首页> 外文期刊>Journal of Biosciences >A futile cycle, formed between two ATP-dependant γ-glutamyl cycle enzymes, γ-glutamyl cysteine synthetase and 5-oxoprolinase: the cause of cellular ATP depletion in nephrotic cystinosis?
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A futile cycle, formed between two ATP-dependant γ-glutamyl cycle enzymes, γ-glutamyl cysteine synthetase and 5-oxoprolinase: the cause of cellular ATP depletion in nephrotic cystinosis?

机译:在两个依赖ATP的γ-谷氨酰循环酶,γ-谷氨酰半胱氨酸合成酶和5-氧代脯氨酸酶之间形成一个无效的循环:肾病性胱氨酸病中细胞ATP消耗的原因?

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摘要

Cystinosis, an inherited disease caused by a defect in the lysosomal cystine transporter (CTNS), is characterized by renal proximal tubular dysfunction. Adenosine triphosphate (ATP) depletion appears to be a key event in the pathophysiology of the disease, even though the manner in which ATP depletion occurs is still a puzzle. We present a model that explains how a futile cycle that is generated between two ATP-utilizing enzymes of the γ-glutamyl cycle leads to ATP depletion. The enzyme γ-glutamyl cysteine synthetase (γ-GCS), in the absence of cysteine, forms 5-oxoproline (instead of the normal substrate, γ-glutamyl cysteine) and the 5-oxoproline is converted into glutamate by the ATP-dependant enzyme, 5-oxoprolinase. Thus, in cysteine-limiting conditions, glutamate is cycled back into glutamate via 5-oxoproline at the cost of two ATP molecules without production of glutathione and is the cause of the decreased levels of glutathione synthesis, as well as the ATP depletion observed in these cells. The model is also compatible with the differences seen in the human patients and the mouse model of cystinosis, where renal failure is not observed.
机译:胱氨酸病是一种由溶酶体胱氨酸转运蛋白(CTNS)缺陷引起的遗传性疾病,其特征是肾近端肾小管功能障碍。三磷酸腺苷(ATP)耗竭似乎是该疾病病理生理学中的关键事件,尽管ATP耗竭的方式仍然令人困惑。我们提出了一个模型,该模型解释了在两个利用γ-谷氨酰胺循环的ATP的酶之间产生的无效循环如何导致ATP耗竭。在不存在半胱氨酸的情况下,酶γ-谷氨酰半胱氨酸合成酶(γ-GCS)形成5-氧代脯氨酸(而不是正常的底物γ-谷氨酰半胱氨酸),并且5-氧代脯氨酸被ATP依赖性酶转化为谷氨酸盐,5-氧脯氨酸酶。因此,在半胱氨酸限制条件下,谷氨酸通过5-氧代脯氨酸循环回到谷氨酸中,代价是两个ATP分子不产生谷胱甘肽,这是导致谷胱甘肽合成水平降低的原因,也是在这些条件下观察到的ATP消耗的原因。细胞。该模型还与在未观察到肾衰竭的人类患者和胱氨酸病小鼠模型中观察到的差异兼容。

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