首页> 美国卫生研究院文献>Journal of Lipid Research >Hexacosenoyl-CoA is the most abundant very long-chain acyl-CoA in ATP binding cassette transporter D1-deficient cells
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Hexacosenoyl-CoA is the most abundant very long-chain acyl-CoA in ATP binding cassette transporter D1-deficient cells

机译:十六碳烯酰辅酶A是ATP结合盒转运蛋白D1缺失细胞中最丰富的超长链酰基辅酶A

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摘要

X-linked adrenoleukodystrophy (X-ALD) is an inherited disorder caused by deleterious mutations in the gene. The ABCD1 protein transports very long-chain FAs (VLCFAs) from the cytosol into the peroxisome where the VLCFAs are degraded through β-oxidation. ABCD1 dysfunction leads to VLCFA accumulation in individuals with X-ALD. FAs are activated by esterification to CoA before metabolic utilization. However, the intracellular pools and metabolic profiles of individual acyl-CoA esters have not been fully analyzed. In this study, we profiled the acyl-CoA species in fibroblasts from X-ALD patients and in ABCD1-deficient HeLa cells. We found that hexacosenoyl (26:1)-CoA, but not hexacosanoyl (26:0)-CoA, was the most abundantly concentrated among the VLCFA-CoA species in these cells. We also show that 26:1-CoA is mainly synthesized from oleoyl-CoA, and the metabolic turnover rate of 26:1-CoA was almost identical to that of oleoyl-CoA in both WT and ABCD1-deficient HeLa cells. The findings of our study provide precise quantitative and metabolic information of each acyl-CoA species in living cells. Our results suggest that VLCFA is endogenously synthesized as VLCFA-CoA through a FA elongation pathway and is then efficiently converted to other metabolites, such as phospholipids, in the absence of ABCD1.
机译:X联肾上腺白质营养不良(X-ALD)是由基因中的有害突变引起的遗传性疾病。 ABCD1蛋白将非常长的链FAs(VLCFAs)从细胞质中转运到过氧化物酶体中,在其中VLCFAs通过β-氧化被降解。 ABCD1功能障碍导致X-ALD个体中VLCFA蓄积。在代谢利用之前,FA通过酯化为CoA活化。但是,尚未完全分析单个酰基辅酶A酯的细胞内库和代谢谱。在这项研究中,我们分析了X-ALD患者的成纤维细胞和ABCD1缺陷型HeLa细胞中的酰基辅酶A物种。我们发现在这些细胞的VLCFA-CoA物种中,十六烯酰基(26:1)-CoA而不是六二十烷酰基(26:0)-CoA最丰富。我们还显示26:1-CoA主要由油酰-CoA合成,在野生型和ABCD1缺失的HeLa细胞中,26:1-CoA的代谢周转率几乎与油酰-CoA相同。我们研究的结果为活细胞中每种酰基辅酶A物种提供了精确的定量和代谢信息。我们的结果表明,在没有ABCD1的情况下,VLCFA是通过FA延长途径内源合成为VLCFA-CoA,然后有效地转化为其他代谢产物,例如磷脂。

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