Literature DB >> 15340109

Diet-induced changes in stearoyl-CoA desaturase 1 expression in obesity-prone and -resistant mice.

Charlie C Hu1, Keyun Qing, Yanyun Chen.   

Abstract

OBJECTIVE: To investigate stearoyl-coenzyme A desaturase (SCD) 1 expression in obesity-prone C57BL/6 mice and in obesity-resistant FVB mice to explore the relationship of SCD1 expression and susceptibility to diet-induced obesity. RESEARCH METHODS AND PROCEDURES: Nine-week-old C57BL/6 and FVB mice were fed either a high- or low-fat diet for 8 weeks. Body weight and body composition were measured before and at weeks 4 and 8 of the study. Energy expenditure was measured at weeks 1 and 5 of the study. Hepatic SCD1 mRNA was measured at 72 hours and at the end of study. Plasma leptin and insulin concentrations were measured at the end of study.
RESULTS: When C57BL/6 mice were switched to a calorie-dense high-fat diet, animals gained significantly more body weight than those maintained on a low-calorie density diet primarily due to increased fat mass accretion. Fat mass continued to accrue throughout 8 weeks of study. Increased calorie intake did not account for all weight gain. On the high-fat diet, C57BL/6 mice decreased their energy expenditure when compared with mice fed a low-fat diet. In response to 8 weeks of a high-fat diet, SCD1 gene expression in liver increased >2-fold. In contrast, feeding a high-fat diet did not change body weight, energy expenditure, or SCD1 expression in FVB mice. DISCUSSION: Our study showed that a high-fat hypercaloric diet increased body adiposity first by producing hyperphagia and then by decreasing energy expenditure of mice susceptible to diet-induced obesity. Consumption of a high-fat diet in species predisposed to obesity selectively increased SCD1 gene expression in liver.

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Year:  2004        PMID: 15340109     DOI: 10.1038/oby.2004.160

Source DB:  PubMed          Journal:  Obes Res        ISSN: 1071-7323


  32 in total

1.  Improvements in glucose tolerance and insulin sensitivity after lifestyle intervention are related to changes in serum fatty acid profile and desaturase activities: the SLIM study.

Authors:  E Corpeleijn; E J M Feskens; E H J M Jansen; M Mensink; W H M Saris; T W A de Bruin; E E Blaak
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2.  Autotaxin and its product lysophosphatidic acid suppress brown adipose differentiation and promote diet-induced obesity in mice.

Authors:  Lorenzo Federico; Hongmei Ren; Paul A Mueller; Tao Wu; Shuying Liu; Jelena Popovic; Eric M Blalock; Manjula Sunkara; Huib Ovaa; Harald M Albers; Gordon B Mills; Andrew J Morris; Susan S Smyth
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3.  Endocannabinoid activation at hepatic CB1 receptors stimulates fatty acid synthesis and contributes to diet-induced obesity.

Authors:  Douglas Osei-Hyiaman; Michael DePetrillo; Pál Pacher; Jie Liu; Svetlana Radaeva; Sándor Bátkai; Judith Harvey-White; Ken Mackie; László Offertáler; Lei Wang; George Kunos
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6.  Dephosphorylation of translation initiation factor 2alpha enhances glucose tolerance and attenuates hepatosteatosis in mice.

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7.  Metabolic syndrome affects fatty acid composition of plasma lipids in obese prepubertal children.

Authors:  Mercedes Gil-Campos; Maria del Carmen Ramírez-Tortosa; Elvira Larqué; Javier Linde; Concepción M Aguilera; Ramón Cañete; Angel Gil
Journal:  Lipids       Date:  2008-07-01       Impact factor: 1.880

8.  Sustained weight loss after Roux-en-Y gastric bypass is characterized by down regulation of endocannabinoids and mitochondrial function.

Authors:  Ana Guijarro; Douglas Osei-Hyiaman; Judith Harvey-White; George Kunos; Susumu Suzuki; Sergiy Nadtochiy; Paul S Brookes; Michael M Meguid
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9.  Reduced AMP-activated protein kinase activity in mouse skeletal muscle does not exacerbate the development of insulin resistance with obesity.

Authors:  S Beck Jørgensen; H M O'Neill; K Hewitt; B E Kemp; G R Steinberg
Journal:  Diabetologia       Date:  2009-08-18       Impact factor: 10.122

Review 10.  Beyond triglyceride synthesis: the dynamic functional roles of MGAT and DGAT enzymes in energy metabolism.

Authors:  Yuguang Shi; Dong Cheng
Journal:  Am J Physiol Endocrinol Metab       Date:  2008-12-30       Impact factor: 4.310

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