首页> 美国卫生研究院文献>Nucleic Acids Research >In vitro conversion of MVM parvovirus single-stranded DNA to the replicative form by DNA polymerase alpha from Ehrlich ascites tumour cells.
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In vitro conversion of MVM parvovirus single-stranded DNA to the replicative form by DNA polymerase alpha from Ehrlich ascites tumour cells.

机译:通过Ehrlich腹水肿瘤细胞的DNA聚合酶α将MVM细小病毒单链DNA体外转化为复制形式。

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摘要

A partially purified preparation of DNA polymerase alpha, obtained from the cytosol of Ehrlich ascites tumour cells, has been found to catalyze the conversion of MVM parvovirus, SS DNA (5 kilobases) to RF in vitro. The reaction initiates at a natural 55 base pair hairpin which exists at the 3' terminus of MVM SS DNA. The SS leads to RF conversion is sensitive to aphidicolin, resistant to ddTTP and is promoted by purine ribonucleoside 5' triphosphates, a phenomenon which could not be explained simply by stabilization effects on the in vitro deoxynucleotide precursor pool. In the absence of rNTPs, nascent complementary strands frequently terminate prematurely at a preferred location, between 1300 and 1700 nucleotides from the initiating 3' hairpin terminus. This in vitro system, involving self-primed parvovirus DNA synthesis, provides a convenient assay for those components of the mammalian replicative DNA polymerase complex which are required for the elongation of nascent DNA chains.
机译:已发现从Ehrlich腹水肿瘤细胞的细胞质中获得的DNA聚合酶α的部分纯化制剂可在体外催化MVM细小病毒SS DNA(5千碱基)向RF的转化。该反应起始于天然的55个碱基对的发夹,该发夹存在于MVM SS DNA的3'末端。 SS导致RF转换对Aphidicolin敏感,对ddTTP具有抗性,并由嘌呤核糖核苷5'三磷酸促进,这种现象不能简单地通过对体外脱氧核苷酸前体库的稳定作用来解释。在不存在rNTP的情况下,新生的互补链经常在一个优选的位置过早终止,该位置位于起始3'发夹末端的1300至1700个核苷酸之间。该体外系统涉及自引发的细小病毒DNA合成,可为哺乳动物复制性DNA聚合酶复合体中新生DNA链的延伸所必需的那些成分提供便捷的检测方法。

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