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Heterogeneity of rat liver mitochondrial fractions and the effect of tri-iodothyronine on their protein turnover

机译:大鼠肝脏线粒体组分的异质性和三碘甲状腺素对其蛋白质更新的影响

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摘要

1. Rat liver mitochondria were separated into heavy, light and fluffy fractions by differential centrifugation under standard conditions. 2. All mitochondrial fractions possessed soluble as well as membrane-bound enzymes typical of mitochondria. 3. The heavy fraction represented the stable mitochondrial structures and the fluffy particles appear to be loosely coupled. 4. The light mitochondrial fraction lacked the ability of coupled phosphorylation. 5. A study of mobility and isoelectric pH indicated a similarity in the basic membrane structure of all the mitochondrial fractions. 6. The turnover rates of proteins in the heavy and fluffy particles were almost identical; however, this rate was rapid for the light mitochondrial fraction. 7. On treatment with 3,3′,5-tri-iodo-l-thyronine, succinoxidase activity was maximally stimulated much earlier in the light mitochondrial fraction than in the heavy fraction. The activity of the fluffy particles, however, remained almost unaffected. 8. Malate dehydrogenase activity in all the mitochondrial fractions was stimulated only at 40h after tri-iodothyronine treatment. 9. The pattern of incorporation of dl-[1-14C]leucine in vivo in the tri-iodothyronine-treated animals indicated a rapid initial incorporation and high synthetic ability of the light mitochondrial fraction. 10. The turnover pattern of proteins of the mitochondrial fractions from animals receiving repeated doses of tri-iodothyronine was remarkably different from the normal pattern and suggested that preformed soluble protein units may be incorporated in the light mitochondrial fraction during maturation to form the stable heavy mitochondria. 11. The amount of light-mitochondrial proteins decreased by 40% on thyroidectomy and increased by 160% on treatment with tri-iodothyronine. 12. The possible significance of these results is discussed in relation to mitochondrial genesis.
机译:1.在标准条件下通过差异离心将大鼠肝线粒体分为重,轻和蓬松部分。 2.所有线粒体级分均具有线粒体特有的可溶性和膜结合酶。 3.较重的部分代表稳定的线粒体结构,蓬松的颗粒似乎松散耦合。 4.轻的线粒体部分缺乏偶联的磷酸化能力。 5.对迁移率和等电点pH的研究表明,所有线粒体部分的基本膜结构都相似。 6.重而蓬松的颗粒中蛋白质的周转率几乎相同;但是,对于轻度线粒体而言,这一速度很快。 7.在用3,3′,5-三碘-1-胸腺嘧啶处理时,轻质线粒体组分中的琥珀酸酶活性最大程度地早于重质组分。但是,蓬松颗粒的活性几乎不受影响。 8.仅在三碘甲状腺素处理后40h刺激所有线粒体组分中的苹果酸脱氢酶活性。 9.在经三碘甲状腺素处理的动物中体内掺入dl- [1- 14 C]亮氨酸的模式表明轻的线粒体级分的快速初始掺入和高合成能力。 10.接受重复剂量的三碘甲状腺素的动物的线粒体组分的蛋白质转换模式与正常模式显着不同,这表明预先形成的可溶性蛋白质单元可能在成熟过程中掺入轻质线粒体组分中,从而形成稳定的重线粒体。 11.在甲状腺切除术中,轻型线粒体蛋白质的量减少了40%,而在使用三碘甲状腺素治疗后增加了160%。 12.讨论了有关线粒体发生的这些结果的可能意义。

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