Literature DB >> 19418629

Mechanisms of angiotensin II-mediated regulation of aldosterone synthase expression in H295R human adrenocortical and rat adrenal glomerulosa cells.

Mária Szekeres1, Gábor Turu, Anna Orient, Bence Szalai, Katinka Süpeki, Miklós Cserzo, Péter Várnai, László Hunyady.   

Abstract

In adrenal zona glomerulosa cells angiotensin II (Ang II) is a key regulator of steroidogenesis. Our purpose was to compare the mechanisms of Ang II-induced changes in the expression level of early transcription factors NR4A1 (NGFIB) and NR4A2 (Nurr1) genes, and the CYP11B2 gene encoding aldosterone synthase in H295R human adrenocortical tumor cells and in primary rat adrenal glomerulosa cells. Real-time PCR studies have demonstrated that Ang II increased the expression levels of NR4A1 and NR4A2 in H295R cells within 1 h after stimulation, which persisted up to 6 h; whereas in rat adrenal glomerulosa cells the kinetics of the expression of these genes were more rapid and transient. Ang II also induced prolonged nuclear translocation of Nurr1 and NGFIB proteins in both cell types. Studies using MEK inhibitor (PD98059, 20 microM), protein kinase C inhibitor (BIM1, 3 microM) and calmodulin kinase (CAMK) inhibitor (KN93, 10 microM) revealed that in rat adrenal glomerulosa cells CAMK-mediated mechanisms play a predominant role in the regulation of CYP11B2. In accordance with earlier findings, in H295R cells MEK inhibition increased the expression of NR4A1, NR4A2 and CYP11B2 genes, however, it decreased the Ang II-induced gene expression levels, suggesting that ERK activation has a role in control of expression of these genes. No such mechanism was detected in rat glomerulosa cells. Sar1-Ile4-Ile8-AngII, which can cause G protein-independent ERK activation, also stimulated the expression of CYP11B2 in H295R cells. These data suggest that the previously reported CAMK-mediated stimulation of early transcription factors NGFIB and Nurr1 has a predominant role in Ang II-induced CYP11B2 activation in rat adrenal glomerulosa cells, whereas in H295R cells ERK activation and G protein-independent mechanisms also contribute to this process.

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Year:  2009        PMID: 19418629     DOI: 10.1016/j.mce.2008.12.015

Source DB:  PubMed          Journal:  Mol Cell Endocrinol        ISSN: 0303-7207            Impact factor:   4.102


  13 in total

1.  Comparison of aldosterone production among human adrenocortical cell lines.

Authors:  T Wang; J G Rowland; J Parmar; M Nesterova; T Seki; W E Rainey
Journal:  Horm Metab Res       Date:  2012-01-20       Impact factor: 2.936

Review 2.  Acute and chronic regulation of aldosterone production.

Authors:  Namita G Hattangady; Lawrence O Olala; Wendy B Bollag; William E Rainey
Journal:  Mol Cell Endocrinol       Date:  2011-08-04       Impact factor: 4.102

3.  Angiotensin II-regulated transcription regulatory genes in adrenal steroidogenesis.

Authors:  Damian G Romero; Elise P Gomez-Sanchez; Celso E Gomez-Sanchez
Journal:  Physiol Genomics       Date:  2010-09-28       Impact factor: 3.107

4.  NADPH oxidase-derived H(2)O(2) contributes to angiotensin II-induced aldosterone synthesis in human and rat adrenal cortical cells.

Authors:  Senthilkumar B Rajamohan; Gayatri Raghuraman; Nanduri R Prabhakar; Ganesh K Kumar
Journal:  Antioxid Redox Signal       Date:  2012-03-02       Impact factor: 8.401

5.  Angiotensin II type 1 receptor signalling regulates microRNA differentially in cardiac fibroblasts and myocytes.

Authors:  Pia Lindgren Jeppesen; Gitte Lund Christensen; Mikael Schneider; Anne Yaël Nossent; Hasse Brønnum Jensen; Ditte Caroline Andersen; Tilde Eskildsen; Steen Gammeltoft; Jakob Lerche Hansen; Søren Paludan Sheikh
Journal:  Br J Pharmacol       Date:  2011-09       Impact factor: 8.739

6.  Adrenal cell aldosterone production is stimulated by very-low-density lipoprotein (VLDL).

Authors:  Yewei Xing; William E Rainey; John W Apolzan; Omar L Francone; Ruth B S Harris; Wendy B Bollag
Journal:  Endocrinology       Date:  2011-12-20       Impact factor: 4.736

7.  Inhibitory effect of bufalin and cinobufagin on steroidogenesis via the activation of ERK in human adrenocortical cells.

Authors:  Mei-Mei Kau; Jiing-Rong Wang; Shiow-Chwen Tsai; Ching-Han Yu; Paulus S Wang
Journal:  Br J Pharmacol       Date:  2012-03       Impact factor: 8.739

8.  Gene expression profiles in aldosterone-producing adenomas and adjacent adrenal glands.

Authors:  Tao Wang; Fumitoshi Satoh; Ryo Morimoto; Yasuhiro Nakamura; Hironobu Sasano; Richard J Auchus; Michael A Edwards; William E Rainey
Journal:  Eur J Endocrinol       Date:  2011-01-19       Impact factor: 6.664

9.  Angiotensin II triggers expression of the adrenal gland zona glomerulosa-specific 3β-hydroxysteroid dehydrogenase isoenzyme through de novo protein synthesis of the orphan nuclear receptors NGFIB and NURR1.

Authors:  Takumi Ota; Masao Doi; Fumiyoshi Yamazaki; Daisuke Yarimizu; Kazuki Okada; Iori Murai; Hida Hayashi; Sumihiro Kunisue; Yuuki Nakagawa; Hitoshi Okamura
Journal:  Mol Cell Biol       Date:  2014-08-04       Impact factor: 4.272

10.  Transcriptional network analysis reveals that AT1 and AT2 angiotensin II receptors are both involved in the regulation of genes essential for glioma progression.

Authors:  Hátylas Azevedo; André Fujita; Silvia Yumi Bando; Priscila Iamashita; Carlos Alberto Moreira-Filho
Journal:  PLoS One       Date:  2014-11-03       Impact factor: 3.240

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