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Metabolism of [1-(14)C] and [2-(14)C] leucine in cultured skin fibroblasts from patients with isovaleric acidemia. Characterization of metabolic defects.

机译:[1-(14)C]和[2-(14)C]亮氨酸在异戊酸血症患者培养的皮肤成纤维细胞中的代谢。代谢缺陷的表征。

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摘要

Leucine metabolism in cultured skin fibroblasts from patients with isovaleric acidemia was compared with that in normal fibroblasts and in cells from patients with maple syrup urine disease using [1-(14)C] and [2-(14)C] leucine as substrates. Inhibitory effects of methylenecyclopropylacetic acid on leucine metabolism in normal cells were also investigated. Production of 14CO2 from [2-(14)C] leucine was very reduced (96-99%) in both types of mutant cells. Radioactive isovaleric acid accumulated in assay media with isovaleric acidemia cells but not in those with maple syrup urine disease cells. Unexpectedly, 14CO2 production from [1-(14)C] leucine was partially depressed (80%) in isovaleric acidemia cells whereas in maple syrup urine disease cells it was strongly depressed (99%) as expected. These two mutant cells were clearly distinguished by detection of 14C-isovaleric acid accumulation after incubation with [2-(14)C] leucine. A pattern of inhibition of leucine oxidation similar to that seen in isovaleric acidemia cells was induced in normal cells by the addition of 0.7 mM methylenecyclopropylacetic acid to the assay medium. The partial inhibition of [1-(14)C] leucine oxidation seen in isovaleric acidemia cells and also in normal cells in the presence of the inhibitor appears to be, at least in part, due to an accumulation of isovalerate in the cells. Isovaleric acid (5-10) mM) inhibited [1-(14)C] leucine oxidation 32-68% when added to the assay medium with normal cells. Addition of flavin adenine dinucleoside to culture medium or assay medium or both did not restore oxidation of either leucine substrate in isovaleric acidemia cells.
机译:使用[1-(14)C]和[2-(14)C]亮氨酸作为底物,比较了异戊酸血症患者培养的皮肤成纤维细胞中的亮氨酸代谢与正常成纤维细胞以及枫糖浆尿病患者的细胞中的亮氨酸代谢。还研究了亚甲基环丙基乙酸对正常细胞中亮氨酸代谢的抑制作用。在两种类型的突变细胞中,由[2-(14)C]亮氨酸产生的14CO2都非常减少(96-99%)。放射性异戊酸在具有异戊酸性贫血细胞的测定培养基中积累,但在具有枫糖浆尿病细胞的那些中则不存在。出乎意料的是,从[1-(14)C]亮氨酸产生的14CO2在异戊酸性酸血症细胞中被部分抑制(80%),而在枫糖浆尿病细胞中,其被强烈抑制(99%)如预期的那样。通过与[2-(14)C]亮氨酸孵育后检测14C-异戊酸积累,可以清楚地区分这两个突变细胞。通过向测定培养基中添加0.7mM的亚甲基环丙基乙酸,在正常细胞中诱导出类似于在异戊酸性贫血细胞中所见的亮氨酸氧化抑制模式。在异戊酸性贫血细胞中以及在存在抑制剂的情况下在正常细胞中看到的[1-(14)C]亮氨酸氧化的部分抑制作用似乎至少部分是由于异戊酸在细胞中的积累。当添加到具有正常细胞的测定培养基中时,异戊酸(5-10)mM)抑制[1-(14)C]亮氨酸氧化32-68%。将黄素腺嘌呤二核苷添加至培养基或测定培养基或两者均未恢复异戊酸血症性血细胞中任一亮氨酸底物的氧化。

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