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Purification, biochemical characterization and protein-DNA interactions of the I-CreI endonuclease produced in Escherichia coli.

机译:大肠杆菌中产生的I-CreI核酸内切酶的纯化,生化特性和蛋白质-DNA相互作用。

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摘要

I- CreI is a member of the LAGLI-DADG family of homing nucleases; however, unlike most members of this family it contains only a single copy of this signature motif. I- CreI was over-expressed in Escherichia coli, and a simple purification protocol developed that gave reasonably pure protein in high yield. Size-exclusion chromatography and chemical cross-linking indicated that the protein is a dimer in solution. DNA cleavage by I- CreI was absolutely dependent on Mg2+(or Mn2+), and was inhibited by monovalent cations. I- CreI displayed a surprisingly high temperature optimum (>50 degrees C), with full activity occurring even at 70 degrees C. Interestingly, SDS was needed for efficient release of the cleavage products from the protein, indicating formation of very stable DNA-protein complexes. In contrast to these robust characteristics, purified I- CreI was unstable; however, it could be stabilized by the addition of either target or non-target DNA. Mobility shift assays revealed that I- CreI binds to DNA in the absence of Mg2+. Hydroxyl radical footprinting showed that I- CreI strongly protected the backbone of a continuous stretch of at least 12 nt on each strand that were shifted, relative to each other, by 2 bp in the 3'direction. Methylation protection and interference analyses were also performed, and together with the hydroxyl radical footprinting, indicate that I- CreI binds in both the major and minor grooves of its target DNA.
机译:I- CreI是归巢核酸酶LAGLI-DADG家族的成员;但是,与该家族的大多数成员不同的是,它仅包含该签名图案的单个副本。 I- CreI在大肠杆菌中过表达,并且开发了一种简单的纯化方案,可以高产量获得合理的纯蛋白质。尺寸排阻色谱法和化学交联表明该蛋白质在溶液中为二聚体。 I- CreI对DNA的切割绝对依赖于Mg2 +(或Mn2 +),并被单价阳离子抑制。 I- CreI显示出令人惊讶的高温最佳温度(> 50°C),甚至在70°C时也会发生完全活性。有趣的是,需要SDS才能有效地从蛋白质释放裂解产物,这表明形成了非常稳定的DNA-蛋白质复合体。与这些强大的特性相反,纯化的I- CreI是不稳定的。但是,可以通过添加靶标DNA或非靶标DNA来使其稳定。迁移率变化分析显示,在不存在Mg2 +的情况下,I- CreI与DNA结合。羟基自由基足迹显示,I-CreI强烈保护每条链上至少12 nt的连续链段的骨架,该链段在3'方向上相对于彼此移位2 bp。还进行了甲基化保护和干扰分析,并与羟基自由基足迹一起表明I-CreI结合在其靶DNA的主要和次要凹槽中。

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