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首页> 外文期刊>Nucleic acids research >A single catalytic domain of the junction-resolving enzyme T7 endonuclease I is a non-specific nicking endonuclease
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A single catalytic domain of the junction-resolving enzyme T7 endonuclease I is a non-specific nicking endonuclease

机译:连接解析酶T7核酸内切酶I的单个催化域是非特异性切口内切核酸酶

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A stable heterodimeric protein containing a single correctly folded catalytic domain (SCD) of T7 endonuclease I was produced by means of a trans-splicing intein system. As predicted by a model presented earlier, purified SCD protein acts a non-specific nicking endonuclease on normal linear DNA. The SCD retains some ability to recognize and cleave a deviated DNA double-helix near a nick or a strand-crossing site. Thus, we infer that the non-specific and nicked-site cleavage activities observed for the native T7 endonuclease I (as distinct from the resolution activity) are due to uncoordinated actions of the catalytic domains. The positively charged C-terminus of T7 Endo I is essential for the enzymatic activity of SCD, as it is for the native enzyme. We propose that the preference of the native enzyme for the resolution reaction is achieved by cooperativity in the binding of its two catalytic domains when presented with two of the arms across a four-way junction or cruciform structure.
机译:通过反式内含肽系统产生了一个稳定的异二聚体蛋白,该蛋白含有一个正确折叠的T7核酸内切酶I的催化结构域(SCD)。如先前提出的模型所预测,纯化的SCD蛋白在正常线性DNA上起非特异性切口内切核酸酶的作用。 SCD保留了识别和切割切口或交叉链位点附近的偏离的DNA双螺旋结构的能力。因此,我们推断对于天然T7核酸内切酶I观察到的非特异性和切口位点切割活性(与拆分活性不同)是由于催化域的不协调作用。 T7 Endo I带正电的C末端对于SCD的酶促活性至关重要,因为它对天然酶而言是必不可少的。我们提出,当通过两个臂穿过四向连接或十字形结构呈现时,通过其两个催化结构域的结合中的协同作用,可以实现对于拆分反应的天然酶的偏爱。

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