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粗糙脉孢菌核酸内切-外切酶对双链DNA的作用。

The actions of Neurospora endo-exonuclease on double strand DNAs.

作者信息

Fraser M J, Hatahet Z, Huang X T

机构信息

Department of Biochemistry, McGill University, Montreal, Canada.

出版信息

J Biol Chem. 1989 Aug 5;264(22):13093-101.

PMID:2546947
Abstract

Neurospora crassa endo-exonuclease, an enzyme implicated in recombinational DNA repair, was found previously to have a distributive endonuclease activity with a high specificity for single strand DNA and a highly processive exonuclease activity. The activities of endo-exonuclease on double strand DNA substrates have been further explored. Endo-exonuclease was shown to have a low bona fide endonuclease activity with completely relaxed covalently closed circular DNA and made site-specific breaks in linear double strand DNA at a low frequency while simultaneously generating a relatively high level of single strand breaks (nicks) in the DNA. Sequencing at nicks induced by endo-exonuclease in pBR322 restriction fragments showed that the highest frequency of nicking occurred at the mid-points of two sites with the common sequence, p-AGCACT-OH. In addition, sequencing revealed less frequent nicking at identical or homologous hexanucleotide sequences in all other 54 cases examined where these sequences either straddled the break site itself or were within a few nucleotides on either side of the break site. The exonucleolytic action of endo-exonuclease on linear DNA showed about 100-fold preference for acting in the 5' to 3' direction. Removal of the 5'-terminal phosphates substantially reduced this activity, internal nicking, and the ability of endo-exonuclease to generate site-specific double strand breaks. On the other hand, nicking of the dephosphorylated double strand DNA with pancreatic DNase I stimulated the exonuclease activity by almost 5-fold, but no stimulation was observed when the DNA was nicked by Micrococcal nuclease. Thus, 5'-p termini either at double strand ends or at nicks in double strand DNA are entry points to the duplex from which endo-exonuclease diffuses linearly or "tracks" in the 5' to 3' direction to initiate its major endo- and exonucleolytic actions. The results are interpreted to show how it is possible for endo-exonuclease to generate single strand DNA for switching into a homologous duplex either at a nick or while remaining bound at a double strand break in the DNA. Such mechanisms are consistent with current models for recombinational double strand break repair in eukaryotes.

摘要

粗糙脉孢菌内切外切核酸酶是一种参与重组DNA修复的酶,先前发现它具有对单链DNA具有高特异性的分布性内切核酸酶活性和高度持续性的外切核酸酶活性。已进一步探索了内切外切核酸酶对双链DNA底物的活性。内切外切核酸酶对完全松弛的共价闭合环状DNA显示出低的真正内切核酸酶活性,并且在低频下在线性双链DNA中产生位点特异性断裂,同时在DNA中产生相对高水平的单链断裂(切口)。对pBR322限制性片段中由内切外切核酸酶诱导的切口进行测序表明,切口的最高频率出现在具有共同序列p-AGCACT-OH的两个位点的中点。此外,测序显示在所有其他54个检查的案例中,在相同或同源六核苷酸序列处的切口频率较低,这些序列要么跨越断裂位点本身,要么在断裂位点两侧的几个核苷酸内。内切外切核酸酶对线性DNA的外切核酸酶作用显示出在5'至3'方向上作用的偏好约为100倍。去除5'-末端磷酸基团大大降低了这种活性、内部切口以及内切外切核酸酶产生位点特异性双链断裂的能力。另一方面,用胰DNA酶I切割去磷酸化的双链DNA刺激外切核酸酶活性近5倍,但当用微球菌核酸酶切割DNA时未观察到刺激作用。因此,双链末端或双链DNA切口中的5'-p末端是双链的进入点,内切外切核酸酶从该点沿5'至3'方向线性扩散或“追踪”以启动其主要的内切和外切核酸酶作用。这些结果被解释为表明内切外切核酸酶如何能够在切口处或在DNA双链断裂处保持结合时产生单链DNA以切换到同源双链。这种机制与真核生物中重组双链断裂修复的当前模型一致。

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