mammalian process-specific transcriptional regulators, such as those involved in cell cycle and immune responses, often have profound tissue-specific phenotypes. The mechanism underlying this effect is poorly understood. We chose to investigate ...
ORGANISM(S): Mus musculus 
The Trim33 ubiquitin ligase limits E2f4-dependent DNA replication [Cut&Run II]
The Trim33 ubiquitin ligase limits E2f4-dependent DNA replication [DSB]
E2F4 wild and knockout type neurospheres from E12.5 forebrain. E2F4 transcription factor regulates the expression of the genes which are required for neural stem cell expansion in the developing mouse brain. The results of microarray analysis will help to identify the signaling pathways affected by ...
ORGANISM(S): Mus musculus 
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