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Drosophila Model of Human Inherited Triosephosphate Isomerase Deficiency Glycolytic Enzymopathy

机译:果蝇的人类遗传的磷酸三糖异构酶缺乏糖酵解酶模型。

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摘要

Heritable mutations, known as inborn errors of metabolism, cause numerous devastating human diseases, typically as a result of a deficiency in essential metabolic products or the accumulation of toxic intermediates. We have isolated a missense mutation in the Drosophila sugarkill (sgk) gene that causes phenotypes analogous to symptoms of triosephosphate isomerase (TPI) deficiency, a human familial disease, characterized by anaerobic metabolic dysfunction resulting from pathological missense mutations affecting the encoded TPI protein. In Drosophila, the sgk gene encodes the glycolytic enzyme TPI. Our analysis of sgk mutants revealed TPI impairment associated with reduced longevity, progressive locomotor deficiency, and neural degeneration. Biochemical studies demonstrate that mutation of this glycolytic enzyme gene does not result in a bioenergetic deficit, suggesting an alternate cause of enzymopathy associated with TPI impairment.
机译:可遗传的突变,被称为先天性代谢错误,通常是由于必需代谢产物缺乏或有毒中间产物的积累而导致多种破坏性人类疾病。我们已经在果蝇甘露糖(sgk)基因中分离出一个错义突变,该突变会导致表型类似于人类家族性疾病三糖磷酸异构酶(TPI)缺乏症的症状,其特征是由于病理性错义突变影响编码的TPI蛋白而导致的无氧代谢功能障碍。在果蝇中,sgk基因编码糖酵解酶TPI。我们对sgk突变体的分析显示,TPI损伤与寿命降低,进行性运动功能缺乏和神经变性相关。生化研究表明,这种糖酵解酶基因的突变不会导致生物能缺乏,这提示了与TPI损伤相关的酶病的另一种原因。

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