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腺病毒DNA聚合酶的特性。

Properties of the adenovirus DNA polymerase.

作者信息

Field J, Gronostajski R M, Hurwitz J

出版信息

J Biol Chem. 1984 Aug 10;259(15):9487-95.

PMID:6540263
Abstract

The 140,000-Da adenovirus-encoded DNA polymerase (Ad Pol) is required for viral DNA replication both in vitro and in vivo. The polymerase co-purifies in a complex with the 80,000-Da precursor (pTP) of the terminal protein (TP) found covalently attached to the 5' ends of adenovirus DNA. To better understand their function in DNA replication, we have examined the properties of the Ad Pol and the pTP X Ad Pol complex on natural and synthetic DNA templates. The pTP X Ad Pol complex utilizes a variety of homopolymer template-primer combinations including poly(dC) X oligo(dG), poly(dA) X oligo(dT), poly(dT) X oligo(dA), and poly(dT) X oligo(rA). With poly(dT) as template and oligo(rA) or oligo(dA) as primer, DNA synthesis by the pTP X Ad Pol complex is stimulated as much as 100-fold by the 59,000-Da adenovirus DNA-binding protein (Ad DBP). ATP (4 mM) can further increase the rate of DNA synthesis 3- to 10-fold. The Ad DBP does not stimulate the activity of host (HeLa cell) DNA polymerase alpha with poly(dT) X oligo(dA) (or oligo(rA)) as the template-primer, and Escherichia coli single-stranded DNA binding protein cannot substitute for the Ad DBP in the stimulation of the Ad Pol activity. Under optimal conditions, poly(dA) chains 30,000 nucleotides in length are formed indicating that the Ad Pol can be a highly processive enzyme. An exonuclease activity co-sediments with the pTP X Ad Pol complex during glycerol gradient centrifugation, and co-purifies with the 140,000-Da Ad Pol after dissociation of the pTP X Ad Pol complex with urea. The Ad Pol-associated nuclease hydrolyzes single-stranded DNA in a 3'----5' direction and is at least 10-fold more active on single-stranded DNA than on duplex DNA. The Ad Pol has no detectable endonuclease activity on single-stranded DNA or duplex circular DNA. Analysis of the products of the nuclease activity showed that 5'-deoxynucleoside monophosphates were released during the hydrolysis of single-stranded DNA. The Ad DBP inhibits the hydrolysis of DNA by the polymerase-associated nuclease activity.

摘要

140,000道尔顿的腺病毒编码DNA聚合酶(Ad Pol)在体外和体内的病毒DNA复制过程中都是必需的。该聚合酶与末端蛋白(TP)的80,000道尔顿前体(pTP)以复合物形式共同纯化,末端蛋白共价连接在腺病毒DNA的5'末端。为了更好地理解它们在DNA复制中的功能,我们研究了Ad Pol和pTP×Ad Pol复合物在天然和合成DNA模板上的特性。pTP×Ad Pol复合物利用多种均聚物模板 - 引物组合,包括聚(dC)×寡聚(dG)、聚(dA)×寡聚(dT)、聚(dT)×寡聚(dA)和聚(dT)×寡聚(rA)。以聚(dT)为模板,寡聚(rA)或寡聚(dA)为引物时,59,000道尔顿的腺病毒DNA结合蛋白(Ad DBP)可将pTP×Ad Pol复合物的DNA合成刺激多达100倍。ATP(4 mM)可进一步将DNA合成速率提高3至10倍。Ad DBP不能刺激以聚(dT)×寡聚(dA)(或寡聚(rA))为模板 - 引物的宿主(HeLa细胞)DNA聚合酶α的活性,并且大肠杆菌单链DNA结合蛋白不能替代Ad DBP来刺激Ad Pol活性。在最佳条件下,可形成长度达30,000个核苷酸的聚(dA)链,这表明Ad Pol可以是一种高度持续合成的酶。在甘油梯度离心过程中,一种核酸外切酶活性与pTP×Ad Pol复合物共同沉降,并且在用尿素解离pTP×Ad Pol复合物后,与140,000道尔顿的Ad Pol共同纯化。与Ad Pol相关的核酸酶以3'→5'方向水解单链DNA,并且对单链DNA的活性比对双链DNA至少高10倍。Ad Pol对单链DNA或双链环状DNA没有可检测到的内切酶活性。对核酸酶活性产物的分析表明,在单链DNA水解过程中会释放5'-脱氧核苷单磷酸。Ad DBP抑制与聚合酶相关的核酸酶活性对DNA的水解。

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