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叙利亚金黄地鼠肝脏和肺中核糖核酸及蛋白质生物合成的定性和定量方面

Qualitative and quantitative aspects of the biosynthesis of ribonucleic acid and of protein in the liver and the lung of the Syrian golden hamster.

作者信息

Witschi H

出版信息

Biochem J. 1973 Nov;136(3):781-8. doi: 10.1042/bj1360781.

Abstract
  1. The incorporation of orotic acid and of uridine into total RNA was measured in vivo in liver and lung of the Syrian golden hamster. Specific activities of total acid-soluble UMP were measured in both organs. An estimation of the rate of RNA biosynthesis showed that hamster lung synthesizes RNA at about one-half of the rate of that of hamster liver. 2. The apparent K(m) and V(max.) values of a few enzymes involved in pyrimidine biosynthesis were measured in the 100000g supernatants of liver and lung. The apparent K(m) values were very similar in both organs. From the estimated V(max.,) it was concluded that hamster lung cells have less capacity to metabolize orotic acid than have liver cells. 3. A time-response and a dose-response study showed that actinomycin D inhibits pulmonary RNA synthesis as efficiently as hepatic RNA synthesis. 4. Protein synthesis, measured as the incorporation of leucine, was inhibited in both organs 30min after a dose of 2mg of cycloheximide/kg. The dose-response patterns were similar in both liver and lung 3h after cycloheximide. 5. It is concluded that RNA and protein synthesis in vivo in hamster lung are very similar to the corresponding reactions in liver. Alterations of RNA and protein synthesis by toxic agents can therefore be evaluated in lung with a similar approach to that used to study the pathological biochemistry of liver.
摘要
  1. 在叙利亚金黄地鼠的肝脏和肺中,对体内乳清酸和尿苷掺入总RNA的情况进行了测定。在这两个器官中均测定了总酸溶性UMP的比活性。对RNA生物合成速率的估计表明,仓鼠肺合成RNA的速率约为仓鼠肝脏的一半。2. 对参与嘧啶生物合成的几种酶在肝脏和肺的100000g上清液中的表观K(m)和V(max.)值进行了测定。两个器官中的表观K(m)值非常相似。根据估计的V(max.)得出结论,仓鼠肺细胞代谢乳清酸的能力比肝细胞弱。3. 一项时间反应和剂量反应研究表明,放线菌素D抑制肺RNA合成的效率与抑制肝RNA合成的效率相同。4. 以亮氨酸掺入量衡量的蛋白质合成,在给予2mg/kg环己酰亚胺30分钟后,在两个器官中均受到抑制。给予环己酰亚胺3小时后,肝脏和肺中的剂量反应模式相似。5. 得出的结论是,仓鼠肺中体内的RNA和蛋白质合成与肝脏中的相应反应非常相似。因此,可以用与研究肝脏病理生物化学类似的方法,在肺中评估有毒物质对RNA和蛋白质合成的改变。

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