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一种包含源自Sp1第一指结构域的His₄型指结构域的非FokI型锌指核酸酶对DNA寡核苷酸的高效切割。

Efficient cleavage of DNA oligonucleotides by a non-FokI-type zinc finger nuclease containing one His₄-type finger domain derived from the first finger domain of Sp1.

作者信息

Negi Shigeru, Yoshioka Michiko, Mima Hiroko, Mastumoto Makoto, Suzuki Michiko, Yokoyama Mao, Kano Koji, Sugiura Yukio

机构信息

Faculty of Pharmaceutical Science, Doshisha Women's University, 97-1 Minamihokotachi, Koudo, Kyotanabe, Kyoto 610-0395, Japan.

Faculty of Pharmaceutical Science, Doshisha Women's University, 97-1 Minamihokotachi, Koudo, Kyotanabe, Kyoto 610-0395, Japan.

出版信息

Bioorg Med Chem Lett. 2015 Oct 1;25(19):4074-7. doi: 10.1016/j.bmcl.2015.08.045. Epub 2015 Aug 22.

DOI:10.1016/j.bmcl.2015.08.045
PMID:26316464
Abstract

In this study, we sought to improve the hydrolytic activity of a His4-type single finger domain (f2), which was previously derived from the second finger domain (f2') of the Sp1 zinc finger protein (Sp1wt), which has 3 tandem finger domains (f1', f2', and f3'). To this end, 2 His4-type single finger domains were generated by mutating 2 Cys residues participating in Zn(II) coordination with the His residues in the first (f1') and third finger (f3') domains of Sp1wt. Circular dichroism spectroscopy results showed that the first and second His4-type zinc finger domains (f1 and f2) adopted folded ββα structures in the presence of Zn(II), but that the third His4-type zinc finger domain (f3) did not. Non-FokI-type zinc finger nucleases containing 3 or 4 finger domains were also prepared by combining a His4-type zinc finger domain with the Sp1wt scaffold. We studied their DNA-binding abilities and hydrolytic activities against DNA oligonucleotides by performing gel-mobility-shift assays. The results showed that f1 had higher hydrolytic activity for a DNA oligonucleotide with a GC box (5'-GGG GCG GGG-3'), compared with that of f2, although both His4-type single finger domains had similar DNA-binding affinities. The difference in the hydrolytic activity between f1 and f2 was ascribed not only to the zinc coordinate structure, but also to its folding structure and the stability of finger domain.

摘要

在本研究中,我们试图提高一种His4型单指结构域(f2)的水解活性,该结构域先前源自Sp1锌指蛋白(Sp1wt)的第二个指结构域(f2'),Sp1wt具有3个串联指结构域(f1'、f2'和f3')。为此,通过将参与与Sp1wt的第一指结构域(f1')和第三指结构域(f3')中的His残基进行Zn(II)配位的2个Cys残基突变,生成了2个His4型单指结构域。圆二色光谱结果表明,在存在Zn(II)的情况下,第一和第二个His4型锌指结构域(f1和f2)采用折叠的ββα结构,但第三个His4型锌指结构域(f3)没有。还通过将His4型锌指结构域与Sp1wt支架组合,制备了包含3个或4个指结构域的非FokI型锌指核酸酶。我们通过进行凝胶迁移率变动分析研究了它们对DNA寡核苷酸的DNA结合能力和水解活性。结果表明,与f2相比,f1对具有GC盒(5'-GGG GCG GGG-3')的DNA寡核苷酸具有更高的水解活性,尽管这两个His4型单指结构域具有相似的DNA结合亲和力。f1和f2之间水解活性的差异不仅归因于锌配位结构,还归因于其折叠结构和指结构域的稳定性。

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