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ATP在体外大鼠肝脏分离细胞核中快速标记RNA转运中的作用。

The role of ATP in the transport of rapidly-labeled RNA from isolated nuclei of rat liver in vitro.

作者信息

Ishikawa K, Sato-Odani S, Ogata K

出版信息

Biochim Biophys Acta. 1978 Dec 21;521(2):650-61. doi: 10.1016/0005-2787(78)90306-4.

Abstract

To understand the mechanism of the action of ATP on the in vitro transport of the rapidly-labeled RNA from isolated nuclei, the fate of ATP during the incubation as well as the effect of ATP, its analogues and other ribonucleoside triphosphates on the transport was examined and the following results were obtained. (1) More than 97% of added ATP remained acid soluble. No polyadenylation of the rapidly-labeled RNA in the released fraction by added ATP occurred although new polyadenylate segments smaller than 10 S were synthesized. (2) The addition of an ATP-generating system to the reaction mixture restored the initial rate of the release of the rapidly-labeled RNA from isolated nuclei. (3) Among the ribonucleoside triphosphates tested, ATP was most effective in stimulating the release. GTP was about 2/3 as effective as ATP. UTP showed some effect, but CTP showed no effect. EDTA was also non-effective. (4) When no ATP-generating system was added to the reaction mixture, AMP failed to mimic the effect of ATP. However, the combination of AMP and pyrophosphate could take the place of ATP. (5) Both AMP-CPP and AMP-PCP, the ATP analogues, showed the equal degree of their effect on the release, regardless of the position of the methylene bond. From these results, the principal role of ATP in the in vitro transport systems seemed to be its interaction with isolated nuclei to dissociate a structure which retains the rapidly-labeled RNA in the nucleus.

摘要

为了解ATP对从分离细胞核中快速标记RNA体外转运作用的机制,研究了孵育过程中ATP的去向以及ATP、其类似物和其他核糖核苷三磷酸对转运的影响,结果如下:(1) 添加的ATP超过97%仍可酸溶。尽管合成了小于10S的新聚腺苷酸片段,但添加的ATP并未使释放组分中快速标记的RNA发生聚腺苷酸化。(2) 向反应混合物中添加ATP生成系统可恢复从分离细胞核中释放快速标记RNA的初始速率。(3) 在测试的核糖核苷三磷酸中,ATP对刺激释放最有效。GTP的效果约为ATP的2/3。UTP有一定效果,但CTP无效果。EDTA也无效。(4) 当反应混合物中未添加ATP生成系统时,AMP无法模拟ATP的作用。然而,AMP和焦磷酸的组合可替代ATP。(5) ATP类似物AMP-CPP和AMP-PCP对释放的影响程度相同,与亚甲基键的位置无关。从这些结果来看,ATP在体外转运系统中的主要作用似乎是与分离的细胞核相互作用,解离一种将快速标记RNA保留在细胞核中的结构。

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