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探索一种工程化的Cys2-His2锌指蛋白对四链体DNA的识别。

Exploring the recognition of quadruplex DNA by an engineered Cys2-His2 zinc finger protein.

作者信息

Ladame Sylvain, Schouten James A, Roldan Jose, Redman James E, Neidle Stephen, Balasubramanian Shankar

机构信息

University Chemical Laboratories, University of Cambridge, UK.

出版信息

Biochemistry. 2006 Feb 7;45(5):1393-9. doi: 10.1021/bi050229x.

Abstract

We have recently described an engineered zinc finger protein (Gq1) that binds with high specificity to the intramolecular G-quadruplex formed by the human telomeric sequence 5'-(GGTTAG)(5)-3', and that inhibits the activity of the enzyme telomerase in vitro. Here we report site-directed mutagenesis, biophysical, and molecular modeling studies that provide new insights into quadruplex recognition by the zinc finger scaffold. We show that any one finger of Gq1 can be replaced with the corresponding finger of Zif268, without significant loss of quadruplex affinity or quadruplex versus duplex discrimination. Replacement of two fingers, with one being finger 2, of Gq1 by Zif268 results in significant impairment of quadruplex recognition and loss of discrimination. Molecular modeling suggests that the zinc fingers of Gq1 can bind to the human parallel-stranded quadruplex structure in a stable arrangement, whereas Zif268-quadruplex models show significantly weaker binding energy. Modeling also suggests that an important role of the key protein finger residues in the Gq1-quadruplex complex is to maintain Gq1 in an optimum conformation for quadruplex recognition.

摘要

我们最近描述了一种工程化锌指蛋白(Gq1),它能与由人类端粒序列5'-(GGTTAG)(5)-3'形成的分子内G-四链体高特异性结合,并在体外抑制端粒酶的活性。在此,我们报告了定点诱变、生物物理和分子建模研究,这些研究为锌指支架对四链体的识别提供了新的见解。我们发现,Gq1的任何一个锌指都可以被Zif268的相应锌指取代,而不会显著丧失对四链体的亲和力或对四链体与双链体的区分能力。用Zif268取代Gq1的两个锌指(其中一个是第2个锌指)会导致四链体识别能力显著受损和区分能力丧失。分子建模表明,Gq1的锌指可以以稳定的排列方式结合到人类平行链四链体结构上,而Zif268-四链体模型显示出明显较弱的结合能。建模还表明,Gq1-四链体复合物中关键蛋白锌指残基的一个重要作用是将Gq1维持在用于四链体识别的最佳构象。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/552c/2196205/da38ac31bf1d/nihms-1366-f0001.jpg

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