AI Article Synopsis

  • ETO, MTG16, and MTGR1 are transcriptional repressors that interact with corepressors like SIN3 and N-CoR, often involved in acute myeloid leukaemia (AML) through fusion proteins.
  • Researchers studied how ETO and MTG16 repress transcription, focusing on specific regions of these proteins and their interactions with corepressors, using a luciferase reporter system in a cell line.
  • Findings showed that while certain regions of ETO and MTG16 are important for repression, the presence of corepressors hSIN3B and N-CoR did not significantly enhance this repression, suggesting that their roles in transcription regulation might be more complex than previously thought.

Article Abstract

The leukaemia-associated eight-twenty-one (ETO) family members ETO, MTG16 (Myeloid Translocation Gene on chromosome 16) and MTGR1 (Myeloid Transforming Gene-Related protein1) are putative transcriptional repressor proteins, which form complexes with coregulatory nuclear corepressors such as SIN3 (SWI-Independent) and N-CoR (Nuclear receptor Co Repressor). In acute myeloid leukaemia (AML), fusion proteins involving the transcription factor AML1 and corepressors ETO or MTG16 are recurrently found. We investigated transcriptional repression by the ETO family members ETO and MTG16 with attention to the conserved Nervy Homology Regions (NHRs) and the interacting corepressors human SIN3B (hSIN3B) and N-CoR. Transcriptional repression was examined in a cell line by a GAL4-thymidine kinase luciferase reporter to which the corepressors were tethered through a binding domain. ETO- and MTG16-mediated repression was found to be independent of deletion of the oligomerization NHR2, but deletion of NHR4 and in particular combined deletion of NHR2 and NHR4 lowered the capacity for repression. An interaction was observed between the corepressors hSIN3B and N-CoR and these two proteins cooperated for transcriptional repression independent of co-transfected ETO and MTG16. Transcriptional repression mediated by ETO and MTG16 was only slightly strengthened by coexpression of hSIN3B or N-CoR and was dependent on HDAC activity. Our data indicate that ETO family member-mediated oligomerization and repression can be distinct events and that interaction between ETO family members and hSIN3B or N-CoR may not necessarily strengthen transcriptional repression.

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Source
http://dx.doi.org/10.1016/j.bbagrm.2008.06.001DOI Listing

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