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Effect of dietary polyunsaturated fatty acids on the expression of peroxisomal ABC transporters

机译:日粮多不饱和脂肪酸对过氧化物酶体ABC转运蛋白表达的影响

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Peroxisomal ABC transporters encoded by the ABCD genes are thought to participate in the import of specific fatty acids in the peroxisomal matrix. ABCD1 deficiency is associated with X-linked adrenoleukodystrophy (X-ALD), the most frequent peroxisomal disorder which is characterized by the accumulation of saturated very-long-chain fatty acids (VLCFA). ABCD2 (the closest homolog of ABCD1) and ABCD3 have been shown to have partial functional redundancy with ABCD1; only when overexpressed, they can compensate for VLCFA accumulation. Other lipids, for instance polyunsaturated fatty acids (PUFA), should be possible candidate substrates for the ABCD2 and ABCD3 gene products, ALDRP and PMP70 respectively. Moreover, PUFA, which are known regulators of gene expression, could therefore represent potent inducers of the ABCD genes. To test this hypothesis, littermates of n-3-deficient rats were subjected to an n-3-deficient diet or equilibrated diets containing ALA (α-linolenic acid, 18:3n-3) as unique source of n-3 fatty acids or ALA plus DHA (docosahexaenoic acid, 22:6n-3) at two different doses. We analyzed the expression of peroxisomal ABC transporters and of the peroxisomal acyl-CoA oxidase gene 1 (Acox1) in adrenals, brain and liver. Whatever the diet, we did not observe any difference in gene expression in adrenals and brain. However, the hepatic expression level of Abcd2 and Abcd3 genes was found to be significantly higher in the n-3-deficient rats than in the rats fed the ALA diet or the DHA supplemented diets. This was accompanied by important changes in hepatic fatty acid composition. In summary, the hepatic expression of Abcd2 and Abcd3 but not of Abcdl and Abcd4 appears to be highly sensitive towards dietary PUFA. This difference could be linked to the substrate specificity of the peroxisomal ABC transporters and a specific involvement of Abcdl and Abcd3 in PUFA metabolism.
机译:由ABCD基因编码的过氧化物酶体ABC转运蛋白被认为参与过氧化物酶体基质中特定脂肪酸的导入。 ABCD1缺乏症与X联肾上腺髓质营养不良症(X-ALD)相关,这是最常见的过氧化物酶体紊乱,其特征在于饱和超长链脂肪酸(VLCFA)的积累。已显示ABCD2(ABCD1的最接近同源物)和ABCD3与ABCD1具有部分功能冗余。仅当过表达时,它们才能补偿VLCFA的累积。其他脂质,例如多不饱和脂肪酸(PUFA),应该分别是ABCD2和ABCD3基因产物ALDRP和PMP70的候选底物。而且,PUFA是已知的基因表达调节剂,因此可以代表ABCD基因的有效诱导剂。为了检验这一假设,对n-3-缺乏大鼠的同窝仔进行n-3-缺乏饮食或平衡饮食,其中含有ALA(α-亚麻酸,18:3n-3)作为n-3脂肪酸的独特来源或两种不同剂量的ALA加DHA(二十二碳六烯酸,22:6n-3)。我们分析了过氧化物酶体ABC转运蛋白和过氧化物酶体酰基辅酶A氧化酶基因1(Acox1)在肾上腺,大脑和肝脏中的表达。无论采用哪种饮食,我们都没有观察到肾上腺和大脑中基因表达的任何差异。然而,发现在n-3缺陷型大鼠中,Abcd2和Abcd3基因的肝表达水平显着高于用ALA饮食或补充DHA饮食的大鼠。这伴随着肝脂肪酸组成的重要变化。总之,Abcd2和Abcd3的肝表达,但对Abcdl和Abcd4的肝表达似乎对饮食PUFA高度敏感。这种差异可能与过氧化物酶体ABC转运蛋白的底物特异性以及Abcdl和Abcd3在PUFA代谢中的特定参与有关。

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