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A Statistical Evaluation of Uncoupling Protein 1 in the Limited Area of Brown Adipose Tissue by Immunoelectron Microscopy
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作者 Xiaomin Dong Seiichi Chiba +1 位作者 Tatsuo Shimada Fumihiko Hamada 《Computational Chemistry》 CAS 2022年第3期121-137,共17页
Uncoupling protein 1 (UCP1) expressed by the brown adipose tissue (BAT) in the mitochondrial crista acts as a homeostatic thermogenerator of eutherians. The evaluation of UCP1 expression in the BAT offers significant ... Uncoupling protein 1 (UCP1) expressed by the brown adipose tissue (BAT) in the mitochondrial crista acts as a homeostatic thermogenerator of eutherians. The evaluation of UCP1 expression in the BAT offers significant scientific insight, especially in studies targeting limited areas such as the periarterial and pericardial regions of small experimental mammals. However, the negligible amount of this adipose tissue would render the general quantitative evaluation of the protein unreliable because of lipid contamination and low protein concentration. To address this problem, we quantitatively evaluated UCP1 expression in the mitochondrion of the mouse interscapular BAT using immunoelectron microscopy and immunohistochemical studies using a combination of primary and secondary antibodies in scheme A (rabbit anti-UCP1 IgG/gold particle-conjugated goat anti-rabbit IgG), B (rabbit IgG/gold particle-conjugated goat anti-rabbit IgG), C (rabbit anti-UCP1 IgG/gold particle-unconjugated goat anti-rabbit IgG), and D (rabbit IgG/gold particle-unconjugated goat anti-rabbit IgG). Scheme A shows the immunopositive reaction of obvious gold particles in the mitochondrial area, whereas other procedures revealed less distinctive reactions. The distinctive gold particle immunoreaction comprised electrical high-density spots with a mean diameter of >5 nm. However, in scheme B, the electrical high-density spots were scattered outside the mitochondrion and were significantly smaller than 4 nm;schemes C and D demonstrated few immunoreactions. Logistic regression analysis between schemes A and B showed that the threshold diameter of the electrical high-density spots measuring >5 nm indicated a true positive immunoreaction to anti-UCP1 antibody specifically in the mitochondrial area. Minor statistical difference was observed in the primary anti-UCP1 antibody between polyclonal IgG and monoclonal antibodies. Therefore, immunoelectron microscopy might be useful for evaluating negligible protein expression in some limited areas, such as UCP1 expression in the BAT of small experimental animals. 展开更多
关键词 uncoupling protein 1 (UCP1) Brown Adipose Immunoelectron Microscopy Immunohistochemical Staining Logistic Regression Analysis
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Ginsenoside F1 administration promotes UCP1-dependent fat browning and ameliorates obesity-associated insulin resistance
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作者 Yuhan Meng Weili Li +7 位作者 Chenxing Hu Si Chen Haiyang Li Feifei Bai Lujuan Zheng Ye Yuan Yuying Fan Yifa Zhou 《Food Science and Human Wellness》 SCIE CSCD 2023年第6期2061-2072,共12页
Obesity-induced type 2 diabetes is mainly due to excessive free fatty acids leading to insulin resistance.Increasing thermogenesis is regarded as an effective strategy for hypolipidemia and hypoglycemia.Ginsenoside is... Obesity-induced type 2 diabetes is mainly due to excessive free fatty acids leading to insulin resistance.Increasing thermogenesis is regarded as an effective strategy for hypolipidemia and hypoglycemia.Ginsenoside is a natural active component in Panax ginseng C.A.Meyer,and some of them enhance thermogenesis.However,there are few studies on the mechanism and target of ginsenosides enhancing thermogenesis.Using thermogenic protein uncoupling protein 1(UCP1)-luciferase reporter assay,we identifi ed ginsenoside F1 as a novel UCP1 activator in the ginsenosides library.Using pull down assay and inhibitor interference,we found F1 binds toβ3-adrenergic receptors(β3-AR)to enhance UCP1 expression via cAMP/PKA/CREB pathway.We also investigated the ability of F1 on energy metabolism in obesity-induced diabetic mice,including body weight,body composition and energy expenditure.The results of proteomics showed that F1 signifi cantly up-regulated thermogenesis proteins and lipolytic proteins,but down-regulated fatty acid synthesis proteins.Ginsenoside F1 increased thermogenesis and ameliorated insulin resistance specifi cally by promoting the browning of white adipose tissue in obese mice.Additionally,ginsenoside F1 improves norepinephrine-induced insulin resistance in adipocytes and hepatocytes,and shows a stronger mitochondria respiration ability than norepinephrine.These fi ndings suggest that ginsenoside F1 is a promising lead compound in the improvement of insulin resistance. 展开更多
关键词 Ginsenoside F1 uncoupling protein 1 β3-Adrenergic receptor White adipose tissue browning Insulin resistance
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Visualization of Activated BAT in Mice,with FDG-PET and Its Relation to UCP1
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作者 Christian Jeanguillaume Gilles Metrard +6 位作者 Daniel Ricquier Pierre Legras Francis Bouchet Franck Lacoeuille Francois Hindre Olivier Morel Herve Rakotonirina 《Advances in Molecular Imaging》 2013年第3期19-22,共4页
The visualization of symmetric structure by [18F]-FluoroDeoxyGlucose-Positron Emission Tomography (FDG-PET), corresponding to adipose density in computed tomography (CT), has led to the idea that Brown Adipose Tissue ... The visualization of symmetric structure by [18F]-FluoroDeoxyGlucose-Positron Emission Tomography (FDG-PET), corresponding to adipose density in computed tomography (CT), has led to the idea that Brown Adipose Tissue (BAT) could be present in adult human. This article studies the FDG uptake in a mice model deficient on Uncoupling Protein 1 (UCP1), in a simple thermal activation protocol. Methods: FDG were injected in mice, control and knock out (K.O.) for the UCP1. Before imaging mice were placed either in cold or warm environment. BAT uptake was evaluated by ratio named RISC. Results: In warm condition, mean value of the Ratio of Inter-Scapular uptake (RISC) was 1.34 +/﹣ 0.27. After cold exposure, RISC increased 2 fold for control mice, male K.O. did not increase their RISC, female K.O. increased their RISC up to 2.45. Conclusion: Our study brought a further confirmation that FDG-PET visualised activated Brown Adipose Tissue. It gives a direct proof of the role of UCP1 in this process. The FDG uptake by cold female K.O. mice was unexpected. 展开更多
关键词 FDG PET Brown Adipose Tissue uncoupling protein 1 MICE
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Effects of Berberine on Hepatic Sirtuin 1-uncoupling Protein 2 Pathway in Non-alcoholic Fatty Liver Disease Rats Induced by High-fat Diet 被引量:1
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作者 Yuan-jun Deng Yu-pei Zhang +7 位作者 Qin-he Yang Li Han Yin-ji Liang Yi-fang He Yuan-yuan Li Guan-long Wang Chun-mei Lin Jin-wen Zhang 《Chinese Herbal Medicines》 CAS 2016年第4期359-365,共7页
Objective To investigate the involvement of sirtuin 1(SIRT1)-uncoupling protein 2(UCP2) pathway in the development of non-alcoholic fatty liver disease and whether berberine exerts its effects by regulating this p... Objective To investigate the involvement of sirtuin 1(SIRT1)-uncoupling protein 2(UCP2) pathway in the development of non-alcoholic fatty liver disease and whether berberine exerts its effects by regulating this pathway. Methods Male SD rats were divided into three groups: normal control group, high-fat diet group, and berberine supplement group. The rats in the normal control group were given normal diet while the rats in the other two groups were fed with high-fat diet. Rats in the berberine supplement group were concurrently given berberine(100 mg/kg body weight) once daily. After 16 weeks, the levels of serum, liver lipids, and serum aminotransferase were measured using an automatic biochemical analyzer. Superoxide dismutase(SOD) activity and malondialdehyde(MDA) content in the liver were measured using commercial kits. Histopathological changes of liver tissues were observed by hematoxylin and eosin(HE) staining and Oil Red O staining. The hepatic m RNA and protein levels of SIRT1 and UCP2 were assayed by reverse transcription polymerase chain reaction(RT-PCR) or Western blotting. Results Berberine supplement could significantly decrease the serum and liver lipid contents in rats fed with high-fat diet. Meanwhile, SOD level was significantly elevated, but MDA level was reduced in the liver. The results of HE and Oil Red O staining showed that the hepatic steatosis was alleviated in berberine supplement group. Furthermore, berberine induced an increase in SIRT1 expression but a decrease in UCP2 expression. Conclusion The regulation of hepatic SIRT1-UCP2 pathway may be an important mechanism by which berberine exerts the beneficial effects in NAFLD rats. 展开更多
关键词 berberine non-alcoholic fatty liver disease oxidative stress sirtuin 1 uncoupling protein 2
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Activation of the cold-sensing TRPM8 channel triggers UCP1-dependent thermogenesis and prevents obesity 被引量:2
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作者 Shuangtao Ma Hao Yu +12 位作者 Zhigang Zhao Zhidan Luo Jing Chen Yinxing Ni Rongbing Jin Liqun Ma Peijian Wang Zhenyu Zhu Li Li Jian Zhong Daoyan Liu Bernd Nilius Zhiming Zhu 《Journal of Molecular Cell Biology》 SCIE CAS CSCD 2012年第2期88-96,共9页
Brown adipose tissue(BAT)is an energy-expending organ that produces heat.Expansion or activation of BAT prevents obesity and diabetes.Chronic cold exposure enhances thermogenesis in BAT through uncoupling protein 1(UC... Brown adipose tissue(BAT)is an energy-expending organ that produces heat.Expansion or activation of BAT prevents obesity and diabetes.Chronic cold exposure enhances thermogenesis in BAT through uncoupling protein 1(UCP1)activation triggered via a b-adrenergic pathway.Here,we report that the cold-sensing transient receptor potential melastatin 8(TRPM8)is functionally present in mouse BAT.Challenging brown adipocytes with menthol,a TRPM8 agonist,up-regulates UCP1 expression and requires protein kinase A activation.Upon mimicking long-term cold exposure with chronic dietary menthol application,menthol significantly increased the core temperatures and locomotor activity in wild-type mice;these effects were absent in both TRPM82/2 and UCP12/2 mice.Dietary obesity and glucose abnormalities were also prevented by menthol treatment.Our results reveal a previously unrecognized role for TRPM8,suggesting that stimulation of this channel mediates BAT thermogenesis,which could constitute a promising way to treat obesity. 展开更多
关键词 TRPM8 uncoupling protein 1 MENTHOL THERMOGENESIS brown adipose tissue OBESITY
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Chchd10 is dispensable for myogenesis but critical for adipose browning
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作者 Wei Xia Jiamin Qiu +6 位作者 Ying Peng Madigan MSnyder Lijie Gu Kuilong Huang Nanjian Luo Feng Yue Shihuan Kuang 《Cell Regeneration》 2022年第1期131-145,共15页
The Chchd10 gene encodes a coiled-coil-helix-coiled-coil-helix-domain containing protein predicted to function in the mitochondrion and nucleus.Mutations of Chchd10 are associated with ALS,dementia and myopathy in hum... The Chchd10 gene encodes a coiled-coil-helix-coiled-coil-helix-domain containing protein predicted to function in the mitochondrion and nucleus.Mutations of Chchd10 are associated with ALS,dementia and myopathy in humans and animal models,but how knockout of Chchd10(Chchd10KO)affects various tissues especially skeletal muscle and adipose tissues remains unclear.Here we show that Chchd10 expression increases as myoblasts and preadipocytes dif-ferentiate.During myogenesis,CHCHD10 interacts with TAR DNA binding protein 43(TDP-43)in regenerating myofib-ers in vivo and in newly differentiated myotubes ex vivo.Surprisingly,Chchd10KO mice had normal skeletal muscle development,growth and regeneration,with moderate defects in grip strength and motor performance.Chchd10KO similarly had no effects on development of brown and white adipose tissues(WAT).However,Chchd10KO mice had blunted response to acute cold and attenuated cold-induced browning of WAT,with markedly reduced UCP1 levels.Together,these results demonstrate that Chchd10 is dispensable for normal myogenesis and adipogenesis but is required for normal motility and cold-induced,mitochondrion-dependent browning of adipocytes.The data also sug-gest that human CHCHD10 mutations cause myopathy through a gain-of-function mechanism. 展开更多
关键词 Skeletal muscle MYOBLASTS Regeneration ADIPOCYTE Brown adipose tissue uncoupling protein 1(UCP1)
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