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    U30 of 7SK RNA forms a specific photo-cross-link with Hexim1 in the context of both a minimal RNA-binding site and a fully reconstituted 7SK/Hexim1/P-TEFb ribonucleoprotein complex

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    Authors
    Belanger, Francois
    Baigude, Huricha
    Rana, Tariq M.
    UMass Chan Affiliations
    Department of Biochemistry and Molecular Pharmacology
    Document Type
    Journal Article
    Publication Date
    2009-02-27
    Keywords
    Base Sequence
    Binding Sites
    Cross-Linking Reagents
    Hela Cells
    Humans
    Molecular Sequence Data
    Mutation
    Nucleic Acid Conformation
    Photochemical Processes
    Positive Transcriptional Elongation Factor B
    Protein Binding
    RNA, Small Nuclear
    RNA-Binding Proteins
    Ribonucleoproteins
    Life Sciences
    Medicine and Health Sciences
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    Link to Full Text
    https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2754221/
    Abstract
    Eukaryotic transcription by RNA polymerase II is a highly regulated process and divided into three major steps: initiation, elongation, and termination. Each step of transcription is controlled by a number of cellular factors. Positive transcription factor b, P-TEFb, is composed of cyclin-dependent kinase 9 and a regulatory cyclin (T1/T2). P-TEFb promotes transcriptional elongation of RNA polymerase II by using the catalytic function of CDK9 to phosphorylate various substrates during transcription. P-TEFb is inactivated by sequestration in a complex with the Hexim1 protein and 7SK RNA. The structure of this inactive P-TEFb complex and the mechanisms controlling its equilibrium with the active complex are poorly understood. Here, we used a photoactive nucleotide, 4-thioU, to study the interactions between 7SK RNA and Hexim1. We identified a specific cross-link between nucleotide U30 of 7SK RNA and amino acids 210-220 of Hexim1, in the context of both a minimal RNA-binding site and a fully reconstituted 7SK/Hexim1/P-TEFb ribonucleoprotein complex. We show also that a minimal 7SK RNA hairpin comprising nucleotides 24-87 can bind specifically to Hexim1 in vivo. Our results demonstrate directly that the Hexim1 binding site is located in the 24-87 region of 7SK RNA and that the protein residues outside the basic domain of Hexim1 are involved in specific RNA interactions.
    Source

    J Mol Biol. 2009 Mar 6;386(4):1094-107.

    Permanent Link to this Item
    http://hdl.handle.net/20.500.14038/39364
    PubMed ID
    19244621
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