Grange T, Bertrand E, Espinás M L, Fromont-Racine M, Rigaud G, Roux J, Pictet R
Institut Jacques Monod du CNRS, Université Paris 7, France.
Methods. 1997 Feb;11(2):151-63. doi: 10.1006/meth.1996.0401.
Analysis of the interaction of proteins with either DNA or RNA sequences by in vivo footprinting involves two steps: (i) the in situ modification of nucleic acids by the footprinting reagent and (ii) the visualization of the footprints. Ligation-mediated PCR (LM-PCR) procedures provide a level of sensitivity and specificity that is suitable for visualization of footprints of single-copy genes or low-abundance mRNAs in higher eukaryotes. In this article, we discuss several of the technical aspects of these multistep procedures that contribute to the quality of the results, particularly the parameters that affect the specificity and fidelity of the reactions: (i) the design of the primers, which is important to achieve optimal specificity; (ii) the choice of polymerases so that the amplified material represents faithfully the initial nucleic acid population; and (iii) the impact of the plateau effect within the PCR on the interpretation of the data. We then discuss aspects of in vivo nucleic acid manipulation that may affect the quality of the footprinting image, in particular the choice of the footprinting reagent and its condition of use (e.g., on intact or permeabilized cells or prepared nuclei) and the extent of nucleic acid modification. Finally, we provide detailed experimental procedures corresponding to the techniques we have developed or modified: LM-PCR, reverse ligation-mediated PCR, and nuclease treatment of RNAs in vivo.
通过体内足迹法分析蛋白质与DNA或RNA序列的相互作用涉及两个步骤:(i)用足迹试剂对核酸进行原位修饰,以及(ii)足迹的可视化。连接介导的PCR(LM-PCR)程序提供了一定水平的灵敏度和特异性,适用于可视化高等真核生物中单拷贝基因或低丰度mRNA的足迹。在本文中,我们讨论了这些多步骤程序的几个技术方面,这些方面有助于提高结果的质量,特别是影响反应特异性和保真度的参数:(i)引物的设计,这对于实现最佳特异性很重要;(ii)聚合酶的选择,以便扩增的材料忠实地代表初始核酸群体;以及(iii)PCR中的平台效应对数据解释的影响。然后,我们讨论了可能影响足迹图像质量的体内核酸操作方面,特别是足迹试剂的选择及其使用条件(例如,对完整或通透的细胞或制备的细胞核)以及核酸修饰的程度。最后,我们提供了与我们开发或修改的技术相对应的详细实验程序:LM-PCR、反向连接介导的PCR以及体内RNA的核酸酶处理。