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用新型光足迹试剂Rh(phi)2(bpy)3+对EcoRI和Distamycin进行高分辨率足迹分析。

High resolution footprinting of EcoRI and distamycin with Rh(phi)2(bpy)3+, a new photofootprinting reagent.

作者信息

Uchida K, Pyle A M, Morii T, Barton J K

机构信息

Department of Chemistry, Columbia University, New York, NY 10027.

出版信息

Nucleic Acids Res. 1989 Dec 25;17(24):10259-79. doi: 10.1093/nar/17.24.10259.

Abstract

The complex bis(phenanthrenequinone diimine)(bipyridyl)rhodium(III), Rh(phi)2(bpy)3+, cleaves DNA efficiently in a sequence-neutral fashion upon photoactivation so as to provide a novel, high resolution, chemical photofootpring reagent. Photofootprinting of two crystallographically characterized DNA-binding agents, distamycin, a small natural product which binds to DNA in the minor groove, and the endonuclease EcoRI, which binds in the major groove, gave respectively a 5-7 base pair footprint for the drug at its A6 binding site and a 10-12 base pair footprint for the enzyme centered at its recognition site (5'-GAATTC-3'). Both footprints agree closely with the crystallographic results. The photocleavage reaction can be performed using either a high intensity lamp or, conveniently, a simple transilluminator box, and the photoreaction is not inhibited by moderate concentrations of reagents which are sometimes required for examining interactions of molecules with DNA. When compared with other popular footprinting agents, the rhodium complex shows a number of distinct advantages: sequence-neutrality, high resolution, ability to footprint major as well as minor groove-binding ligands, applicability in the presence of additives such as Mg2+ or glycerol, ease of handling, and a sharply footprinted pattern. Light activated footprinting reactions furthermore offer the possibility of examining DNA-binding interactions with time resolution and within the cell.

摘要

配合物双(菲醌二亚胺)(联吡啶)铑(III),即Rh(phi)2(bpy)3+,在光激活后能以序列中性的方式高效切割DNA,从而提供一种新型的、高分辨率的化学光足迹试剂。对两种通过晶体学表征的DNA结合剂进行光足迹分析,一种是小分子天然产物地霉素,它在小沟中与DNA结合;另一种是核酸内切酶EcoRI,它在大沟中结合。结果分别显示,该药物在其A6结合位点产生了5 - 7个碱基对的足迹,而酶在其识别位点(5'-GAATTC-3')中心产生了10 - 12个碱基对的足迹。这两种足迹都与晶体学结果非常吻合。光切割反应既可以使用高强度灯进行,也可以方便地使用简单的透照箱进行,而且光反应不会被中等浓度的试剂抑制,而这些试剂有时是研究分子与DNA相互作用时所需要的。与其他常用的足迹试剂相比,铑配合物具有许多明显的优点:序列中性、高分辨率、能够对大沟和小沟结合配体进行足迹分析、在存在Mg2+或甘油等添加剂的情况下仍可适用、易于操作以及足迹模式清晰。此外,光激活的足迹反应还提供了以时间分辨率在细胞内研究DNA结合相互作用的可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c4be/335299/9ce4604bf0de/nar00141-0112-a.jpg

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