Literature DB >> 30595118

Regulation of Atrial Fibrosis by the Bone.

Yi Yi1, Lili Du1, Mu Qin1, Xiao-Qing Chen1, Xue-Nan Sun2,3,4,5, Chao Li6, Lin-Juan Du2,3,5, Yuan Liu2,3,4,5, Yan Liu2,3,5, Jian-Yong Sun2,3,5, Zisheng Tang2,3,7, Min Xu2,3,8, Bing Fang2,3,8, Xu Liu1, Sheng-Zhong Duan2,3,5.   

Abstract

MR (mineralocorticoid receptor) antagonists have been demonstrated to provide beneficial effects on preventing atrial fibrosis. However, the underlying cellular and molecular mechanisms remain unclear. We aim to determine the role of osteoblast MR in atrial fibrosis and to explore the underlying mechanism. Using osteoblast MR knockout mouse in combination with mutant TGF (transforming growth factor)-β1 transgenic mouse, we demonstrated that MR deficiency in osteoblasts significantly attenuated atrial fibrosis. Mechanistically, MR directly regulated expression of OCN (osteocalcin) in osteoblasts. Both carboxylated and undercarboxylated OCNs (ucOC) were less secreted in osteoblast MR knockout mice. Mutant TGF-β1 transgenic mice supplemented with recombinant ucOC showed aggravated atrial fibrosis. In cultured atrial fibroblasts, ucOC treatment promoted proliferation and migration of atrial fibroblasts, whereas cotreatment with an antagonist for a GPRC6A (G-protein-coupled receptor, family C, group 6, member A) abolished these effects. Western blotting analysis revealed upregulation of PKA (protein kinase A) and CREB (cAMP-response element-binding protein) phosphorylation after ucOC treatment. Inhibition of PKA with its antagonist reduced ucOC-induced proliferation and migration of atrial fibroblasts. Finally, the impact of osteoblast MR deficiency on atrial fibrosis was abolished by ucOC administration in mutant TGF-β1 transgenic mice. Taken together, MR deficiency in osteoblasts attenuated atrial fibrosis by downregulation of OCN to promote proliferation and migration of atrial fibroblasts.

Entities:  

Keywords:  cardiovascular diseases; fibrosis; mineralocorticoid receptor; osteoblasts; osteocalcin

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Year:  2019        PMID: 30595118     DOI: 10.1161/HYPERTENSIONAHA.118.11544

Source DB:  PubMed          Journal:  Hypertension        ISSN: 0194-911X            Impact factor:   10.190


  2 in total

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Authors:  Johann Bauersachs; Achim Lother
Journal:  Kidney Int Suppl (2011)       Date:  2022-03-18

2.  PU.1 inhibition attenuates atrial fibrosis and atrial fibrillation vulnerability induced by angiotensin-II by reducing TGF-β1/Smads pathway activation.

Authors:  Juan Hu; Jing-Jing Zhang; Li Li; Shan-Ling Wang; Hai-Tao Yang; Xian-Wei Fan; Lei-Ming Zhang; Guang-Ling Hu; Hai-Xia Fu; Wei-Feng Song; Li-Jie Yan; Jing-Jing Liu; Jin-Tao Wu; Bin Kong
Journal:  J Cell Mol Med       Date:  2021-06-15       Impact factor: 5.310

  2 in total

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