Interactions between the retinoid X receptor and a conserved region of the TATA-binding protein mediate hormone-dependent transactivation.

Transcriptional Activation Thyroid Hormones 0303 health sciences Transcription, Genetic Receptors, Retinoic Acid Saccharomyces cerevisiae TATA-Box Binding Protein TATA Box DNA-Binding Proteins 03 medical and health sciences Retinoid X Receptors Humans Steroids Plasmids Protein Binding Transcription Factors
DOI: 10.1073/pnas.92.18.8288 Publication Date: 2006-05-31T13:17:21Z
ABSTRACT
The retinoid X receptor (RXR) participates in a wide array of hormonal signaling pathways, either as a homodimer or as a heterodimer, with other members of the steroid and thyroid hormone receptor superfamily. In this report the ligand-dependent transactivation function of RXR has been characterized, and the ability of RXR to interact with components of the basal transcription machinery has been examined. In vivo and in vitro experiments indicate the RXR ligand-binding domain makes a direct, specific, and ligand-dependent contact with a highly conserved region of the TATA-binding protein. The ability of mutations that reduce ligand-dependent transcription by RXR to disrupt the RXR-TATA-binding protein interaction in vivo and in vitro suggests that RXR makes direct contact with the basal transcription machinery to achieve activation.
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