Isogawa Asako, Fuchs Robert P, Fujii Shingo
DNA Damage Tolerance, CNRS, Marseille, France.
Inserm, CRCM, Marseille, France.
Methods Mol Biol. 2020;2119:183-199. doi: 10.1007/978-1-0716-0323-9_16.
Identification of the protein complexes associated with defined DNA sequence elements is essential to understand the numerous transactions in which DNA is involved, such as replication, repair, transcription, and chromatin dynamics. Here we describe two protocols, IDAP (Isolation of DNA Associated Proteins) and CoIFI (Chromatin-of-Interest Fragment Isolation), that allow for isolating DNA/protein complexes (i.e., nucleoprotein elements) by means of a DNA capture tool based on DNA triple helix (triplex) formation. Typically, IDAP is used to capture proteins that bind to a given DNA element of interest (e.g., a specific DNA sequence, an unusual DNA structure, a DNA lesion) that can be introduced at will into plasmids. The plasmids are immobilized by means of a triplex-forming probe on magnetic beads and incubated in nuclear extracts; by using in parallel a control plasmid (that lacks the DNA element of interest), proteins that preferentially bind to the DNA element of interest are captured and identified by mass spectrometry. Similarly, CoIFI also uses a triplex-forming probe to capture a specific chromatin fragment from a cultured cell line that has been engineered to contain multiple copies of the DNA element of interest.
识别与特定DNA序列元件相关的蛋白质复合物对于理解DNA参与的众多活动至关重要,这些活动包括复制、修复、转录和染色质动态变化。在此,我们描述了两种方法,即IDAP(DNA相关蛋白分离法)和CoIFI(目标染色质片段分离法),它们可通过基于DNA三链体形成的DNA捕获工具来分离DNA/蛋白质复合物(即核蛋白元件)。通常,IDAP用于捕获与感兴趣的特定DNA元件(如特定DNA序列、异常DNA结构、DNA损伤)结合的蛋白质,这些元件可随意引入质粒中。质粒通过三链体形成探针固定在磁珠上,并在核提取物中孵育;通过同时使用对照质粒(缺乏感兴趣的DNA元件),优先与感兴趣的DNA元件结合的蛋白质被捕获,并通过质谱鉴定。同样,CoIFI也使用三链体形成探针从经过工程改造以包含多个感兴趣的DNA元件拷贝的培养细胞系中捕获特定的染色质片段。