首页> 外文期刊>The Journal of biological chemistry >ECHDC1 knockout mice accumulate ethyl-branched lipids and excrete abnormal intermediates of branched-chain fatty acid metabolism
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ECHDC1 knockout mice accumulate ethyl-branched lipids and excrete abnormal intermediates of branched-chain fatty acid metabolism

机译:Echdc1敲除小鼠积累乙基支链脂质和分支链脂肪酸代谢的排泄异常中间体

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The cytosolic enzyme ethylmalonyl-CoA decarboxylase (ECHDC1) decarboxylates ethyl- or methyl-malonyl-CoA, two side products of acetyl-CoA carboxylase. These CoA derivatives can be used to synthesize a subset of branched-chain fatty acids (FAs). We previously found that ECHDC1 limits the synthesis of these abnormal FAs in cell lines, but its effects in vivo are unknown. To further evaluate the effects of ECHDC1 defi- ciency, we generated knockout mice. These mice were viable, fertile, showed normal postnatal growth, and lacked obvious macroscopic and histologic changes. Surprisingly, tissues from wild-type mice already contained methyl-branched FAs due to methylmalonyl-CoA incorporation, but these FAs were only increased in the intraorbital glands of ECHDC1 knockout mice. In contrast, ECHDC1 knockout mice accumulated 16–20- carbon FAs carrying ethyl-branches in all tissues, which were undetectable in wild-type mice. Ethyl-branched FAs were incorporated into different lipids, including acylcarnitines, phosphatidylcholines, plasmanylcholines, and triglycerides. Interestingly, we found a variety of unusual glycine-conjugates in the urine of knockout mice, which included adducts of ethylbranched compounds in different stages of oxidation. This suggests that the excretion of potentially toxic intermediates of branched-chain FA metabolism might prevent a more dramatic phenotype in these mice. Curiously, ECHDC1 knockout mice also accumulated 2,2-dimethylmalonyl-CoA. This indicates that the broad specificity of ECHDC1 might help eliminate a variety of potentially dangerous branched-chain dicarboxylylCoAs. We conclude that ECHDC1 prevents the formation of ethyl-branched FAs and that urinary excretion of glycineconjugates allows mice to eliminate potentially deleterious intermediates of branched-chain FA metabolism.
机译:胞质酶乙基甘油酰基 - COA脱羧酶(ECHDC1)脱羧乙酯乙基或甲基 - 丙二醇 - COA,乙酰-CoA羧酸酯的两侧产物。这些COA衍生物可用于合成支链脂肪酸(FAS)的子集。我们以前发现EchdC1在细胞系中限制了这些异常FA的合成,但其在体内的效果是未知的。为了进一步评估ECHDC1效率的影响,我们产生了敲除小鼠。这些小鼠可行,肥沃,表现出正常的产后生长,并且缺乏明显的宏观和组织学变化。令人惊奇的是,由于甲基丙二酰基-CoA掺入,来自野生型小鼠的组织已经含有甲基分支的Fas,但这些FAS仅在ECHDC1敲除小鼠的胎肾炎内腺体中增加。相反,EchDC1敲除小鼠累积了16-20-碳Fas的所有组织中携带乙基分支,在野生型小鼠中不可检测。将乙基支化的Fas掺入不同的脂质中,包括酰基氨基甲酰胺,磷脂酰胆碱,亚氯酰胺和甘油三酯。有趣的是,我们发现了敲除小鼠尿液中的各种不寻常的甘氨酸缀合物,其中包括在不同氧化阶段的乙基抗原化合物的加合物。这表明分枝链法代谢的潜在有毒中间体的排泄可能会在这些小鼠中预防更戏剧性的表型。好奇地,EchDC1敲除小鼠也积累了2,2-二甲基甘油酯-CoA。这表明ECHDC1的广泛特异性可能有助于消除各种潜在危险的支链二羧基涂料。我们得出结论,ECHDC1防止形成乙基分支的FAS,甘氨酸缀合物的尿排泄使小鼠能够消除分支链法代谢的潜在有害的中间体。

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