Chemical perturbation of an intrinsically disordered region of TFIID distinguishes two modes of transcription initiation

Author:

Zhang Zhengjian1ORCID,Boskovic Zarko23,Hussain Mahmud M23,Hu Wenxin1,Inouye Carla4,Kim Han-Je3ORCID,Abole A Katherine5,Doud Mary K3,Lewis Timothy A3,Koehler Angela N36,Schreiber Stuart L23ORCID,Tjian Robert14

Affiliation:

1. Transcription Imaging Consortium, Janelia Research Campus, Howard Hughes Medical Institute, Ashburn, United States

2. Department of Chemistry and Chemical Biology, Howard Hughes Medical Institute, Harvard University, Cambridge, United States

3. Center for the Science of Therapeutics, Broad Institute, Cambridge, United States

4. Li Ka Shing Center for Biomedical and Health Sciences, Department of Molecular and Cell Biology, Howard Hughes Medical Institute, University of California, Berkeley, Berkeley, United States

5. Department of Chemistry, University of California, Berkeley, Berkeley, United States

6. David H. Koch Institute for Integrative Cancer Research, Department of Biological Engineering, Massachusetts Institute of Technology, Cambridge, United States

Abstract

Intrinsically disordered proteins/regions (IDPs/IDRs) are proteins or peptide segments that fail to form stable 3-dimensional structures in the absence of partner proteins. They are abundant in eukaryotic proteomes and are often associated with human diseases, but their biological functions have been elusive to study. In this study, we report the identification of a tin(IV) oxochloride-derived cluster that binds an evolutionarily conserved IDR within the metazoan TFIID transcription complex. Binding arrests an isomerization of promoter-bound TFIID that is required for the engagement of Pol II during the first (de novo) round of transcription initiation. However, the specific chemical probe does not affect reinitiation, which requires the re-entry of Pol II, thus, mechanistically distinguishing these two modes of transcription initiation. This work also suggests a new avenue for targeting the elusive IDRs by harnessing certain features of metal-based complexes for mechanistic studies, and for the development of novel pharmaceutical interventions.

Funder

Leukemia and Lymphoma Society

Howard Hughes Medical Institute

National Cancer Institute

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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