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Enhancer of rudimentary homologue interacts with scaffold attachment factor B at the nuclear matrix to regulate SR protein phosphorylation
dc.creator | Drakouli S., Lyberopoulou A., Papathanassiou M., Mylonis I., Georgatsou E. | en |
dc.date.accessioned | 2023-01-31T07:36:59Z | |
dc.date.available | 2023-01-31T07:36:59Z | |
dc.date.issued | 2017 | |
dc.identifier | 10.1111/febs.14141 | |
dc.identifier.issn | 1742464X | |
dc.identifier.uri | http://hdl.handle.net/11615/71212 | |
dc.description.abstract | Scaffold attachment factor B1 (SAFB1) is an integral component of the nuclear matrix of vertebrate cells. It binds to DNA on scaffold/matrix attachment region elements, as well as to RNA and a multitude of different proteins, affecting basic cellular activities such as transcription, splicing and DNA damage repair. In the present study, we show that enhancer of rudimentary homologue (ERH) is a new molecular partner of SAFB1 and its 70% homologous paralogue, scaffold attachment factor B2 (SAFB2). ERH interacts directly in the nucleus with the C-terminal Arg-Gly-rich region of SAFB1/2 and co-localizes with it in the insoluble nuclear fraction. ERH, a small ubiquitous protein with striking homology among species and a unique structure, has also been implicated in fundamental cellular mechanisms. Our functional analyses suggest that the SAFB/ERH interaction does not affect SAFB1/2 function in transcription (e.g. as oestrogen receptor α co-repressors), although it reverses the inhibition exerted by SAFB1/2 on the splicing kinase SR protein kinase 1 (SRPK1), which also binds on the C-terminus of SAFB1/2. Accordingly, ERH silencing decreases lamin B receptor and SR protein phosphorylation, which are major SRPK1 substrates, further substantiating the role of SAFB1 and SAFB2 in the co-ordination of nuclear function. © 2017 Federation of European Biochemical Societies | en |
dc.language.iso | en | en |
dc.source | FEBS Journal | en |
dc.source.uri | https://www.scopus.com/inward/record.uri?eid=2-s2.0-85021884636&doi=10.1111%2ffebs.14141&partnerID=40&md5=4f771c2559845b409aba6b723bd4fa3f | |
dc.subject | estrogen receptor alpha | en |
dc.subject | serine arginine rich protein | en |
dc.subject | cell cycle protein | en |
dc.subject | ERH protein, human | en |
dc.subject | estrogen receptor | en |
dc.subject | green fluorescent protein | en |
dc.subject | hybrid protein | en |
dc.subject | matrix attachment region binding protein | en |
dc.subject | nuclear matrix protein | en |
dc.subject | peptide fragment | en |
dc.subject | protein serine threonine kinase | en |
dc.subject | SAFB protein, human | en |
dc.subject | SAFB2 protein, human | en |
dc.subject | serine arginine rich splicing factor | en |
dc.subject | SRPK1 protein, human | en |
dc.subject | transcription factor | en |
dc.subject | Article | en |
dc.subject | carboxy terminal sequence | en |
dc.subject | cell nucleus matrix | en |
dc.subject | controlled study | en |
dc.subject | ERH gene | en |
dc.subject | gene function | en |
dc.subject | gene interaction | en |
dc.subject | gene location | en |
dc.subject | gene silencing | en |
dc.subject | genetic transcription | en |
dc.subject | human | en |
dc.subject | human cell | en |
dc.subject | in vitro study | en |
dc.subject | priority journal | en |
dc.subject | protein binding | en |
dc.subject | protein phosphorylation | en |
dc.subject | protein structure | en |
dc.subject | SAFB1 gene | en |
dc.subject | SAFB2 gene | en |
dc.subject | tumor suppressor gene | en |
dc.subject | animal | en |
dc.subject | antagonists and inhibitors | en |
dc.subject | chemistry | en |
dc.subject | fluorescence microscopy | en |
dc.subject | genetics | en |
dc.subject | HEK293 cell line | en |
dc.subject | metabolism | en |
dc.subject | nucleocytoplasmic transport | en |
dc.subject | phosphorylation | en |
dc.subject | protein domain | en |
dc.subject | protein multimerization | en |
dc.subject | protein processing | en |
dc.subject | rat | en |
dc.subject | reporter gene | en |
dc.subject | RNA interference | en |
dc.subject | tumor cell line | en |
dc.subject | two hybrid system | en |
dc.subject | Active Transport, Cell Nucleus | en |
dc.subject | Animals | en |
dc.subject | Cell Cycle Proteins | en |
dc.subject | Cell Line, Tumor | en |
dc.subject | Genes, Reporter | en |
dc.subject | Green Fluorescent Proteins | en |
dc.subject | HEK293 Cells | en |
dc.subject | Humans | en |
dc.subject | Matrix Attachment Region Binding Proteins | en |
dc.subject | Microscopy, Fluorescence | en |
dc.subject | Nuclear Matrix-Associated Proteins | en |
dc.subject | Peptide Fragments | en |
dc.subject | Phosphorylation | en |
dc.subject | Protein Interaction Domains and Motifs | en |
dc.subject | Protein Multimerization | en |
dc.subject | Protein Processing, Post-Translational | en |
dc.subject | Protein-Serine-Threonine Kinases | en |
dc.subject | Rats | en |
dc.subject | Receptors, Estrogen | en |
dc.subject | Recombinant Fusion Proteins | en |
dc.subject | RNA Interference | en |
dc.subject | Serine-Arginine Splicing Factors | en |
dc.subject | Transcription Factors | en |
dc.subject | Two-Hybrid System Techniques | en |
dc.subject | Blackwell Publishing Ltd | en |
dc.title | Enhancer of rudimentary homologue interacts with scaffold attachment factor B at the nuclear matrix to regulate SR protein phosphorylation | en |
dc.type | journalArticle | en |
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