High-throughput assay for determining specificity and affinity of protein-DNA binding interactions

被引:0
|
作者
Outi Hallikas
Jussi Taipale
机构
[1] Molecular/Cancer Biology Program,and Department of Molecular Medicine
[2] Institute of Biomedicine,undefined
[3] University of Helsinki,undefined
[4] National Public Health Institute (KTL),undefined
[5] Biomedicum,undefined
[6] P.O. Box 63 (Haartmaninkatu 8),undefined
[7] FIN-00014 University of Helsinki,undefined
来源
Nature Protocols | 2006年 / 1卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Limited information exists for the binding specificities of many important transcription factors. To address this, we have previously developed a microwell-based assay for directly measuring the affinity of DNA-protein binding interactions. We describe here the detailed protocol for determining sequence specificities of DNA-binding proteins using this assay. The described method is rapid; after preparation of the reagents, the assay can be run in a single day, and its throughput can be increased further by automation. The method is quantitative but requires prior knowledge of one high-affinity binding site for the protein of interest. The protocol can be adapted for determining the effect of protein modifications and protein-protein interactions on DNA-binding specificity, and for engineering proteins with new DNA-binding specificities. In addition, the method is suitable for high-throughput screening to identify proteins or small molecules that modulate protein-DNA binding interactions.
引用
收藏
页码:215 / 222
页数:7
相关论文
共 50 条
  • [41] High-throughput specificity HCV replicon screening assay
    Lemm, JA
    O'Boyle, DR
    Valera, L
    Nower, PT
    Sun, JH
    Rigat, K
    Gao, M
    ANTIVIRAL RESEARCH, 2004, 62 (02) : A50 - A50
  • [42] High-throughput prediction of minor groove electrostatic potential in studies of protein-DNA recognition
    Chiu, Tsu-Pei
    Rohs, Remo
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2016, 251
  • [43] Quantifying Protein-DNA Interactions by Kinetics Exclusion Assay
    Leung, Elizabeth
    Rohn, Troy
    Fologea, Daniel
    BIOPHYSICAL JOURNAL, 2018, 114 (03) : 442A - 442A
  • [44] Fluorescence recovery assay for the detection of protein-DNA binding
    Xu, Xiaoyang
    Zhao, Zhen
    Qin, Lidong
    Wei, Wei
    Levine, Jon E.
    Mirkin, Chad A.
    ANALYTICAL CHEMISTRY, 2008, 80 (14) : 5616 - 5621
  • [45] In vitro Protein-DNA Binding Assay (AlphaScreen® Technology)
    Nomoto, Mika
    Tada, Yasuomi
    Tsukagoshi, Hironaka
    BIO-PROTOCOL, 2019, 9 (03):
  • [46] Engineering High Affinity Protein-Protein Interactions Using a High-Throughput Microcapillary Array Platform
    Lim, Sungwon
    Chen, Bob
    Kariolis, Mihalis S.
    Dimov, Ivan K.
    Baer, Thomas M.
    Cochran, Jennifer R.
    ACS CHEMICAL BIOLOGY, 2017, 12 (02) : 336 - 341
  • [47] High resolution protein-DNA binding energy landscapes via a novel high throughput method
    Plum, G. Eric
    Breslauer, David N.
    Breslauer, Kenneth J.
    BIOPOLYMERS, 2007, 85 (5-6) : VII - VIII
  • [48] Application of affinity capillary electrophoresis in the study of protein-DNA interactions
    Yu Fangzhi
    Zhang Dapeng
    Yuan Zheng
    Zhao Qiang
    Wang Hailin
    CHINESE JOURNAL OF CHROMATOGRAPHY, 2020, 38 (10) : 1133 - 1142
  • [49] Intrinsically disordered regions as affinity tuners in protein-DNA interactions
    Vuzman, Dana
    Levy, Yaakov
    MOLECULAR BIOSYSTEMS, 2012, 8 (01) : 47 - 57
  • [50] Specificity, free energy and information content in protein-DNA interactions
    Stormo, GD
    Fields, DS
    TRENDS IN BIOCHEMICAL SCIENCES, 1998, 23 (03) : 109 - 113