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正常人肌肉以及患有罕见形式肌病性肉碱缺乏症患者肌肉中的β-氧化酶。

Beta-oxidation enzymes in normal human muscle and in muscle from a patient with an unusual form of myopathic carnitine deficiency.

作者信息

Trevisan C P, Reichmann H, DeVivo D C, DiMauro S

出版信息

Muscle Nerve. 1985 Oct;8(8):672-5. doi: 10.1002/mus.880080809.

Abstract

In a reported patient with myopathic carnitine deficiency, addition of exogenous carnitine to muscle homogenates failed to correct palmitate oxidation, and oral carnitine was of no clinical benefit. In a muscle biopsy from this patient, we found that, in contrast to the marked deficiency of free carnitine (3% of normal) short- and medium-chain acylcarnitines were in the normal range and long-chain acylcarnitine was increased almost four times. As this result confirmed the hypothesis of a muscle defect of mitochondrial oxidation of palmitate, all eight enzymes of beta-oxidation were measured spectrophotometrically in the muscle extract. None of them was found to be defective. These data suggest that the underlying biochemical abnormality in this patient may be a deficiency of the carnitine-acylcarnitine translocase system or a defective interaction between acyl-CoA dehydrogenase and its flavoprotein coenzyme.

摘要

在一名报道的患有肌病性肉碱缺乏症的患者中,向肌肉匀浆中添加外源性肉碱未能纠正棕榈酸氧化,口服肉碱也没有临床益处。在对该患者进行的肌肉活检中,我们发现,与游离肉碱明显缺乏(仅为正常水平的3%)形成对比的是,短链和中链酰基肉碱处于正常范围,而长链酰基肉碱几乎增加了四倍。由于这一结果证实了棕榈酸线粒体氧化存在肌肉缺陷的假设,于是我们采用分光光度法对肌肉提取物中的所有八种β氧化酶进行了检测。结果发现它们均无缺陷。这些数据表明,该患者潜在的生化异常可能是肉碱-酰基肉碱转位酶系统缺乏,或者是酰基辅酶A脱氢酶与其黄素蛋白辅酶之间的相互作用存在缺陷。

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