Literature DB >> 24702258

CBS and CSE are critical for maintenance of mitochondrial function and glucocorticoid production in adrenal cortex.

Chang-Nan Wang1, Yu-Jian Liu, Guo-Li Duan, Wei Zhao, Xiao-Han Li, Xiao-Yan Zhu, Xin Ni.   

Abstract

AIMS: Mitochondria are known to play a central role in adrenocortical steroidogenesis. Recently, hydrogen sulfide (H2S), a gaseous transmitter endogenously produced by cystathionine-β-synthase (CBS) and cystathionine-γ-lyase (CSE), has been found to improve mitochondrial function. The present study aimed at examining whether CBS and CSE are expressed in adrenal glands, and investigated the role of these enzymes in the maintenance of mitochondrial function and the production of glucocorticoids in adrenocortical cells.
RESULTS: Both CBS and CSE are present in murine adrenocortical cells and account for H2S generation in adrenal glands. Using a combination of both in vivo and in vitro approaches, we demonstrated that either CBS/CSE inhibitors or small interfering RNAs led to mitochondrial oxidative stress and dysfunction, which meanwhile resulted in blunted corticosterone responses to adrenocorticotropic hormone (ACTH). These effects were significantly attenuated by the treatment of H2S donor GYY4137. Lipopolysaccharide (LPS) also caused mitochondrial damage, thereby resulting in adrenal insufficiency. Moreover, LPS inhibited CBS/CSE expression and H2S production in adrenal glands, while H₂S donor GYY4137 protected against LPS-induced mitochondrial damage and hyporesponsiveness to ACTH. Local suppression of CBS or CSE in adrenal glands significantly increased the mortality in endotoxemic mice, which was also improved by GYY4137. INNOVATION: The identification of endogenous H2S generation as critical regulators of adrenocortical responsiveness might result in the development of new therapeutic approaches for the treatment of relative adrenal insufficiency during sepsis.
CONCLUSIONS: Endogenous H₂S plays a critical role in the maintenance of mitochondrial function in the adrenal cortex, thereby resulting in an adequate adrenocortical response to ACTH.

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Year:  2014        PMID: 24702258     DOI: 10.1089/ars.2013.5682

Source DB:  PubMed          Journal:  Antioxid Redox Signal        ISSN: 1523-0864            Impact factor:   8.401


  14 in total

1.  Protective effects of exogenous NaHS against sepsis-induced myocardial mitochondrial injury by enhancing the PGC-1α/NRF2 pathway and mitochondrial biosynthesis in mice.

Authors:  Dongshi Liang; Airong Huang; Yimei Jin; Miaomiao Lin; Xiaojiao Xia; Xiaoli Chen; Airong Huang
Journal:  Am J Transl Res       Date:  2018-05-15       Impact factor: 4.060

2.  Cystathionine-γ-lyase (CSE) deficiency increases erythropoiesis and promotes mitochondrial electron transport via the upregulation of coproporphyrinogen III oxidase and consequent stimulation of heme biosynthesis.

Authors:  Katalin Módis; V-M Sadagopa Ramanujam; Armita Abdollahi Govar; Ernesto Lopez; Karl E Anderson; Rui Wang; Csaba Szabo
Journal:  Biochem Pharmacol       Date:  2019-08-14       Impact factor: 5.858

Review 3.  The cysteine proteome.

Authors:  Young-Mi Go; Joshua D Chandler; Dean P Jones
Journal:  Free Radic Biol Med       Date:  2015-04-03       Impact factor: 7.376

4.  Hydrogen sulfide prevents diaphragm weakness in cecal ligation puncture-induced sepsis by preservation of mitochondrial function.

Authors:  Hai-Xia Zhang; Jun-Ming Du; Zhong-Nuo Ding; Xiao-Yan Zhu; Lai Jiang; Yu-Jian Liu
Journal:  Am J Transl Res       Date:  2017-07-15       Impact factor: 4.060

Review 5.  Cystathionine-β-Synthase: Molecular Regulation and Pharmacological Inhibition.

Authors:  Karim Zuhra; Fiona Augsburger; Tomas Majtan; Csaba Szabo
Journal:  Biomolecules       Date:  2020-04-30

6.  Cystathionine beta synthase regulates mitochondrial dynamics and function in endothelial cells.

Authors:  Geeta Rao; Brennah Murphy; Anindya Dey; Shailendra Kumar Dhar Dwivedi; Yushan Zhang; Ram Vinod Roy; Prabir Chakraborty; Resham Bhattacharya; Priyabrata Mukherjee
Journal:  FASEB J       Date:  2020-05-28       Impact factor: 5.191

7.  Exogenous hydrogen sulfide mitigates the fatty liver in obese mice through improving lipid metabolism and antioxidant potential.

Authors:  Dongdong Wu; Nairui Zheng; Kunqing Qi; Huijun Cheng; Ziqiang Sun; Biao Gao; Youjing Zhang; Wuyan Pang; Chaoshen Huangfu; Shaoping Ji; Mengzhou Xue; Ailing Ji; Yanzhang Li
Journal:  Med Gas Res       Date:  2015-01-10

Review 8.  Role of Hydrogen Sulfide in Ischemia-Reperfusion Injury.

Authors:  Dongdong Wu; Jun Wang; Hui Li; Mengzhou Xue; Ailing Ji; Yanzhang Li
Journal:  Oxid Med Cell Longev       Date:  2015-05-12       Impact factor: 6.543

9.  Effect of Physical Exercise on the Febrigenic Signaling is Modulated by Preoptic Hydrogen Sulfide Production.

Authors:  Jonatas E Nogueira; Renato N Soriano; Rodrigo A R Fernandez; Heloísa D C Francescato; Rafael S Saia; Terezila M Coimbra; José Antunes-Rodrigues; Luiz G S Branco
Journal:  PLoS One       Date:  2017-01-24       Impact factor: 3.240

Review 10.  Role of Hydrogen Sulfide in the Endocrine System.

Authors:  Hao-Jie Chen; Ebenezeri Erasto Ngowi; Lei Qian; Tao Li; Yang-Zhe Qin; Jing-Jing Zhou; Ke Li; Xin-Ying Ji; Dong-Dong Wu
Journal:  Front Endocrinol (Lausanne)       Date:  2021-07-16       Impact factor: 5.555

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