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蛋白质微阵列技术以及紫外光交联结合质谱法用于蛋白质 - DNA 相互作用分析。

Protein microarray technology and ultraviolet crosslinking combined with mass spectrometry for the analysis of protein-DNA interactions.

作者信息

Kersten Birgit, Possling Alexandra, Blaesing Franca, Mirgorodskaya Ekaterina, Gobom Johan, Seitz Harald

机构信息

Department Lehrach, Max Planck Institute for Molecular Genetics, Ihnestrasse 73, D-14195 Berlin, Germany.

出版信息

Anal Biochem. 2004 Aug 15;331(2):303-13. doi: 10.1016/j.ab.2004.05.008.

Abstract

To gain insights into complex biological processes, such as transcription and replication, the analysis of protein-DNA interactions and the determination of their sequence requirements are of central importance. In this study, we probed protein microarray technology and ultraviolet crosslinking combined with mass spectrometry (MS) for their practicability to study protein-DNA interactions. We chose as a model system the well-characterized interaction of bacterial replication initiator DnaA with its cognate binding site, the DnaA box. Interactions of DnaA domain 4 with a high-affinity DnaA box (R4) and with a low-affinity DnaA box (R3) were compared. A mutant DnaA domain 4, A440V, was included in the study. DnaA domain 4, wt, spotted onto FAST slides, revealed a strong signal only with a Cy5-labeled, double-stranded, 21-mer oligonucleotide containing DnaA box R4. No signals were obtained when applying the mutant protein. Ultraviolet crosslinking combined with nanoLC/MALDI-TOF MS located the site of interaction to a peptide spanning amino acids 433- 442 of Escherichia coli DnaA. This fragment contains six residues that were identified as being involved in DNA binding by recently published crystal structure and nuclear magnetic resonance (NMR) analysis. In the future, the technologies applied in this study will become important tools for studying protein-DNA interactions.

摘要

为深入了解复杂的生物过程,如转录和复制,分析蛋白质与DNA的相互作用及其序列要求至关重要。在本研究中,我们探究了蛋白质微阵列技术以及紫外线交联结合质谱法(MS)用于研究蛋白质与DNA相互作用的实用性。我们选择了特征明确的细菌复制起始蛋白DnaA与其同源结合位点DnaA框之间的相互作用作为模型系统。比较了DnaA结构域4与高亲和力DnaA框(R4)和低亲和力DnaA框(R3)的相互作用。研究中纳入了一个突变型DnaA结构域4,即A440V。点样在FAST载玻片上的野生型DnaA结构域4,仅与含有DnaA框R4的Cy5标记的双链21聚体寡核苷酸显示出强信号。应用突变蛋白时未获得信号。紫外线交联结合纳升液相色谱/基质辅助激光解吸电离飞行时间质谱法(nanoLC/MALDI-TOF MS)将相互作用位点定位到大肠杆菌DnaA中跨越氨基酸433 - 442的一个肽段。该片段包含六个残基,最近发表的晶体结构和核磁共振(NMR)分析确定这些残基参与DNA结合。未来,本研究中应用的技术将成为研究蛋白质与DNA相互作用的重要工具。

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