Johnson Thomas A, Fettweis Gregory, Wagh Kaustubh, Almeida-Prieto Brian, Krishnamurthy Manan, Upadhyaya Arpita, Hager Gordon L, Alvarez de la Rosa Diego
Laboratory of Receptor Biology and Gene Expression, National Cancer Institute, NIH, Building 41, 41 Library Drive, Bethesda, MD, USA.
Department of Physics, University of Maryland, College Park, 4296 Stadium Drive, College Park, MD, USA.
bioRxiv. 2023 Jun 17:2023.01.26.525745. doi: 10.1101/2023.01.26.525745.
The glucocorticoid and mineralocorticoid receptors (GR and MR, respectively) have distinct, yet overlapping physiological and pathophysiological functions. There are indications that both receptors interact functionally and physically, but the precise role of this interdependence is poorly understood. Here, we analyzed the impact of GR co-expression on MR genome-wide chromatin binding and transcriptional responses to aldosterone and glucocorticoids, both physiological ligands of this receptor. Our data show that GR co-expression alters MR genome-wide binding to consensus DNA sequences in a locus- and ligand-specific way. MR binding to consensus DNA sequences is affected by GR. Transcriptional responses of MR in the absence of GR are weak and show poor correlation with chromatin binding. In contrast, co-expression of GR potentiates MR-mediated transcription, particularly in response to aldosterone. Finally, single-molecule tracking of MR suggests that the presence of GR contributes to productive binding of MR/aldosterone complexes to chromatin. Together, our data indicate that co-expression of GR potentiates aldosterone-mediated MR transcriptional activity, even in the absence of glucocorticoids.
糖皮质激素受体和盐皮质激素受体(分别为GR和MR)具有不同但又相互重叠的生理和病理生理功能。有迹象表明这两种受体在功能和物理层面上存在相互作用,但这种相互依存的确切作用却鲜为人知。在此,我们分析了GR共表达对MR全基因组染色质结合以及对醛固酮和糖皮质激素(该受体的两种生理性配体)的转录反应的影响。我们的数据表明,GR共表达以位点和配体特异性的方式改变MR全基因组与共有DNA序列的结合。MR与共有DNA序列的结合受到GR的影响。在没有GR的情况下,MR的转录反应较弱,且与染色质结合的相关性较差。相比之下,GR的共表达增强了MR介导的转录,尤其是对醛固酮的反应。最后,对MR的单分子追踪表明,GR的存在有助于MR/醛固酮复合物与染色质的有效结合。总之,我们的数据表明,即使在没有糖皮质激素的情况下,GR的共表达也能增强醛固酮介导的MR转录活性。