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Divalent Metal Ion Differentially Regulates the Sequential Nicking Reactions of the GIY-YIG Homing Endonuclease I-BmoI

机译:二价金属离子差异地调节GIY-YIG归巢核酸内切酶I-BmoI的顺序切口反应

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摘要

Homing endonucleases are site-specific DNA endonucleases that function as mobile genetic elements by introducing double-strand breaks or nicks at defined locations. Of the major families of homing endonucleases, the modular GIY-YIG endonucleases are least understood in terms of mechanism. The GIY-YIG homing endonuclease I-BmoI generates a double-strand break by sequential nicking reactions during which the single active site of the GIY-YIG nuclease domain must undergo a substantial reorganization. Here, we show that divalent metal ion plays a significant role in regulating the two independent nicking reactions by I-BmoI. Rate constant determination for each nicking reaction revealed that limiting divalent metal ion has a greater impact on the second strand than the first strand nicking reaction. We also show that substrate mutations within the I-BmoI cleavage site can modulate the first strand nicking reaction over a 314-fold range. Additionally, in-gel DNA footprinting with mutant substrates and modeling of an I-BmoI-substrate complex suggest that amino acid contacts to a critical GC-2 base pair are required to induce a bottom-strand distortion that likely directs conformational changes for reaction progress. Collectively, our data implies mechanistic roles for divalent metal ion and substrate bases, suggesting that divalent metal ion facilitates the re-positioning of the GIY-YIG nuclease domain between sequential nicking reactions.
机译:归巢核酸内切酶是位点特异性DNA核酸内切酶,其通过在定义的位置引入双链断裂或切口而充当移动遗传元件。在归巢核酸内切酶的主要家族中,就机理而言,对模块化的GIY-YIG核酸内切酶了解最少。 GIY-YIG归巢核酸内切酶I-BmoI通过顺序切口反应产生双链断裂,在此期间GIY-YIG核酸酶结构域的单个活性位点必须进行大量重组。在这里,我们表明二价金属离子在通过I-BmoI调节两个独立的切口反应中起着重要作用。对每个切口反应的速率常数测定表明,有限的二价金属离子对第二链的影响大于第一链切口的反应。我们还显示,I-BmoI切割位点内的底物突变可以在314倍的范围内调节第一条链切口反应。此外,具有突变型底物的凝胶内DNA印迹和I-BmoI-底物复合物的建模表明,与关键GC-2碱基对的氨基酸接触需要诱导底链畸变,从而可能指导构象变化,从而促进反应进程。总的来说,我们的数据暗示了二价金属离子和底物碱的机械作用,表明二价金属离子促进了顺序切口反应之间GIY-YIG核酸酶结构域的重新定位。

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