Literature DB >> 28863887

Development of monoclonal antibodies against the human 3β-hydroxysteroid dehydrogenase/isomerase isozymes.

Celso E Gomez-Sanchez1, Mark Lewis2, Kazutaka Nanba3, William E Rainey3, Maniselvan Kuppusamy4, Elise P Gomez-Sanchez5.   

Abstract

The human 3β-hydroxysteroid dehydrogenase/isomerase (HSD3B) enzymes catalyze the conversion of 3β-hydroxy Δ5-6 steroids into 3-keto Δ4-5 steroids, which is required for the synthesis of the mature steroid hormones secreted by the adrenal and gonads. The human has 2 isozymes, the HSD3B1 that is traditionally located in placenta and extra-adrenal tissues and the HSD3B2 that is expressed in the adrenal and gonads. Mice with both cryptochrome 1 and 2 genes deletion were recently found to have salt-sensitive hypertension and hyperaldosteronism. These deletions were also associated with overexpression of the Hsd3b6 enzyme, the homolog of the human HSD3B1, in the zona glomerulosa which was believed to explain the hyperaldosteronism. A report using antibodies against human HSD3B1 suggested that it was expressed in the zona glomerulosa of normal human adrenals and in patients with idiopathic hyperaldosteronism and the HSD3B2 expressed in both the zona fasciculata and glomerulosa. We have developed specific monoclonal antibodies against the human HSD3B1 and HSD3B2 isozymes and found that the main enzyme expressed in the zona glomerulosa was the HSD3B2. Faint staining of the adrenal was also obtained using the anti-HSD3B1antibody only at high concentrations of antibody. This study fails to confirm that HSD3B1 expression in the human zona glomerulosa and double immunofluorescence clearly shows that the HSD3B2 is expressed in the zona glomerulosa and fasciculata and in the zona glomerulosa HSD3B2 is co-expressed with aldosterone synthase (CYP11B2). Published by Elsevier Inc.

Entities:  

Keywords:  3β-hydroxysteroid dehydrogenase/4-5 isomerase; Adrenal; Monoclonal antibodies; Zona glomerulosa

Mesh:

Substances:

Year:  2017        PMID: 28863887      PMCID: PMC5628156          DOI: 10.1016/j.steroids.2017.08.011

Source DB:  PubMed          Journal:  Steroids        ISSN: 0039-128X            Impact factor:   2.668


  14 in total

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Authors:  K J Livak; T D Schmittgen
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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

Review 3.  Hypertension due to loss of clock: novel insight from the molecular analysis of Cry1/Cry2-deleted mice.

Authors:  Hitoshi Okamura; Masao Doi; Yoshiaki Yamaguchi; Jean-Michel Fustin
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4.  3β-Hydroxysteroid dehydrogenase isoforms in human aldosterone-producing adenoma.

Authors:  Sachiko Konosu-Fukaya; Yasuhiro Nakamura; Fumitoshi Satoh; Saulo J A Felizola; Takashi Maekawa; Yoshikiyo Ono; Ryo Morimoto; Kazue Ise; Ken-Ichiro Takeda; Koshin Katsu; Fumiyoshi Fujishima; Atsuko Kasajima; Mika Watanabe; Yoichi Arai; Elise P Gomez-Sanchez; Celso E Gomez-Sanchez; Masao Doi; Hitoshi Okamura; Hironobu Sasano
Journal:  Mol Cell Endocrinol       Date:  2014-10-22       Impact factor: 4.102

5.  Mitochondrial 3β-hydroxysteroid dehydrogenase enzyme activity requires reversible pH-dependent conformational change at the intermembrane space.

Authors:  Manoj Prasad; James L Thomas; Randy M Whittal; Himangshu S Bose
Journal:  J Biol Chem       Date:  2012-01-19       Impact factor: 5.157

6.  Isoform-specific monoclonal antibodies against 3β-hydroxysteroid dehydrogenase/isomerase family provide markers for subclassification of human primary aldosteronism.

Authors:  Masao Doi; Fumitoshi Satoh; Takashi Maekawa; Yasuhiro Nakamura; Jean-Michel Fustin; Motomi Tainaka; Yunhong Hotta; Yukari Takahashi; Ryo Morimoto; Kei Takase; Sadayoshi Ito; Hironobu Sasano; Hitoshi Okamura
Journal:  J Clin Endocrinol Metab       Date:  2013-01-01       Impact factor: 5.958

Review 7.  The molecular biology, biochemistry, and physiology of human steroidogenesis and its disorders.

Authors:  Walter L Miller; Richard J Auchus
Journal:  Endocr Rev       Date:  2010-11-04       Impact factor: 19.871

8.  A single-step technique for selecting and cloning hybridomas for monoclonal antibody production.

Authors:  J M Davis
Journal:  Methods Enzymol       Date:  1986       Impact factor: 1.600

9.  Salt-sensitive hypertension in circadian clock-deficient Cry-null mice involves dysregulated adrenal Hsd3b6.

Authors:  Masao Doi; Yukari Takahashi; Rie Komatsu; Fumiyoshi Yamazaki; Hiroyuki Yamada; Shogo Haraguchi; Noriaki Emoto; Yasushi Okuno; Gozoh Tsujimoto; Akihiro Kanematsu; Osamu Ogawa; Takeshi Todo; Kazuyoshi Tsutsui; Gijsbertus T J van der Horst; Hitoshi Okamura
Journal:  Nat Med       Date:  2009-12-13       Impact factor: 53.440

10.  Differences in substrate and inhibitor kinetics of human type 1 and type 2 3beta-hydroxysteroid dehydrogenase are explained by the type 1 mutant, H156Y.

Authors:  James L Thomas; J Ian Mason; Stacey Brandt; Wendy Norris
Journal:  Endocr Res       Date:  2002-11       Impact factor: 1.720

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  11 in total

1.  AR Signaling in Prostate Cancer Regulates a Feed-Forward Mechanism of Androgen Synthesis by Way of HSD3B1 Upregulation.

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Journal:  Endocrinology       Date:  2018-08-01       Impact factor: 4.736

2.  Expression of aldosterone synthase CYP11B2 was inversely correlated with longevity.

Authors:  Taiki Hayashi; Zhen Zhang; Ghaith Al-Eyd; Atsushi Sasaki; Masanori Yasuda; Masafumi Oyama; Celso E Gomez-Sanchez; Hirotaka Asakura; Tsugio Seki; Kuniaki Mukai; Koshiro Nishimoto
Journal:  J Steroid Biochem Mol Biol       Date:  2019-04-08       Impact factor: 4.292

3.  In situ metabolomics of aldosterone-producing adenomas.

Authors:  Masanori Murakami; Yara Rhayem; Thomas Kunzke; Na Sun; Annette Feuchtinger; Philippe Ludwig; Tim Matthias Strom; Celso Gomez-Sanchez; Thomas Knösel; Thomas Kirchner; Tracy Ann Williams; Martin Reincke; Axel Karl Walch; Felix Beuschlein
Journal:  JCI Insight       Date:  2019-09-05

4.  Genetics of aldosterone-producing adenomas with pathogenic KCNJ5 variants.

Authors:  Antonio M Lerario; Kazutaka Nanba; Amy R Blinder; Sachiko Suematsu; Masao Omura; Tetsuo Nishikawa; Thomas J Giordano; William E Rainey; Tobias Else
Journal:  Endocr Relat Cancer       Date:  2019-02-01       Impact factor: 5.678

5.  Targeted Mutational Analysis of Cortisol-Producing Adenomas.

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Journal:  J Clin Endocrinol Metab       Date:  2022-01-18       Impact factor: 6.134

Review 6.  The Biology of Normal Zona Glomerulosa and Aldosterone-Producing Adenoma: Pathological Implications.

Authors:  Teresa M Seccia; Brasilina Caroccia; Elise P Gomez-Sanchez; Celso E Gomez-Sanchez; Gian Paolo Rossi
Journal:  Endocr Rev       Date:  2018-12-01       Impact factor: 19.871

7.  The Age-Dependent Changes of the Human Adrenal Cortical Zones Are Not Congruent.

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8.  Targeted RNA sequencing of adrenal zones using immunohistochemistry-guided capture of formalin-fixed paraffin-embedded tissue.

Authors:  Jessica E Baker; Samuel W Plaska; Zhaoping Qin; Chia-Jen Liu; Juilee Rege; William E Rainey; Aaron M Udager
Journal:  Mol Cell Endocrinol       Date:  2021-04-26       Impact factor: 4.369

9.  Endogenous Purification of NR4A2 (Nurr1) Identified Poly(ADP-Ribose) Polymerase 1 as a Prime Coregulator in Human Adrenocortical H295R Cells.

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Journal:  Int J Mol Sci       Date:  2018-05-08       Impact factor: 5.923

10.  Role of Cryptochrome-1 and Cryptochrome-2 in Aldosterone-Producing Adenomas and Adrenocortical Cells.

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Journal:  Int J Mol Sci       Date:  2018-06-05       Impact factor: 5.923

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