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来自粗细胞提取物的DNA-蛋白质组装体的分析生物化学

Analytical biochemistry of DNA--protein assemblies from crude cell extracts.

作者信息

Hégarat Nadia, Cardoso Gildas Mouta, Rusconi Filippo, Francois Jean-Christophe, Praseuth Danièle

机构信息

INSERM, U565, USM503, Département de Régulations, développement et diversité moléculaire, Laboratoire des Régulations et dynamique des génomes, CNRS, UMR5153, Acides nucléiques: dynamique, ciblage et fonctions biologiques, Paris, France.

出版信息

Nucleic Acids Res. 2007;35(13):e92. doi: 10.1093/nar/gkm490. Epub 2007 Jul 7.

Abstract

Purification of specific DNA-protein complexes is a challenging task, as the involved interactions can be both electrostatic/H-bond and hydrophobic. The chromatographic stringency needed to obtain reasonable purifications uses salts and detergents. However, these components elicit the removal of proteins unspecifically bound to the chromatographic support itself, thus contaminating the purification products. In this work, a photocleavable linker connected the target oligonucleotidic sequence to the chromatographic beads so as to allow the irradiation-based release of the purified DNA-protein complexes off the beads. Our bioanalytical conditions were validated by purifying the tetracycline repressor protein onto a specific oligonucleotide. The purification factor was unprecedented, with a single contaminant. The robustness of our method was challenged by applying it to the purification of multiprotein assemblies forming onto DNA damage-mimicking oligonucleotides. The purified components were identified as well-known DNA repair proteins, and were shown to retain their enzymatic activities, as seen by monitoring DNA ligation products. Remarkably, kinase activities, also monitored, were found to be distinct on the beads and on the purified DNA-protein complexes, showing the benefits to uncouple the DNA-protein assemblies from the beads for a proper understanding of biochemical regulatory mechanisms involved in the DNA-protein assemblies.

摘要

纯化特定的DNA-蛋白质复合物是一项具有挑战性的任务,因为其中涉及的相互作用可能既有静电/氢键作用,又有疏水作用。获得合理纯化所需的色谱严格性需要使用盐和去污剂。然而,这些成分会非特异性地去除与色谱支持物本身结合的蛋白质,从而污染纯化产物。在这项工作中,一种可光裂解的连接子将目标寡核苷酸序列连接到色谱珠上,以便通过基于照射的方式从珠子上释放纯化的DNA-蛋白质复合物。我们通过将四环素阻遏蛋白纯化到特定的寡核苷酸上来验证我们的生物分析条件。纯化因子是前所未有的,只有一种污染物。我们将该方法应用于纯化在模拟DNA损伤的寡核苷酸上形成的多蛋白组装体,以此来检验该方法的稳健性。纯化的成分被鉴定为众所周知的DNA修复蛋白,并且通过监测DNA连接产物可以看出,它们保留了酶活性。值得注意的是,还监测到激酶活性在珠子上和纯化的DNA-蛋白质复合物上是不同的,这表明将DNA-蛋白质组装体与珠子分离有利于正确理解DNA-蛋白质组装体中涉及的生化调控机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/16e8/1935021/b1a051e79c9f/gkm490f1.jpg

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