ArticleThe EMBO journal1995
ERF: an ETS domain protein with strong transcriptional repressor activity, can suppress ets-associated tumorigenesis and is regulated by phosphorylation during cell cycle and mitogenic stimulation.
Article in The EMBO journal, 1995. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 60 papers.
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Who cites it
60 citing papers in PubMed, 171 citations in OpenAlex.
- Unveiling oncogene-induced senescence: a new frontier in prostate cancer prognosis and therapy.Discover oncology · 2025Article
- Loss of function of the zinc finger homeobox 4 gene, ZFHX4, underlies a neurodevelopmental disorder.American journal of human genetics · 2025Article
- Heterozygous variants disrupting the interaction of ERF with activated ERK1/2 cause microcephaly, developmental delay, and skeletal anomalies.European journal of human genetics : EJHG · 2025Article
- Missense and truncated variants in ERF in individuals with a Noonan-like phenotype without craniosynostosis.Scientific reports · 2025Article
- Role of histone-lysine N-methyltransferase 2D (KMT2D) in MEK-ERK signaling-mediated epigenetic regulation: a phosphoproteomics perspective.Frontiers in bioinformatics · 2025Article
- Loss-of-function of the Zinc Finger Homeobox 4 (medRxiv : the preprint server for health sciences · 2024Article
- Loss-of-function variants in ERF are associated with a Noonan syndrome-like phenotype with or without craniosynostosis.European journal of human genetics : EJHG · 2024Article
- Article
- Development of Erf-Mediated Craniosynostosis and Pharmacological Amelioration.International journal of molecular sciences · 2023Article
- An FGF timer for zygotic genome activation.Genes & development · 2023Article
- Prospective Clinical Genomic Profiling of Ewing Sarcoma:JCO precision oncology · 2022Article
- ERK signaling dissolves ERF repression condensates in living embryos.Proceedings of the National Academy of Sciences of the United States of America · 2022Article
- The ETS transcription factor ERF controls the exit from the naïve pluripotent state in a MAPK-dependent manner.Science advances · 2021Article
- Chromatin Alterations in Neurological Disorders and Strategies of (Epi)Genome Rescue.Pharmaceuticals (Basel, Switzerland) · 2021Review
- Regeneration of infarcted mouse hearts by cardiovascular tissue formed via the direct reprogramming of mouse fibroblasts.Nature biomedical engineering · 2021Article
- Dissection of two routes to naïve pluripotency using different kinase inhibitors.Nature communications · 2021Article
- Article
- High-Throughput Identification of MiR-145 Targets in Human Articular Chondrocytes.Life (Basel, Switzerland) · 2020Article
- Genetic Causes of Craniosynostosis: An Update.Molecular syndromology · 2019Review
- Electrostatic repulsion causes anticooperative DNA binding between tumor suppressor ETS transcription factors and JUN-FOS at composite DNA sites.The Journal of biological chemistry · 2018Article
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Authors and funding
6 authors at 3 institutions in 1 country.
Funding
No grant is acknowledged in the PubMed record.
Abstract
ERF (ETS2 Repressor Factor) is a novel member of the ets family of genes, which was isolated by virtue of its interaction with the ets binding site (EBS) within the ETS2 promoter. The 2.7 kb ubiquitously expressed ERF mRNA encodes a 548 amino acid phosphoprotein that exhibits strong transcriptional repressor activity on promoters that contain an EBS. The localization of the DNA-binding domain of the protein at the N-terminus and th repression domain at the C-terminus is reminiscent of the organization of ELK1-like members of the ets family; however, there is no significant homology between ERF and ELK1 or any other ets member outside the DNA-binding domain. The repressor activity of ERF can antagonize the activity of other ets genes that are known transcriptional activators. Furthermore, ERF can suppress the ets-dependent transforming activity of the gag-myb-ets fusion oncogene of ME26 virus. Although ERF protein levels remain constant throughout the cell cycle, the phosphorylation level of the protein is altered as a function of the cell cycle and after mitogenic stimulation. The ERF protein is also hyperphosphorylated in cells transformed by the activated Ha-ras and v-src genes and the transcription repressor activity of ERF is decreased after co-transfection with activated Ha-ras or the kinase domain of the c-Raf-1 gene, indicating that ERF activity is probably regulated by the ras/MAPK pathway. Consistent with the in vivo phosphorylation and inactivation by ras, ERF is efficiently phosphorylated in vitro by Erk2 and cdc2/cyclin B kinases, at sites similar to those detected in vivo. Furthermore, a single mutation at position 526 results in the loss of a specific phosphopeptide both in in vivo and in vitro (by Erk2) labeling. Substitution of Thr526 for glutamic acid also decreases the repression ability of ERF. Our data suggest a model in which modulation of ERF activity is involved in the transcriptional regulation of genes activated during entry into G1 phase. Obstruction of the ERF repressor function by the transactivating members of the ets family of genes (i.e.gag-myb-ets) may be essential for the control of genes involved in cell proliferation and may also underlie their tumorigenic effects.
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Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the Socratic graph.