Literature DB >> 33692340

CTRP12 ameliorates atherosclerosis by promoting cholesterol efflux and inhibiting inflammatory response via the miR-155-5p/LXRα pathway.

Gang Wang1, Jiao-Jiao Chen2, Wen-Yi Deng2, Kun Ren2,3, Shan-Hui Yin4, Xiao-Hua Yu5.   

Abstract

C1q tumor necrosis factor-related protein 12 (CTRP12), a conserved paralog of adiponectin, is closely associated with cardiovascular disease. However, little is known about its role in atherogenesis. The aim of this study was to examine the influence of CTRP12 on atherosclerosis and explore the underlying mechanisms. Our results showed that lentivirus-mediated CTRP12 overexpression inhibited lipid accumulation and inflammatory response in lipid-laden macrophages. Mechanistically, CTRP12 decreased miR-155-5p levels and then increased its target gene liver X receptor α (LXRα) expression, which increased ATP binding cassette transporter A1 (ABCA1)- and ABCG1-dependent cholesterol efflux and promoted macrophage polarization to the M2 phenotype. Injection of lentiviral vector expressing CTRP12 decreased atherosclerotic lesion area, elevated plasma high-density lipoprotein cholesterol levels, promoted reverse cholesterol transport (RCT), and alleviated inflammatory response in apolipoprotein E-deficient (apoE-/-) mice fed a Western diet. Similar to the findings of in vitro experiments, CTRP12 overexpression diminished miR-155-5p levels but increased LXRα, ABCA1, and ABCG1 expression in the aortas of apoE-/- mice. Taken together, these results suggest that CTRP12 protects against atherosclerosis by enhancing RCT efficiency and mitigating vascular inflammation via the miR-155-5p/LXRα pathway. Stimulating CTRP12 production could be a novel approach for reducing atherosclerosis.

Entities:  

Year:  2021        PMID: 33692340      PMCID: PMC7947013          DOI: 10.1038/s41419-021-03544-8

Source DB:  PubMed          Journal:  Cell Death Dis            Impact factor:   8.469


  63 in total

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3.  Liver X receptor activation controls intracellular cholesterol trafficking and esterification in human macrophages.

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4.  CTBP1‑AS2 inhibits proliferation and induces autophagy in ox‑LDL‑stimulated vascular smooth muscle cells by regulating miR‑195‑5p/ATG14.

Authors:  Yang Wang; Cheng-Xin Zhang; Sheng-Lin Ge; Wen-Hui Gong
Journal:  Int J Mol Med       Date:  2020-06-02       Impact factor: 4.101

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Authors:  Mark W Feinberg; Kathryn J Moore
Journal:  Circ Res       Date:  2016-02-19       Impact factor: 17.367

6.  Adiponectin reduces atherosclerosis in apolipoprotein E-deficient mice.

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7.  Adipolin/CTRP12 protects against pathological vascular remodeling through suppression of smooth muscle cell growth and macrophage inflammatory response.

Authors:  Hayato Ogawa; Koji Ohashi; Masanori Ito; Rei Shibata; Noriyoshi Kanemura; Daisuke Yuasa; Takahiro Kambara; Kazuhiro Matsuo; Satoko Hayakawa; Mizuho Hiramatsu-Ito; Naoya Otaka; Hiroshi Kawanishi; Shukuro Yamaguchi; Takashi Enomoto; Takaya Abe; Mari Kaneko; Mikito Takefuji; Toyoaki Murohara; Noriyuki Ouchi
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Journal:  Arterioscler Thromb Vasc Biol       Date:  2009-10-01       Impact factor: 8.311

10.  Decreased serum levels of CTRP12/adipolin in patients with coronary artery disease in relation to inflammatory cytokines and insulin resistance.

Authors:  Reza Fadaei; Nariman Moradi; Tooba Kazemi; Elham Chamani; Nahid Azdaki; Sayed Ali Moezibady; Shiva Shahmohamadnejad; Soudabeh Fallah
Journal:  Cytokine       Date:  2018-10-15       Impact factor: 3.861

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  6 in total

Review 1.  The Extensive Regulation of MicroRNA in Immune Thrombocytopenia.

Authors:  Yuerong Zhao; Siyuan Cui; Yan Wang; Ruirong Xu
Journal:  Clin Appl Thromb Hemost       Date:  2022 Jan-Dec       Impact factor: 3.512

2.  CTRP12 alleviates cardiomyocyte ischemia‑reperfusion injury via regulation of KLF15.

Authors:  Bo Liao; Xiaoyuan Tian
Journal:  Mol Med Rep       Date:  2022-06-03       Impact factor: 3.423

3.  Asprosin inhibits macrophage lipid accumulation and reduces atherosclerotic burden by up-regulating ABCA1 and ABCG1 expression via the p38/Elk-1 pathway.

Authors:  Jin Zou; Can Xu; Zhen-Wang Zhao; Shan-Hui Yin; Gang Wang
Journal:  J Transl Med       Date:  2022-07-28       Impact factor: 8.440

4.  Implication of miR-155-5p and miR-143-3p in the Vascular Insulin Resistance and Instability of Human and Experimental Atherosclerotic Plaque.

Authors:  Paula González-López; Carla Ares-Carral; Andrea R López-Pastor; Jorge Infante-Menéndez; Tamara González Illaness; Melina Vega de Ceniga; Leticia Esparza; Nuria Beneit; José Luis Martín-Ventura; Óscar Escribano; Almudena Gómez-Hernández
Journal:  Int J Mol Sci       Date:  2022-09-06       Impact factor: 6.208

5.  Role of serum C1q/TNF-related protein family levels in patients with acute coronary syndrome.

Authors:  Yixiang Liu; Chen Wei; Zhenjiang Ding; Enhong Xing; Zhuoyan Zhao; Fei Shi; Yanan Tian; Ying Zhang; Wenjun Fan; Lixian Sun
Journal:  Front Cardiovasc Med       Date:  2022-08-19

Review 6.  The Role of Anti-Inflammatory Adipokines in Cardiometabolic Disorders: Moving beyond Adiponectin.

Authors:  Han Na Jung; Chang Hee Jung
Journal:  Int J Mol Sci       Date:  2021-12-16       Impact factor: 5.923

  6 in total

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