Angiogenic Deficiency and Adipose Tissue Dysfunction Are Associated with Macrophage Malfunction in SIRT1-/- Mice

被引:55
作者
Xu, Fen [1 ]
Burk, David [2 ]
Gao, Zhanguo [2 ]
Yin, Jun [2 ,3 ]
Zhang, Xia [4 ]
Weng, Jianping [1 ]
Ye, Jianping [2 ]
机构
[1] Sun Yat Sen Univ, Affiliated Hosp 3, Dept Endocrinol, Guangzhou 510630, Guangdong, Peoples R China
[2] Louisiana State Univ Syst, Pennington Biomed Res Ctr, Baton Rouge, LA 70808 USA
[3] Shanghai Jiao Tong Univ, Affiliated Peoples Hosp 6, Dept Endocrinol & Metab, Shanghai 200233, Peoples R China
[4] Univ Maryland, Dept Cell Biol & Mol Genet, College Pk, MD 20742 USA
基金
美国国家卫生研究院; 国家杰出青年科学基金;
关键词
IN-VIVO; STIMULATES ANGIOGENESIS; TRANSCRIPTION FACTORS; INSULIN-RESISTANCE; KAPPA-B; OBESITY; ADIPOGENESIS; INFLAMMATION; HOMEOSTASIS; METABOLISM;
D O I
10.1210/en.2011-1667
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
The histone deacetylase sirtuin 1 (SIRT1) inhibits adipocyte differentiation and suppresses inflammation by targeting the transcription factors peroxisome proliferator-activated receptor gamma and nuclear factor kappa B. Although this suggests that adiposity and inflammation should be enhanced when SIRT1 activity is inactivated in the body, this hypothesis has not been tested in SIRT1 null (SIRT1(-/-)) mice. In this study, we addressed this issue by investigating the adipose tissue in SIRT1(-/-) mice. Compared with their wild-type littermates, SIRT1 null mice exhibited a significant reduction in body weight. In adipose tissue, the average size of adipocytes was smaller, the content of extracellular matrix was lower, adiponectin and leptin were expressed at 60% of normal level, and adipocyte differentiation was reduced. All of these changes were observed with a 50% reduction in capillary density that was determined using a three-dimensional imaging technique. Except for vascular endothelial growth factor, the expression of several angiogenic factors (Pdgf, Hgf, endothelin, apelin, and Tgf-beta) was reduced by about 50%. Macrophage infiltration and inflammatory cytokine expression were 70% less in the adipose tissue of null mice and macrophage differentiation was significantly inhibited in SIRT1(-/-) mouse embryonic fibroblasts in vitro. In wild-type mice, macrophage deletion led to a reduction in vascular density. These data suggest that SIRT1 controls adipose tissue function through regulation of angiogenesis, whose deficiency is associated with macrophage malfunction in SIRT1(-/-) mice. The study supports the concept that inflammation regulates angiogenesis in the adipose tissue. (Endocrinology 153: 1706-1716, 2012)
引用
收藏
页码:1706 / 1716
页数:11
相关论文
共 50 条
  • [21] Diet-induced obesity has a differential effect on adipose tissue and macrophage inflammatory responses of young and old mice
    Wu, Dayong
    Ren, Zhihong
    Pae, Munkyong
    Han, Sung Nim
    Meydani, Simin Nikbin
    BIOFACTORS, 2013, 39 (03) : 326 - 333
  • [22] SIRT1 enhances glucose tolerance by potentiating brown adipose tissue function
    Boutant, Marie
    Joffraud, Magali
    Kulkarni, Sameer S.
    Garcia-Casarrubios, Ester
    Garcia-Roves, Pablo M.
    Ratajczak, Joanna
    Fernandez-Marcos, Pablo J.
    Valverde, Angela M.
    Serrano, Manuel
    Canto, Carles
    MOLECULAR METABOLISM, 2015, 4 (02): : 118 - 131
  • [23] Brown Remodeling of White Adipose Tissue by SirT1-Dependent Deacetylation of Pparγ
    Qiang, Li
    Wang, Liheng
    Kon, Ning
    Zhao, Wenhui
    Lee, Sangkyu
    Zhang, Yiying
    Rosenbaum, Michael
    Zhao, Yingming
    Gu, Wei
    Farmer, Stephen R.
    Accili, Domenico
    CELL, 2012, 150 (03) : 620 - 632
  • [24] Spexin improves adipose tissue inflammation and macrophage recruitment in obese mice
    Eliana Gambaro, Sabrina
    Guillermina Zubiria, Maria
    Paula Giordano, Alejandra
    Estefania Portales, Andrea
    Alzamendi, Ana
    Rumbo, Martin
    Giovambattista, Andres
    BIOCHIMICA ET BIOPHYSICA ACTA-MOLECULAR AND CELL BIOLOGY OF LIPIDS, 2020, 1865 (07):
  • [25] Moderate SIRT1 overexpression protects against brown adipose tissue inflammation
    Escalona-Garrido, Carmen
    Vazquez, Patricia
    Mera, Paula
    Zagmutt, Sebastian
    Garcia-Casarrubios, Ester
    Montero-Pedrazuela, Ana
    Rey-Stolle, Fernanda
    Guadano-Ferraz, Ana
    Ruperez, Francisco J.
    Serra, Dolors
    Herrero, Laura
    Obregon, Maria Jesus
    Valverde, Angela M.
    MOLECULAR METABOLISM, 2020, 42
  • [26] Macrophage Polarization Mediated by Mitochondrial Dysfunction Induces Adipose Tissue Inflammation in Obesity
    Xu, Long
    Yan, Xiaoyu
    Zhao, Yuanxin
    Wang, Jian
    Liu, Buhan
    Yu, Sihang
    Fu, Jiaying
    Liu, Yanan
    Su, Jing
    INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2022, 23 (16)
  • [27] Paradoxical role of tumor necrosis factor on metabolic dysfunction and adipose tissue expansion in mice
    Martins, Lais Bhering
    de Oliveira, Marina Chaves
    Menezes-Garcia, Zelia
    Rodrigues, Debora Fernandes
    Lana, Jaqueline Pereira
    Vieira, Leda Quercia
    Teixeira, Mauro Martins
    Matos Ferreira, Adaliene Versiani
    NUTRITION, 2018, 50 : 1 - 7
  • [28] Differences in macrophage polarization in the adipose tissue of obese mice under various levels of exercise intensity
    Baek, Kyung-Wan
    Lee, Da-In
    Kang, Shin Ae
    Yu, Hak Sun
    JOURNAL OF PHYSIOLOGY AND BIOCHEMISTRY, 2020, 76 (01) : 159 - 168
  • [29] Involvement of lysosomal dysfunction in autophagosome accumulation and early pathologies in adipose tissue of obese mice
    Mizunoe, Yuhei
    Sudo, Yuka
    Okita, Naoyuki
    Hiraoka, Hidenori
    Mikami, Kentaro
    Narahara, Tomohiro
    Negishi, Arisa
    Yoshida, Miki
    Higashibata, Rikako
    Watanabe, Shukoh
    Kaneko, Hiroki
    Natori, Daiki
    Furuichi, Takuma
    Yasukawa, Hiromine
    Kobayashi, Masaki
    Higami, Yoshikazu
    AUTOPHAGY, 2017, 13 (04) : 642 - 653
  • [30] Angiogenic Adipokine Neuregulin 4 Ameliorates Obesity Associated With Adipocyte Dysfunction by Regulating Adipose Tissue Angiogenesis
    Nugroho, Dhite B.
    Ikeda, Koji
    Barinda, Agian J.
    Wardhana, Donytra A.
    Hirata, Ken-Ichi
    Emoto, Noriaki
    CIRCULATION, 2016, 134