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与核酸合成相关的焦磷酸缩合活性。

Pyrophosphate-condensing activity linked to nucleic acid synthesis.

作者信息

Volloch V Z, Rits S, Tumerman L

出版信息

Nucleic Acids Res. 1979 Apr;6(4):1521-34. doi: 10.1093/nar/6.4.1521.

Abstract

In some preparations of DNA dependent RNA polymerase a new enzymatic activity has been found which catalyzes the condensation of two pyrophosphate molecules, liberated in the process of RNA synthesis, to one molecule of orthophosphate and one molecule of Mg (or Mn) - chelate complex with trimetaphosphate. This activity can also cooperate with DNA-polymerase, on condition that both enzymes originate from the same cells. These results point to two general conclusions. First, energy is conserved in the overall process of nucleic acid synthesis and turnover, so that the process does not require an energy influx from the cell's general resources. Second, the synthesis of nucleic acids is catalyzed by a complex enzyme system which contains at least two separate enzymes, one responsible for nucleic acid polymerization and the other for energy conservation via pyrophosphate condensation.

摘要

在某些依赖DNA的RNA聚合酶制剂中,发现了一种新的酶活性,它催化在RNA合成过程中释放的两个焦磷酸分子缩合为一个正磷酸分子和一个与三偏磷酸形成的Mg(或Mn)螯合物分子。这种活性也可以与DNA聚合酶协同作用,条件是这两种酶都来自同一细胞。这些结果指向两个普遍结论。第一,能量在核酸合成和周转的整个过程中得以保存,因此该过程不需要从细胞的一般资源中输入能量。第二,核酸的合成由一个复杂的酶系统催化,该系统至少包含两种独立的酶,一种负责核酸聚合,另一种负责通过焦磷酸缩合来保存能量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a5d4/327787/d85a8e803dc8/nar00445-0305-a.jpg

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