Mouse Gene Set: KONG_E2F3_TARGETS

For the Human gene set with the same name, see KONG_E2F3_TARGETS

Standard name KONG_E2F3_TARGETS
Systematic name MM1105
Brief description Genes up-regulated in MEF cells (embryonic fibroblasts) at 16 hr after serum stimulation and knockdown of E2F3 [GeneID=1871] by RNAi.
Full description or abstract Functions encoded by single genes in lower organisms are often represented by multiple related genes in the mammalian genome. An example is the retinoblastoma and E2F families of proteins that regulate transcription during the cell cycle. Analysis of gene function using germline mutations is often confounded by overlapping function resulting in compensation. Indeed, in cells deleted of the E2F1 or E2F3 genes, there is an increase in the expression of the other family member. To avoid complications of compensatory effects, we have used small-interfering RNAs that target individual E2F proteins to generate a temporary loss of E2F function. We find that both E2F1 and E2F3 are required for cells to enter the S phase from a quiescent state, whereas only E2F3 is necessary for the S phase in growing cells. We also find that the acute loss of E2F3 activity affects the expression of genes encoding DNA replication and mitotic activities, whereas loss of E2F1 affects a limited number of genes that are distinct from those regulated by E2F3. We conclude that the long-term loss of E2F activity does lead to compensation by other family members and that the analysis of acute loss of function reveals specific and distinct roles for these proteins.
Collection M2: Curated
      CGP: Chemical and Genetic Perturbations
Source publication Pubmed 16909124   Authors: Kong LJ,Chang JT,Bild AH,Nevins JR
Exact source Table 1: induced by E2F3
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(show 15 gene sets from the same authors)
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Source species Mus musculus
Contributed by Arthur Liberzon (MSigDB Team)
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Version history 2022.1.Mm: First Introduced.

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