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人类脂蛋白脂肪酶转基因兔骨骼肌中不寻常的代谢特征。

Unusual metabolic characteristics in skeletal muscles of transgenic rabbits for human lipoprotein lipase.

作者信息

Gondret Florence, Jadhao Sanjay B, Damon Marie, Herpin Patrick, Viglietta Céline, Houdebine Louis-Marie, Hocquette Jean-François

机构信息

INRA, UMR sur le Veau et le Porc, 35590 Saint Gilles, France.

出版信息

Lipids Health Dis. 2004 Dec 9;3:27. doi: 10.1186/1476-511X-3-27.

Abstract

BACKGROUND

The lipoprotein lipase (LPL) hydrolyses circulating triacylglycerol-rich lipoproteins. Thereby, LPL acts as a metabolic gate-keeper for fatty acids partitioning between adipose tissue for storage and skeletal muscle primarily for energy use. Transgenic mice that markedly over-express LPL exclusively in muscle, show increases not only in LPL activity, but also in oxidative enzyme activities and in number of mitochondria, together with an impaired glucose tolerance. However, the role of LPL in intracellular nutrient pathways remains uncertain. To examine differences in muscle nutrient uptake and fatty acid oxidative pattern, transgenic rabbits harboring a DNA fragment of the human LPL gene (hLPL) and their wild-type littermates were compared for two muscles of different metabolic type, and for perirenal fat.

RESULTS

Analyses of skeletal muscles and adipose tissue showed the expression of the hLPL DNA fragment in tissues of the hLPL group only. Unexpectedly, the activity level of LPL in both tissues was similar in the two groups. Nevertheless, mitochondrial fatty acid oxidation rate, measured ex vivo using [1-(14C)]oleate as substrate, was lower in hLPL rabbits than in wild-type rabbits for the two muscles under study. Both insulin-sensitive glucose transporter GLUT4 and muscle fatty acid binding protein (H-FABP) contents were higher in hLPL rabbits than in wild-type littermates for the pure oxidative semimembranosus proprius muscle, but differences between groups did not reach significance when considering the fast-twitch glycolytic longissimus muscle. Variations in both glucose uptake potential, intra-cytoplasmic binding of fatty acids, and lipid oxidation rate observed in hLPL rabbits compared with their wild-type littermates, were not followed by any modifications in tissue lipid content, body fat, and plasma levels in energy-yielding metabolites.

CONCLUSIONS

Expression of intracellular binding proteins for both fatty acids and glucose, and their following oxidation rates in skeletal muscles of hLPL rabbits were not fully consistent with the physiology rules. The modifications observed in muscle metabolic properties might not be directly associated with any LPL-linked pathways, but resulted likely of transgene random insertion into rabbit organism close to any regulatory genes. Our findings enlighten the risks for undesirable phenotypic modifications in micro-injected animals and difficulties of biotechnology in mammals larger than mice.

摘要

背景

脂蛋白脂肪酶(LPL)可水解循环中的富含三酰甘油的脂蛋白。因此,LPL作为脂肪酸分配的代谢守门人,脂肪酸主要在脂肪组织中储存,在骨骼肌中主要用于能量消耗。在肌肉中显著过表达LPL的转基因小鼠不仅LPL活性增加,氧化酶活性和线粒体数量也增加,同时糖耐量受损。然而,LPL在细胞内营养途径中的作用仍不确定。为了研究肌肉营养摄取和脂肪酸氧化模式的差异,对携带人LPL基因(hLPL)DNA片段的转基因兔及其野生型同窝仔兔的两种不同代谢类型的肌肉和肾周脂肪进行了比较。

结果

骨骼肌和脂肪组织分析显示,hLPL DNA片段仅在hLPL组的组织中表达。出乎意料的是,两组中两种组织的LPL活性水平相似。然而,在体外以[1-(14C)]油酸为底物测量时,在所研究的两块肌肉中,hLPL兔的线粒体脂肪酸氧化率低于野生型兔。对于纯氧化的半膜肌,hLPL兔的胰岛素敏感葡萄糖转运蛋白GLUT4和肌肉脂肪酸结合蛋白(H-FABP)含量均高于野生型同窝仔兔,但在考虑快肌糖酵解的背最长肌时,两组之间的差异未达到显著水平。与野生型同窝仔兔相比,hLPL兔在葡萄糖摄取潜力、脂肪酸的胞内结合和脂质氧化率方面存在差异,但在组织脂质含量、体脂和能量代谢产物的血浆水平方面未出现任何变化。

结论

hLPL兔骨骼肌中脂肪酸和葡萄糖的细胞内结合蛋白表达及其随后的氧化率与生理规律不完全一致。在肌肉代谢特性中观察到的变化可能与任何LPL相关途径没有直接关联,而是可能由于转基因随机插入兔体内靠近任何调控基因的位置。我们的研究结果揭示了显微注射动物中出现不良表型修饰的风险以及生物技术在比小鼠更大的哺乳动物中的困难。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/507b/543452/172492e0a078/1476-511X-3-27-1.jpg

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