In Vitro Analysis of Huntingtin-Mediated Transcriptional Repression Reveals Multiple Transcription Factor Targets
pmid: 16377565
In Vitro Analysis of Huntingtin-Mediated Transcriptional Repression Reveals Multiple Transcription Factor Targets
Transcriptional dysregulation has emerged as a potentially important pathogenic mechanism in Huntington's disease, a neurodegenerative disorder associated with polyglutamine expansion in the huntingtin (htt) protein. Here, we report the development of a biochemically defined in vitro transcription assay that is responsive to mutant htt. We demonstrate that both gene-specific activator protein Sp1 and selective components of the core transcription apparatus, including TFIID and TFIIF, are direct targets inhibited by mutant htt in a polyglutamine-dependent manner. The RAP30 subunit of TFIIF specifically interacts with mutant htt both in vitro and in vivo to interfere with formation of the RAP30-RAP74 native complex. Importantly, overexpression of RAP30 in cultured primary striatal cells protects neurons from mutant htt-induced cellular toxicity and alleviates the transcriptional inhibition of the dopamine D2 receptor gene by mutant htt. Our results suggest a mutant htt-directed repression mechanism involving multiple specific components of the basal transcription apparatus.
- University of California, San Francisco United States
- University of California, Berkeley United States
- University of California System United States
- Howard Hughes Medical Institute United States
- Harvard University United States
Neurons, Huntingtin Protein, Cell-Free System, Biochemistry, Genetics and Molecular Biology(all), Receptors, Dopamine D2, Sp1 Transcription Factor, Down-Regulation, Nuclear Proteins, Nerve Tissue Proteins, Rats, Mice, Protein Subunits, COS Cells, Chlorocebus aethiops, Mutation, Animals, Biological Assay, Transcription Factor TFIID, Cells, Cultured, Protein Binding, Transcription Factors
Neurons, Huntingtin Protein, Cell-Free System, Biochemistry, Genetics and Molecular Biology(all), Receptors, Dopamine D2, Sp1 Transcription Factor, Down-Regulation, Nuclear Proteins, Nerve Tissue Proteins, Rats, Mice, Protein Subunits, COS Cells, Chlorocebus aethiops, Mutation, Animals, Biological Assay, Transcription Factor TFIID, Cells, Cultured, Protein Binding, Transcription Factors
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