Literature DB >> 33891828

Leptin Induces Epigenetic Regulation of Transient Receptor Potential Melastatin 7 in Rat Adrenal Pheochromocytoma Cells.

Bonnie Ho-Yee Yeung1,2, Kelly Griffiths1, Liron Berger3, Omkar Paudel3, Mi-Kyung Shin3, Liangyou Rui4, James S K Sham1,3, Vsevolod Y Polotsky3, Wan-Yee Tang1,2.   

Abstract

Obesity elevates the plasma level of leptin, which has been associated with hypertension. Our recent studies in mice demonstrated that leptin increases blood pressure by activating the carotid sinus nerve, which transmits the chemosensory input from carotid bodies (CBs) to the medullary centers, and that the effect of leptin is mediated via Trpm7 (TRP [transient receptor potential] melastatin 7) channels in CB glomus cells. We also found that Trpm7 overexpression and Trpm7 promoter demethylation in CBs correlate positively with the hyperleptinemia and leptin receptor overexpression in CBs. Hence, we postulated that leptin epigenetically regulates Trpm7 expression in CBs. We addressed our hypothesis by using rat adrenal pheochromocytoma (PC12) cells as a model of CB glomus cells. PC12 cells expressing LEPRb (long, active form of leptin receptor) showed dramatic induction of the promoter activity and expression of Trpm7 upon leptin treatment. The increased Trpm7 expression coincided with the reduction of CpG site-specific methylation and trimethylation of H3K27 (H3 [histone 3] K27 [lysine 27]) and the increase of acetylation of H3K27 and trimethylation of H3K4 (H3 lysine 4) at the Trpm7 promoter. The inhibitor of STAT3 (signal transducer and activator of transcription 3) signaling, SD1008, reversed the leptin-induced Trpm7 promoter activity via modulations of the binding of pSTAT3 (phosphorylated STAT3) and DNMT3B (DNA methyltransferase 3B) and modifications of H3K27 and H3K4 at the Trpm7 promoter. Our results suggest that leptin-activated pSTAT3 epigenetically regulates the transcription of Trpm7 through DNA methylation and histone modifications. Because epigenetic changes are reversible, targeting epigenetic modifications of Trpm7 may serve as a new therapeutic approach for the treatment of hypertension in obesity.

Entities:  

Keywords:  DNA methylation; LEPRb; TRPM7; histone modifications; leptin

Mesh:

Substances:

Year:  2021        PMID: 33891828      PMCID: PMC8399575          DOI: 10.1165/rcmb.2020-0374OC

Source DB:  PubMed          Journal:  Am J Respir Cell Mol Biol        ISSN: 1044-1549            Impact factor:   6.914


  22 in total

1.  8-benzyl-4-oxo-8-azabicyclo[3.2.1]oct-2-ene-6,7-dicarboxylic acid (SD-1008), a novel janus kinase 2 inhibitor, increases chemotherapy sensitivity in human ovarian cancer cells.

Authors:  Zhenfeng Duan; James Bradner; Edward Greenberg; Ralph Mazitschek; Rosemary Foster; Jennifer Mahoney; Michael V Seiden
Journal:  Mol Pharmacol       Date:  2007-08-03       Impact factor: 4.436

2.  Integration of genome-wide of Stat3 binding and epigenetic modification mapping with transcriptome reveals novel Stat3 target genes in glioma cells.

Authors:  Marcin Kruczyk; Piotr Przanowski; Michal Dabrowski; Karolina Swiatek-Machado; Jakub Mieczkowski; Ola Wallerman; Anna Ronowicz; Arkadiusz Piotrowski; Claes Wadelius; Bozena Kaminska; Jan Komorowski
Journal:  Biochim Biophys Acta       Date:  2014-08-08

3.  Expression of leptin and leptin receptor isoforms in the rat and human carotid body.

Authors:  Andrea Porzionato; Marcin Rucinski; Veronica Macchi; Carla Stecco; Ignazio Castagliuolo; Ludwik K Malendowicz; Raffaele De Caro
Journal:  Brain Res       Date:  2011-02-18       Impact factor: 3.252

4.  Leptin Induces Hypertension Acting on Transient Receptor Potential Melastatin 7 Channel in the Carotid Body.

Authors:  Mi-Kyung Shin; Candela Caballero Eraso; Yun-Ping Mu; Chenjuan Gu; Bonnie H Y Yeung; Lenise J Kim; Xiao-Ru Liu; Zhi-Juan Wu; Omkar Paudel; Luis E Pichard; Machiko Shirahata; Wan-Yee Tang; James S K Sham; Vsevolod Y Polotsky
Journal:  Circ Res       Date:  2019-09-23       Impact factor: 17.367

5.  Leptin is associated with blood pressure and hypertension in women from the National Heart, Lung, and Blood Institute Family Heart Study.

Authors:  Duanduan Ma; Mary F Feitosa; Jemma B Wilk; Jason M Laramie; Kai Yu; Catherine Leiendecker-Foster; Richard H Myers; Michael A Province; Ingrid B Borecki
Journal:  Hypertension       Date:  2009-02-09       Impact factor: 10.190

6.  Leptin stimulates both JAK2-dependent and JAK2-independent signaling pathways.

Authors:  Lin Jiang; Zhiqin Li; Liangyou Rui
Journal:  J Biol Chem       Date:  2008-08-21       Impact factor: 5.157

Review 7.  Leptin receptor signaling: pathways to leptin resistance.

Authors:  Joris Wauman; Jan Tavernier
Journal:  Front Biosci (Landmark Ed)       Date:  2011-06-01

Review 8.  Molecular Insight into the Interaction between Epigenetics and Leptin in Metabolic Disorders.

Authors:  Adam Wróblewski; Justyna Strycharz; Ewa Świderska; Karolina Drewniak; Józef Drzewoski; Janusz Szemraj; Jacek Kasznicki; Agnieszka Śliwińska
Journal:  Nutrients       Date:  2019-08-12       Impact factor: 5.717

9.  The accessible chromatin landscape of the human genome.

Authors:  Robert E Thurman; Eric Rynes; Richard Humbert; Jeff Vierstra; Matthew T Maurano; Eric Haugen; Nathan C Sheffield; Andrew B Stergachis; Hao Wang; Benjamin Vernot; Kavita Garg; Sam John; Richard Sandstrom; Daniel Bates; Lisa Boatman; Theresa K Canfield; Morgan Diegel; Douglas Dunn; Abigail K Ebersol; Tristan Frum; Erika Giste; Audra K Johnson; Ericka M Johnson; Tanya Kutyavin; Bryan Lajoie; Bum-Kyu Lee; Kristen Lee; Darin London; Dimitra Lotakis; Shane Neph; Fidencio Neri; Eric D Nguyen; Hongzhu Qu; Alex P Reynolds; Vaughn Roach; Alexias Safi; Minerva E Sanchez; Amartya Sanyal; Anthony Shafer; Jeremy M Simon; Lingyun Song; Shinny Vong; Molly Weaver; Yongqi Yan; Zhancheng Zhang; Zhuzhu Zhang; Boris Lenhard; Muneesh Tewari; Michael O Dorschner; R Scott Hansen; Patrick A Navas; George Stamatoyannopoulos; Vishwanath R Iyer; Jason D Lieb; Shamil R Sunyaev; Joshua M Akey; Peter J Sabo; Rajinder Kaul; Terrence S Furey; Job Dekker; Gregory E Crawford; John A Stamatoyannopoulos
Journal:  Nature       Date:  2012-09-06       Impact factor: 49.962

10.  Cellular and Developmental Biology of TRPM7 Channel-Kinase: Implicated Roles in Cancer.

Authors:  Nelson S Yee; Abid A Kazi; Rosemary K Yee
Journal:  Cells       Date:  2014-07-30       Impact factor: 6.600

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  1 in total

Review 1.  TRP Channels as Molecular Targets to Relieve Endocrine-Related Diseases.

Authors:  Yusheng Liu; Yihan Lyu; Hongmei Wang
Journal:  Front Mol Biosci       Date:  2022-04-28
  1 in total

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