کد مقاله | کد نشریه | سال انتشار | مقاله انگلیسی | نسخه تمام متن |
---|---|---|---|---|
1949075 | 1537709 | 2016 | 11 صفحه PDF | دانلود رایگان |
عنوان انگلیسی مقاله ISI
Lack of phosphatidylethanolamine N-methyltransferase in mice does not promote fatty acid oxidation in skeletal muscle
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کلمات کلیدی
DMEMUCPPEMTmalonyl-CoASREBPVDACMyotubesBSA - BSADulbecco's modified Eagle's medium - Medal of Eagle اصلاح شده Dulbeccobovine serum albumin - آلبومین سرم گاوFatty acid oxidation - اکسیداسیون اسید چربTriacylglycerols - ترشیال گلیسیرینhigh-fat diet - رژیم غذایی با چربی بالاendoplasmic reticulum - شبکه آندوپلاسمی phosphatidylcholine - فسفاتیدیل کولینphosphatidylethanolamine - فسفاتیدیلتانولامینphosphatidylethanolamine N-methyltransferase - فسفاتیدیلتانولامین N-متیل ترانسفرازMitochondria - میتوکندریاUncoupling protein - پروتئین جدا کردنhigh-fat - چربی بالاvoltage-dependent anion channel - کانال آنیون وابسته به ولتاژ
موضوعات مرتبط
علوم زیستی و بیوفناوری
بیوشیمی، ژنتیک و زیست شناسی مولکولی
زیست شیمی
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چکیده انگلیسی
Phosphatidylethanolamine N-methyltransferase (PEMT) converts phosphatidylethanolamine (PE) to phosphatidylcholine (PC) in the liver. Mice lacking PEMT are protected from high-fat diet-induced obesity and insulin resistance, and exhibit increased whole-body energy expenditure and oxygen consumption. Since skeletal muscle is a major site of fatty acid oxidation and energy utilization, we determined if rates of fatty acid oxidation/oxygen consumption in muscle are higher in Pemtâ/â mice than in Pemt+/+ mice. Although PEMT is abundant in the liver, PEMT protein and activity were undetectable in four types of skeletal muscle. Moreover, amounts of PC and PE in the skeletal muscle were not altered by PEMT deficiency. Thus, we concluded that any influence of PEMT deficiency on skeletal muscle would be an indirect consequence of lack of PEMT in liver. Neither the in vivo rate of fatty acid uptake by muscle nor the rate of fatty acid oxidation in muscle explants and cultured myocytes depended upon Pemt genotype. Nor did PEMT deficiency increase oxygen consumption or respiratory function in skeletal muscle mitochondria. Thus, the increased whole body oxygen consumption in Pemtâ/â mice, and resistance of these mice to diet-induced weight gain, are not primarily due to increased capacity of skeletal muscle for utilization of fatty acids as an energy source.
ناشر
Database: Elsevier - ScienceDirect (ساینس دایرکت)
Journal: Biochimica et Biophysica Acta (BBA) - Molecular and Cell Biology of Lipids - Volume 1861, Issue 2, February 2016, Pages 119-129
Journal: Biochimica et Biophysica Acta (BBA) - Molecular and Cell Biology of Lipids - Volume 1861, Issue 2, February 2016, Pages 119-129
نویسندگان
Guergana Tasseva, Jelske N. van der Veen, Susanne Lingrell, René L. Jacobs, Dennis E. Vance, Jean E. Vance,