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Binding, bending and cleavage of DNA substrates by the homing endonuclease Pl-SceI.

机译:归巢核酸内切酶P1-SceI对DNA底物的结合,弯曲和切割。

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摘要

To characterize the interaction between the homing endonuclease PI-SceI and DNA, we prepared different DNA substrates containing the natural recognition sequence or parts thereof. Depending on the nature of the substrates, efficient cleavage is observed with a DNA containing approximatel 30 bp of the natural recognition sequence using supercoiled plasmids, approximately 40-50 bp using linearized plasmids and > 50 bp using synthetic double-stranded oligodeoxynucleotides. Cleavage of supercoiled plasmids occurs without accumulation of the nicked intermediate. In the presence of Mn2+, DNA cleavage by PI-SceI is more efficient than with Mg2+ and already occurs with substrates containing a shorter part of the recognition sequence. The requirements for strong binding are less stringent: a 35 bp oligodeoxynucleotide which is not cleaved is bound as firmly as other longer oligodeoxynucleotides. PI-SceI binds with high affinity to one of its cleavage products, a finding which may explain why PI-SceI hardly shows enzymatic turnover in vitro. Upon binding, two complexes are formed, which differ in the degree of bending (45 degrees versus 75 degrees). According to a phasing analysis bending is directed into the major groove. Strong binding, not, however, cleavage is also observed with the genetically engineered enzymatically inactive variant comprising amino acids 1-277. Models for binding and cleavage of DNA by PI-SceI are discussed based on these results.
机译:为了表征归巢核酸内切酶PI-SceI与DNA之间的相互作用,我们制备了包含天然识别序列或其部分的不同DNA底物。取决于底物的性质,使用超螺旋质粒用包含约30 bp的自然识别序列的DNA观察到有效切割,使用线性化质粒用约40-50 bp的DNA和使用合成双链寡脱氧核苷酸> 50 bp的DNA进行有效切割。超螺旋质粒的切割发生而没有带切口的中间体的积累。在存在Mn2 +的情况下,PI-SceI的DNA切割比Mg2 +的切割效率更高,并且已经在包含较短识别序列部分的底物上发生了。对强结合的要求不那么严格:未被切割的35bp的寡脱氧核苷酸与其他更长的寡脱氧核苷酸一样牢固地结合。 PI-SceI与其裂解产物之一具有高亲和力,这一发现可以解释为什么PI-SceI在体外几乎不显示酶促转化。结合后,形成两个复合物,它们的弯曲程度不同(45度对75度)。根据相位分析,弯曲被引导到主凹槽中。然而,用包含氨基酸1-277的基因工程化的酶学上无活性的变体,也观察到了强结合而不是切割。基于这些结果,讨论了通过PI-SceI结合和切割DNA的模型。

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