AI Article Synopsis

  • - Aldosterone production in the adrenal cortex is stimulated by angiotensin II, leading to the expression of specific steroidogenic genes via the NR4A nuclear receptors, particularly Nurr1, which is an orphan nuclear receptor.
  • - This study identifies PARP1 as a key interacting protein with Nurr1 in human adrenocortical H295R cells, establishing its role in regulating aldosterone production.
  • - Using techniques like co-immunoprecipitation and specific PARP1 inhibitors, the research shows that inhibiting PARP1 reduces both gene induction and aldosterone secretion triggered by angiotensin II, highlighting its importance as a coregulator for Nurr1.

Article Abstract

Aldosterone is synthesized in zona glomerulosa of adrenal cortex in response to angiotensin II. This stimulation transcriptionally induces expression of a series of steroidogenic genes such as and via NR4A (nuclear receptor subfamily 4 group A) nuclear receptors and ATF (activating transcription factor) family transcription factors. Nurr1 belongs to the NR4A family and is regarded as an orphan nuclear receptor. The physiological significance of Nurr1 in aldosterone production in adrenal cortex has been well studied. However, coregulators supporting the Nurr1 function still remain elusive. In this study, we performed RIME (rapid immunoprecipitation mass spectrometry of endogenous proteins), a recently developed endogenous coregulator purification method, in human adrenocortical H295R cells and identified PARP1 as one of the top Nurr1-interacting proteins. Nurr1-PARP1 interaction was verified by co-immunoprecipitation. In addition, both siRNA knockdown of PARP1 and treatment of AG14361, a specific PARP1 inhibitor suppressed the angiotensin II-mediated target gene induction in H295R cells. Furthermore, PARP1 inhibitor also suppressed the aldosterone secretion in response to the angiotensin II. Together, these results suggest PARP1 is a prime coregulator for Nurr1.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5983848PMC
http://dx.doi.org/10.3390/ijms19051406DOI Listing

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