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Proc Natl Acad Sci U S A. 1999 Mar 16;96(6):2758-63. doi: 10.1073/pnas.96.6.2758.
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本文引用的文献

1
Toward controlling gene expression at will: specific regulation of the erbB-2/HER-2 promoter by using polydactyl zinc finger proteins constructed from modular building blocks.迈向随意控制基因表达:利用由模块化构建块构建的多指锌指蛋白对erbB-2/HER-2启动子进行特异性调控。
Proc Natl Acad Sci U S A. 1998 Dec 8;95(25):14628-33. doi: 10.1073/pnas.95.25.14628.
2
Comprehensive DNA recognition through concerted interactions from adjacent zinc fingers.通过相邻锌指的协同相互作用实现全面的DNA识别。
Biochemistry. 1998 Sep 1;37(35):12026-33. doi: 10.1021/bi981358z.
3
High-resolution structures of variant Zif268-DNA complexes: implications for understanding zinc finger-DNA recognition.Zif268-DNA复合物变体的高分辨率结构:对理解锌指-DNA识别的意义。
Structure. 1998 Apr 15;6(4):451-64. doi: 10.1016/s0969-2126(98)00047-1.
4
Differing roles for zinc fingers in DNA recognition: structure of a six-finger transcription factor IIIA complex.锌指在DNA识别中的不同作用:一种六指转录因子IIIA复合物的结构
Proc Natl Acad Sci U S A. 1998 Mar 17;95(6):2938-43. doi: 10.1073/pnas.95.6.2938.
5
Solution structure of the first three zinc fingers of TFIIIA bound to the cognate DNA sequence: determinants of affinity and sequence specificity.与同源DNA序列结合的TFIIIA前三个锌指的溶液结构:亲和力和序列特异性的决定因素
J Mol Biol. 1997 Oct 17;273(1):183-206. doi: 10.1006/jmbi.1997.1291.
6
Phage display of combinatorial antibody libraries.组合抗体文库的噬菌体展示
Curr Opin Biotechnol. 1997 Aug;8(4):503-8. doi: 10.1016/s0958-1669(97)80075-4.
7
Synergy between adjacent zinc fingers in sequence-specific DNA recognition.序列特异性DNA识别中相邻锌指之间的协同作用。
Proc Natl Acad Sci U S A. 1997 May 27;94(11):5617-21. doi: 10.1073/pnas.94.11.5617.
8
Design of polydactyl zinc-finger proteins for unique addressing within complex genomes.用于复杂基因组内独特寻址的多指锌指蛋白设计。
Proc Natl Acad Sci U S A. 1997 May 27;94(11):5525-30. doi: 10.1073/pnas.94.11.5525.
9
Structures of zinc finger domains from transcription factor Sp1. Insights into sequence-specific protein-DNA recognition.转录因子Sp1锌指结构域的结构。对序列特异性蛋白质-DNA识别的见解。
J Biol Chem. 1997 Mar 21;272(12):7801-9. doi: 10.1074/jbc.272.12.7801.
10
Physical basis of a protein-DNA recognition code.蛋白质 - DNA 识别密码的物理基础。
Curr Opin Struct Biol. 1997 Feb;7(1):117-25. doi: 10.1016/s0959-440x(97)80015-2.

迈向随意控制基因表达:识别每个5'-GNN-3' DNA靶序列的锌指结构域的筛选与设计。

Toward controlling gene expression at will: selection and design of zinc finger domains recognizing each of the 5'-GNN-3' DNA target sequences.

作者信息

Segal D J, Dreier B, Beerli R R, Barbas C F

机构信息

The Skaggs Institute for Chemical Biology and the Department of Molecular Biology, The Scripps Research Institute, La Jolla, CA 92037, USA.

出版信息

Proc Natl Acad Sci U S A. 1999 Mar 16;96(6):2758-63. doi: 10.1073/pnas.96.6.2758.

DOI:10.1073/pnas.96.6.2758
PMID:10077584
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC15842/
Abstract

We have taken a comprehensive approach to the generation of novel DNA binding zinc finger domains of defined specificity. Herein we describe the generation and characterization of a family of zinc finger domains developed for the recognition of each of the 16 possible 3-bp DNA binding sites having the sequence 5'-GNN-3'. Phage display libraries of zinc finger proteins were created and selected under conditions that favor enrichment of sequence-specific proteins. Zinc finger domains recognizing a number of sequences required refinement by site-directed mutagenesis that was guided by both phage selection data and structural information. In many cases, residues not expected to make base-specific contacts had effects on specificity. A number of these domains demonstrate exquisite specificity and discriminate between sequences that differ by a single base with >100-fold loss in affinity. We conclude that the three helical positions -1, 3, and 6 of a zinc finger domain are insufficient to allow for the fine specificity of the DNA binding domain to be predicted. These domains are functionally modular and may be recombined with one another to create polydactyl proteins capable of binding 18-bp sequences with subnanomolar affinity. The family of zinc finger domains described here is sufficient for the construction of 17 million novel proteins that bind the 5'-(GNN)6-3' family of DNA sequences. These materials and methods should allow for the rapid construction of novel gene switches and provide the basis for a universal system for gene control.

摘要

我们采用了一种全面的方法来生成具有特定特异性的新型DNA结合锌指结构域。在此,我们描述了一个锌指结构域家族的生成和表征,该家族是为识别具有5'-GNN-3'序列的16种可能的3碱基对DNA结合位点中的每一种而开发的。创建了锌指蛋白的噬菌体展示文库,并在有利于序列特异性蛋白富集的条件下进行筛选。识别多个序列的锌指结构域需要通过定点诱变进行优化,这一过程由噬菌体筛选数据和结构信息共同指导。在许多情况下,预期不会进行碱基特异性接触的残基对特异性有影响。其中许多结构域表现出极高的特异性,能够区分仅相差一个碱基的序列,亲和力损失超过100倍。我们得出结论,锌指结构域的三个螺旋位置-1、3和6不足以预测DNA结合结构域的精细特异性。这些结构域在功能上是模块化的,可以相互重组以创建能够以亚纳摩尔亲和力结合18碱基对序列的多锌指蛋白。这里描述的锌指结构域家族足以构建1700万个结合5'-(GNN)6-3' DNA序列家族的新型蛋白质。这些材料和方法应能快速构建新型基因开关,并为通用的基因控制系统提供基础。