Enhancer of Rudimentary Homolog Affects the Replication Stress Response through Regulation of RNA Processing
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- Type
- article
- Published
- 2015-06-22
- Cited by
- 35
- References
- 58
- Access
- Open access
- OpenAlex
- https://openalex.org/W2100602526
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:37179193
Keywords
Biology, RNA splicing, Enhancer, Gene, Transcriptome
References
- Ciz1, a p21Cip1/Waf1‐interacting zinc finger protein and DNA replication factor, is a novel molecular partner for human enhancer of rudimentary homolog
- Human enhancer of rudimentary is a molecular partner of PDIP46/SKAR, a protein interacting with DNA polymerase δ and S6K1 and regulating cell growth
- Enhancer of rudimentaryp1, e(r)p1, a highly conserved enhancer of the rudimentary gene.
- ATR: An Essential Regulator of Genome Integrity
- Many roads to maturity: microRNA biogenesis pathways and their regulation
- ATR and ATRIP: Partners in Checkpoint Signaling
- Structure of the conserved transcriptional repressor enhancer of rudimentary homolog.
- Discovering Motifs in Ranked Lists of DNA Sequences
- ATR prohibits replication catastrophe by preventing global exhaustion of RPA.
- Systematic Characterization of Human Protein Complexes Identifies Chromosome Segregation Proteins
- TRAP150 activates pre-mRNA splicing and promotes nuclear mRNA degradation
- Proteomic investigations reveal a role for RNA processing factor THRAP3 in the DNA damage response
- Obesity and altered glucose metabolism impact HDL composition in CETP transgenic mice: a role for ovarian hormones[S]
- Three-stage quality control strategies for DNA re-sequencing data
- SKAR links pre-mRNA splicing to mTOR/S6K1-mediated enhanced translation efficiency of spliced mRNAs.
- Pathways of mammalian replication fork restart
- Identification of Proteins at Active, Stalled, and Collapsed Replication Forks Using Isolation of Proteins on Nascent DNA (iPOND) Coupled with Mass Spectrometry*
- Multi-Perspective Quality Control of Illumina Exome Sequencing Data Using QC3
- Functional uncoupling of MCM helicase and DNA polymerase activities activates the ATR-dependent checkpoint.
- Identification and Functional Analysis of the erh1 + Gene Encoding Enhancer of Rudimentary Homolog from the Fission Yeast Schizosaccharomyces pombe
Cited by
- A whole genome RNAi screen identifies replication stress response genes
- PDIP46 (DNA polymerase δ interacting protein 46) is an activating factor for human DNA polymerase δ
- Freezing effects on the acute myeloid leukemia cell proteome and phosphoproteome revealed using optimal quantitative workflows.
- Enhancer of rudimentary homologue interacts with scaffold attachment factor B at the nuclear matrix to regulate SR protein phosphorylation
- Regulation and Modulation of Human DNA Polymerase δ Activity and Function
- Differential phase partition of a PICS complex is required for piRNA processing and chromosome segregation in C. elegans
- Structure-guided exploration of SDS22 interactions with protein phosphatase PP1 and the splicing factor BCLAF1
- Functional Proteomics Identifies a PICS Complex Required for piRNA Maturation and Chromosome Segregation.
- SAFB2 enables the processing of suboptimal stem-loop structures in clustered primary miRNA transcripts
- Comprehensive gene expression analysis after ERH gene knockdown in human bladder cancer T24 cell lines.
- ERH proteins: connecting RNA processing to tumorigenesis?
- MicroRNA Clustering Assists Processing of Suboptimal MicroRNA Hairpins Through the Action of the ERH Protein
- ERH as a component of the Microprocessor facilitates the maturation of suboptimal microRNAs
- MicroRNA clustering on the biogenesis of suboptimal microRNAs
- Identifying and characterising Thrap3, Bclaf1 and Erh interactions using cross-linking mass spectrometry
- ERH Interacts With EIF2α and Regulates the EIF2α/ATF4/CHOP Pathway in Bladder Cancer Cells
- Molecular basis for the recognition of CIZ1 by ERH
- POLDIP3: At the Crossroad of RNA and DNA Metabolism
- ERH: a plug‐and‐play protein important for gene silencing and cell cycle progression
- Identification of key pathways, genes and immune cell infiltration in hypoxia of high-altitude acclimatization via meta-analysis and integrated bioinformatics analysis
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