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Exonuclease associated with bacteriophage T5-Induced DNA polymerase.

机译:核酸外切酶与噬菌体T5诱导的DNA聚合酶相关。

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摘要

T-5-induced DNA polymerase has been shown to possess a 3' leads to 5'-exonucleolytic activity. The exonuclease acts on both native and denatured DNA, but the apparent rate of degradation of denatured DNA is about five times faster than that for native DNA. The enzyme appears to act only on 3'-OH ends and produces mainly 5'-dNMP's. Like polymerase activity, exonuclease activity shows a pH optimum around 8.6. Mg2+, dithiothreitol, and N-ethylmaleimide had identical effects on both the activities. Nicked DNA was almost totally protected from exonuclease action under synthetic conditions, i.e., in the presence of 4dNTP's. Denatured DNA was partly degraded in the early phase of incubation with 4dNTP's, presumably due to unhybridized tails at the 3'-OH primer ends. However, the exonuclease activity was operative in both cases under synthetic conditions, as evidenced by template-dependent conversion of [3H]dTTP to [3H]dTMP.
机译:已经证明T-5-诱导的DNA聚合酶具有3'导致5'-核酸外切酶活性。核酸外切酶对天然和变性DNA均起作用,但是变性DNA的表观降解速率比天然DNA快约5倍。该酶似乎仅作用于3'-OH末端,主要产生5'-dNMP。像聚合酶活性一样,核酸外切酶活性显示出约8.6的最佳pH。 Mg2 +,二硫苏糖醇和N-乙基马来酰亚胺对两种活性具有相同的作用。在合成条件下,即在存在4dNTP的情况下,几乎完全保护了切口的DNA免受核酸外切酶作用。变性的DNA在与4dNTP's孵育的早期部分降解,可能是由于3'-OH引物末端的未杂交尾巴引起的。然而,核酸外切酶活性在两种情况下在合成条件下均有效,如[3H] dTTP向[3H] dTMP的模板依赖性转化所证明。

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