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Choice of precursors for the measurement of protein turnover by the double-isotope method. Application to the study of mitochondrial proteins.

机译:通过双同位素方法选择用于测量蛋白质更新的前体。应用于线粒体蛋白的研究。

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摘要

1. The double-isotope concept [Arias, Doyle & Schimke (1969) J. Biol. Chem. 224, 3303--3315] for the measurement of protein turnover was used to estimate the turnover of proteins in subcellular and submitochondrial fractions prepared from rat liver. 2. Double-isotope experiments with [3H]leucine as first precursor and [14C]leucine as second precursor were used to measure the turnover rates of proteins in subcellular and submitochondrial fractions. Solvent extraction procedures designed to remove lipids and nucleic acids from trichloroacetic acid precipitates only changed the isotope ratio of the microsomal fraction. It was not possible to measure turnover of proteins in mitochondrial and submitochondrial fractions with these precursors. 3. Double-isotope experiments were designed to minimize first-precursor reutilization by employing NaH14CO3. [3H]Arginine was used as second precursor. The turnover rates of protein in subcellular and submitochondrial fractions was measured. Solvent extraction procedures designed to remove lipids and nucleic acids showed changes in the isotope ratio for all subcellular fractions, especially in microsomal and detergent-soluble mitochondrial fractions. Isotope ratios of precipitates after solvent extraction indicate that, whereas considerable heterogeneity exists for the average rates of protein turnover in subcellular fractions, little heterogeneity is observed in the average rates of protein turnover in submitochondrial fractions.
机译:1.双同位素概念[Arias,Doyle&Schimke(1969)J. Biol。化学224,3303--3315]用于测量蛋白质周转率,用于估计从大鼠肝脏制备的亚细胞和线粒体级分中蛋白质的周转率。 2.以[3H]亮氨酸为第一前体和[14C]亮氨酸为第二前体的双同位素实验测量了亚细胞级和线粒体级分中蛋白质的周转率。设计用于从三氯乙酸沉淀物中去除脂质和核酸的溶剂萃取程序只会改变微粒体级分的同位素比率。用这些前体无法测量线粒体和线粒体级分中蛋白质的周转率。 3.设计了双同位素实验,以通过使用NaH14CO3最大限度地减少前体的再利用。 [3H]精氨酸用作第二前体。测量了亚细胞和线粒体部分中蛋白质的周转率。设计用于去除脂质和核酸的溶剂萃取程序显示出所有亚细胞级分的同位素比率均发生了变化,尤其是微粒体和去污剂可溶的线粒体级分。溶剂萃取后沉淀物的同位素比率表明,尽管亚细胞级分中蛋白质更新的平均速率存在相当大的异质性,但线粒体级分中蛋白质转换的平均速率却观察到很少的异质性。

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