Literature DB >> 22117068

Pro-survival effects of 17β-estradiol on osteocytes are mediated by nitric oxide/cGMP via differential actions of cGMP-dependent protein kinases I and II.

Nisha Marathe1, Hema Rangaswami, Shunhui Zhuang, Gerry R Boss, Renate B Pilz.   

Abstract

Estrogens promote bone health in part by increasing osteocyte survival, an effect that requires activation of the protein kinases Akt and ERK1/2, but the molecular mechanisms involved are only partly understood. Because estrogens increase nitric oxide (NO) synthesis and NO can have anti-apoptotic effects, we examined the role of NO/cGMP signaling in estrogen regulation of osteocyte survival. Etoposide-induced death of MLO-Y4 osteocyte-like cells, assessed by trypan blue staining, caspase-3 cleavage, and TUNEL assays, was completely prevented when cells were pre-treated with 17β-estradiol. This protective effect was mimicked when cells were pre-treated with a membrane-permeable cGMP analog and blocked by pharmacological inhibitors of NO synthase, soluble guanylate cyclase, or cGMP-dependent protein kinases (PKGs), supporting a requirement for NO/cGMP/PKG signaling downstream of 17β-estradiol. siRNA-mediated knockdown and viral reconstitution of individual PKG isoforms demonstrated that the anti-apoptotic effects of estradiol and cGMP were mediated by PKG Iα and PKG II. Akt and ERK1/2 activation by 17β-estradiol required PKG II, and cGMP mimicked the effects of estradiol on Akt and ERK, including induction of ERK nuclear translocation. cGMP induced BAD phosphorylation on several sites, and experiments with phosphorylation-deficient BAD mutants demonstrated that the anti-apoptotic effects of cGMP and 17β-estradiol required BAD phosphorylation on Ser(136) and Ser(155); these sites were targeted by Akt and PKG I, respectively, and regulate BAD interaction with Bcl-2. In conclusion, 17β-estradiol protects osteocytes against apoptosis by activating the NO/cGMP/PKG cascade; PKG II is required for estradiol-induced activation of ERK and Akt, and PKG Iα contributes to pro-survival signaling by directly phosphorylating BAD.

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Year:  2011        PMID: 22117068      PMCID: PMC3256896          DOI: 10.1074/jbc.M111.294959

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  54 in total

1.  cGMP-dependent protein kinase I beta physically and functionally interacts with the transcriptional regulator TFII-I.

Authors:  Darren E Casteel; Shunhui Zhuang; Tanima Gudi; Julian Tang; Milena Vuica; Stephen Desiderio; Renate B Pilz
Journal:  J Biol Chem       Date:  2002-06-24       Impact factor: 5.157

2.  NO mediates effects of estrogen on central regulation of blood pressure in restrained, ovariectomized rats.

Authors:  Anton Cherney; Heather Edgell; Teresa L Krukoff
Journal:  Am J Physiol Regul Integr Comp Physiol       Date:  2003-06-12       Impact factor: 3.619

3.  17beta-estradiol reduces cardiomyocyte apoptosis in vivo and in vitro via activation of phospho-inositide-3 kinase/Akt signaling.

Authors:  Richard D Patten; Isaac Pourati; Mark J Aronovitz; Jason Baur; Flore Celestin; Xin Chen; Ashour Michael; Syed Haq; Simone Nuedling; Christian Grohe; Thomas Force; Michael E Mendelsohn; Richard H Karas
Journal:  Circ Res       Date:  2004-09-02       Impact factor: 17.367

Review 4.  Minireview: Extranuclear steroid receptors: roles in modulation of cell functions.

Authors:  Ellis R Levin
Journal:  Mol Endocrinol       Date:  2010-09-22

5.  Nitric oxide donor alleviates ovariectomy-induced bone loss.

Authors:  S J Wimalawansa; G De Marco; P Gangula; C Yallampalli
Journal:  Bone       Date:  1996-04       Impact factor: 4.398

6.  Isosorbide mononitrate increases bone formation and decreases bone resorption in postmenopausal women: a randomized trial.

Authors:  Sophie A Jamal; Steven R Cummings; Gillian A Hawker
Journal:  J Bone Miner Res       Date:  2004-07-26       Impact factor: 6.741

7.  Akt plays a central role in the anti-apoptotic effect of estrogen in endothelial cells.

Authors:  Miho Koga; Katsuya Hirano; Mayumi Hirano; Junji Nishimura; Hitoo Nakano; Hideo Kanaide
Journal:  Biochem Biophys Res Commun       Date:  2004-11-05       Impact factor: 3.575

8.  Nitrate tolerance, oxidative stress, and mitochondrial function: another worrisome chapter on the effects of organic nitrates.

Authors:  John D Parker
Journal:  J Clin Invest       Date:  2004-02       Impact factor: 14.808

9.  Regulator of G-protein signaling-2 mediates vascular smooth muscle relaxation and blood pressure.

Authors:  K Mary Tang; Guang-rong Wang; Ping Lu; Richard H Karas; Mark Aronovitz; Scott P Heximer; Kevin M Kaltenbronn; Kendall J Blumer; David P Siderovski; Yan Zhu; Michael E Mendelsohn; Mary Tang; Guang Wang
Journal:  Nat Med       Date:  2003-11-09       Impact factor: 53.440

10.  Effect of nitric oxide donor nitroglycerin on bone mineral density in a rat model of estrogen deficiency-induced osteopenia.

Authors:  M Hukkanen; L A M Platts; T Lawes; S I Girgis; Y T Konttinen; A E Goodship; I MacIntyre; Julia M Polak
Journal:  Bone       Date:  2003-02       Impact factor: 4.398

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  42 in total

1.  A Novel, Direct NO Donor Regulates Osteoblast and Osteoclast Functions and Increases Bone Mass in Ovariectomized Mice.

Authors:  Hema Kalyanaraman; Ghania Ramdani; Jisha Joshua; Nadine Schall; Gerry R Boss; Esther Cory; Robert L Sah; Darren E Casteel; Renate B Pilz
Journal:  J Bone Miner Res       Date:  2016-09-07       Impact factor: 6.741

Review 2.  Estrogen and the skeleton.

Authors:  Sundeep Khosla; Merry Jo Oursler; David G Monroe
Journal:  Trends Endocrinol Metab       Date:  2012-05-16       Impact factor: 12.015

Review 3.  A look behind the scenes: the risk and pathogenesis of primary osteoporosis.

Authors:  Gretl Hendrickx; Eveline Boudin; Wim Van Hul
Journal:  Nat Rev Rheumatol       Date:  2015-04-21       Impact factor: 20.543

4.  Protein Kinase G Activation Reverses Oxidative Stress and Restores Osteoblast Function and Bone Formation in Male Mice With Type 1 Diabetes.

Authors:  Hema Kalyanaraman; Gerburg Schwaerzer; Ghania Ramdani; Francine Castillo; Brian T Scott; Wolfgang Dillmann; Robert L Sah; Darren E Casteel; Renate B Pilz
Journal:  Diabetes       Date:  2018-01-04       Impact factor: 9.461

5.  Soluble guanylate cyclase as a novel treatment target for osteoporosis.

Authors:  Jisha Joshua; Gerburg K Schwaerzer; Hema Kalyanaraman; Esther Cory; Robert L Sah; Mofei Li; Florin Vaida; Gerry R Boss; Renate B Pilz
Journal:  Endocrinology       Date:  2014-09-04       Impact factor: 4.736

6.  Analysis of short-term treatment with the phosphodiesterase type 5 inhibitor tadalafil on long bone development in young rats.

Authors:  Luqiang Wang; Haoruo Jia; Robert J Tower; Michael A Levine; Ling Qin
Journal:  Am J Physiol Endocrinol Metab       Date:  2018-06-19       Impact factor: 4.310

Review 7.  The molecular mechanisms underlying the pharmacological actions of estrogens, SERMs and oxysterols: implications for the treatment and prevention of osteoporosis.

Authors:  Erik R Nelson; Suzanne E Wardell; Donald P McDonnell
Journal:  Bone       Date:  2012-11-17       Impact factor: 4.398

8.  17β-Estradiol reduces mitochondrial cAMP content and cytochrome oxidase activity in a phosphodiesterase 2-dependent manner.

Authors:  Sofya Pozdniakova; Mariona Guitart-Mampel; Gloria Garrabou; Giulietta Di Benedetto; Yury Ladilov; Vera Regitz-Zagrosek
Journal:  Br J Pharmacol       Date:  2018-09-08       Impact factor: 8.739

9.  Protein kinase G1 regulates bone regeneration and rescues diabetic fracture healing.

Authors:  Nadine Schall; Julian J Garcia; Hema Kalyanaraman; Shyamsundar Pal China; Jenna J Lee; Robert L Sah; Alexander Pfeifer; Renate B Pilz
Journal:  JCI Insight       Date:  2020-05-07

Review 10.  Nitric oxide signaling in mechanical adaptation of bone.

Authors:  J Klein-Nulend; R F M van Oers; A D Bakker; R G Bacabac
Journal:  Osteoporos Int       Date:  2013-12-10       Impact factor: 4.507

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