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关于大肠杆菌DNA聚合酶I的持续合成机制。聚合反应的延迟起始。

On the processive mechanism of Escherichia coli DNA polymerase I. Delayed initiation of polymerization.

作者信息

Bambara R A, Uyemura D, Lehman I R

出版信息

J Biol Chem. 1976 Jul 10;251(13):4090-4.

PMID:776980
Abstract

Escherichia coli DNA polymerase I shows a delay in the initiation of polymerization after binding to the cohesive ends of lambda DNA. This delay is significantly longer than the time required for the synthesis of an octanucleotide sequence on the right-hand cohesive end of the lambda DNA. When the extent of polymerization is limited by omission of one or more of the deoxynucleoside triphosphates, and polymerization started again by their addition, the delay still occurs. A plausible explanation for this phenomenon is that two forms of the enzyme or enzyme - DNA complex exist, only one of which is active. The delay, therefore, represents the time necessary to convert the inactive to the active form of the enzyme or enzyme complex. One consequence of the defect in DNA polymerase I, due to the polA12 mutation, is apparently to alter the equilibrium between the two forms. However, the rate of polymerization and the rate of conversion of inactive to active enzyme or enzyme complex are not changed significantly.

摘要

大肠杆菌DNA聚合酶I在与λ噬菌体DNA的粘性末端结合后,聚合反应的起始会出现延迟。这种延迟明显长于在λ噬菌体DNA右手粘性末端合成一个八核苷酸序列所需的时间。当通过省略一种或多种脱氧核苷三磷酸来限制聚合程度,然后再添加它们重新启动聚合反应时,延迟仍然会出现。对这一现象的一个合理的解释是,存在两种形式的酶或酶-DNA复合物,其中只有一种是有活性的。因此,延迟代表了将无活性形式的酶或酶复合物转化为活性形式所需的时间。由于polA12突变导致的DNA聚合酶I缺陷的一个后果显然是改变了两种形式之间的平衡。然而,聚合反应的速率以及无活性酶或酶复合物向活性形式的转化速率并没有显著改变。

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