Mice subjected to aP2-Cre mediated ablation of microsomal triglyceride transfer protein are resistant to high fat diet induced obesity

被引:15
作者
Bakillah, Ahmed [1 ,2 ]
Hussain, M. Mahmood [1 ,2 ,3 ]
机构
[1] Suny Downstate Med Ctr, Dept Cell Biol, Brooklyn, NY 11203 USA
[2] Suny Downstate Med Ctr, Dept Pediat, Brooklyn, NY 11203 USA
[3] VA New York Harbor Healthcare Syst, Brooklyn, NY 11209 USA
基金
美国国家卫生研究院;
关键词
Adipose; Lipoproteins; Lipid droplets; Inflammation; Macrophages; Obesity; Microsomal triglyceride transfer protein; High fat diet; ACTIVATED RECEPTOR-GAMMA; DE-NOVO LIPOGENESIS; ADIPOSE-TISSUE; PPAR-GAMMA; LIPID DROPLETS; ANTIGEN PRESENTATION; APOLIPOPROTEIN-B; ACID SYNTHESIS; IN-VIVO; ADIPOCYTES;
D O I
10.1186/s12986-016-0061-6
中图分类号
R15 [营养卫生、食品卫生]; TS201 [基础科学];
学科分类号
100403 ;
摘要
Background: Microsomal triglyceride transfer protein (MTP) is essential for the assembly of lipoproteins. MTP has been shown on the surface of lipid droplets of adipocytes; however its function in adipose tissue is not well defined. We hypothesized that MTP may play critical role in adipose lipid droplet formation and expansion. Methods: Plasmids mediated overexpression and siRNA mediated knockdown of Mttp gene were performed in 3T3-L1 pre-adipocytes to evaluate the effects of MTP on cell differentiation and triglyceride accumulation. Adipose-specific knockdown of MTP was achieved in mice by breeding MTP floxed (Mttp(fl/fl)) mice with aP2-Cre recombinase transgenic mice. Adipose-specific MTP deficient (A-Mttp(-/-)) mice were fed 60 % high-fat diet (HFD), and the effects of MTP knockdown on body weight, body fat composition, plasma and tissues lipid composition, glucose metabolism, lipogenesis and intestinal absorption was studied. Lipids were measured in total fasting plasma and size fractionated plasma using colorimetric assays. Gene expression was investigated by Real-Time quantitative PCR. All data was assessed using t-test, ANOVA. Results: MTP expression increased during early differentiation in 3T3-L1 cells, and declined later. The increases in MTP expression preceded PPAR. expression. MTP overexpression enhanced lipid droplets formation, and knockdown attenuated cellular lipid accumulation. These studies indicated that MTP positively affects adipogenesis. The ablation of the Mttp gene using aP2-Cre (A-Mttp(-/-)) in mice resulted in a lean phenotype when fed a HFD. These mice had reduced white adipose tissue compared with wild-type Mttp(fl/fl) mice. The adipose tissue of A-Mttp(-/-) mice had increased number of smaller size adipocytes and less macrophage infiltration. Further, these mice were protected from HFD-induced fatty liver. The A-Mttp(-/-) mice had moderate increase in plasma triglyceride, but normal cholesterol, glucose and insulin levels. Gene expression analysis showed that the adipose tissue of the AMttp(-/-) mice had significantly lower mRNA levels of PPAR. and its downstream targets. Conclusion: These data suggest that MTP might modulate adipogenesis by influencing PPAR. expression, and play a role in the accretion of lipids to form larger lipid droplets. Thus, agents that inactivate adipose MTP may be useful anti-obesity drugs.
引用
收藏
页数:16
相关论文
共 71 条
[11]   Identification of a lipokine, a lipid hormone linking adipose tissue to systemic metabolism [J].
Cao, Haiming ;
Gerhold, Kristin ;
Mayers, Jared R. ;
Wiest, Michelle M. ;
Watkins, Steven M. ;
Hotamisligil, Goekhan S. .
CELL, 2008, 134 (06) :933-944
[12]   Renal F4/80+CD11c+ Mononuclear Phagocytes Display Phenotypic and Functional Characteristics of Macrophages in Health and in Adriamycin Nephropathy [J].
Cao, Qi ;
Wang, Yiping ;
Wang, Xin Maggie ;
Lu, Junyu ;
Lee, Vincent W. S. ;
Ye, Qianling ;
Hanh Nguyen ;
Zheng, Guoping ;
Zhao, Ye ;
Alexander, Stephen I. ;
Harris, David C. H. .
JOURNAL OF THE AMERICAN SOCIETY OF NEPHROLOGY, 2015, 26 (02) :349-363
[13]   Liver-specific inactivation of the abetalipoproteinemia gene completely abrogates very low density lipoprotein low density lipoprotein production in a viable conditional knockout mouse [J].
Chang, BHJ ;
Liao, W ;
Li, L ;
Nakamuta, M ;
Mack, D ;
Chan, L .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1999, 274 (10) :6051-6055
[14]   From blood monocytes to adipose tissue-resident macrophages -: Induction of diapedesis by human mature adipocytes [J].
Curat, CA ;
Miranville, A ;
Sengenès, C ;
Diehl, M ;
Tonus, C ;
Busse, R ;
Bouloumié, A .
DIABETES, 2004, 53 (05) :1285-1292
[15]   Microsomal triglyceride transfer protein lipidation and control of CD1d on antigen-presenting cells [J].
Dougan, SK ;
Salas, A ;
Rava, P ;
Agyemang, A ;
Kaser, A ;
Morrison, J ;
Khurana, A ;
Kronenberg, M ;
Johnson, C ;
Exley, M ;
Hussain, MM ;
Blumberg, RS .
JOURNAL OF EXPERIMENTAL MEDICINE, 2005, 202 (04) :529-539
[16]   MTP regulated by an alternate promoter is essential for NKT cell development [J].
Dougan, Stephanie K. ;
Rava, Paul ;
Hussain, M. Mahmood ;
Blumberg, Richard S. .
JOURNAL OF EXPERIMENTAL MEDICINE, 2007, 204 (03) :533-545
[17]   Expression of microsomal triglyceride transfer protein in lipoprotein-synthesizing tissues of the developing chicken embryo [J].
Eresheim, Christine ;
Plieschnig, Julia ;
Ivessa, N. Erwin ;
Schneider, Wolfgang J. ;
Hermann, Marcela .
BIOCHIMIE, 2014, 101 :67-74
[18]   Adipose tissue: A key target for diabetes pathophysiology and treatment? [J].
Frayn, K. N. ;
Tan, G. D. ;
Karpe, F. .
HORMONE AND METABOLIC RESEARCH, 2007, 39 (10) :739-742
[19]   Adiposoft: automated software for the analysis of white adipose tissue cellularity in histological sections [J].
Galarraga, Miguel ;
Campion, Javier ;
Munoz-Barrutia, Arrate ;
Boque, Noemi ;
Moreno, Haritz ;
Alfredo Martinez, Jose ;
Milagro, Fermin ;
Ortiz-de-Solorzano, Carlos .
JOURNAL OF LIPID RESEARCH, 2012, 53 (12) :2791-2796
[20]   Developmental origin of fat: Tracking obesity to its source [J].
Gesta, Stephane ;
Tseng, Yu-Hua ;
Kahn, C. Ronald .
CELL, 2007, 131 (02) :242-256