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通过体内生物素化标记和与链霉亲和素磁珠直接结合来分离转录因子复合物。

Isolation of transcription factor complexes by in vivo biotinylation tagging and direct binding to streptavidin beads.

作者信息

Rodriguez Patrick, Braun Harald, Kolodziej Katarzyna E, de Boer Ernie, Campbell Jennifer, Bonte Edgar, Grosveld Frank, Philipsen Sjaak, Strouboulis John

机构信息

Department of Cell Biology, Erasmus Medical Center, Rotterdam, The Netherlands.

出版信息

Methods Mol Biol. 2006;338:305-23. doi: 10.1385/1-59745-097-9:305.

Abstract

Efficient tagging methodologies are an integral aspect of protein complex characterization by proteomic approaches. Owing to the very high affinity of biotin for avidin and streptavidin, biotinylation tagging offers an attractive approach for the efficient purification of protein complexes. The very high affinity of the biotin/(strept)avidin system also offers the potential for the single-step capture of lower abundance protein complexes, such as transcription factor complexes. The identification of short peptide tags that are efficiently biotinylated by the bacterial BirA biotin ligase led to an approach for the single-step purification of transcription factor complexes by specific in vivo biotinylation tagging. A short sequence tag fused N-terminally to the transcription factor of interest is very efficiently biotinylated by BirA coexpressed in the same cells, as was demonstrated by the tagging of the essential hematopoietic transcription factor GATA-1. The direct binding to streptavidin of biotinylated GATA-1 in nuclear extracts resulted in the single-step capture of the tagged factor and associated proteins, which were eluted and identified by mass spectrometry. This led to the characterization of several distinct GATA-1 complexes with other transcription factors and chromatin remodeling cofactors, which are involved in activation and repression of gene targets. Thus, BirA-mediated tagging is an efficient approach for the direct capture and characterization of transcription factor complexes.

摘要

高效标记方法是蛋白质组学方法表征蛋白质复合物不可或缺的一个方面。由于生物素与抗生物素蛋白和链霉抗生物素蛋白具有极高的亲和力,生物素化标记为蛋白质复合物的高效纯化提供了一种有吸引力的方法。生物素/(链霉)抗生物素蛋白系统的极高亲和力也为单步捕获低丰度蛋白质复合物(如转录因子复合物)提供了潜力。通过细菌BirA生物素连接酶有效生物素化的短肽标签的鉴定,产生了一种通过特异性体内生物素化标记单步纯化转录因子复合物的方法。如通过对必需的造血转录因子GATA-1进行标记所证明的,与感兴趣的转录因子N端融合的短序列标签可被在同一细胞中共表达的BirA非常有效地生物素化。核提取物中生物素化的GATA-1与链霉抗生物素蛋白的直接结合导致了标记因子及相关蛋白被单步捕获,这些蛋白经洗脱后通过质谱进行鉴定。这导致了几种不同的GATA-1复合物与其他转录因子和染色质重塑辅因子的表征,这些复合物参与基因靶标的激活和抑制。因此,BirA介导的标记是直接捕获和表征转录因子复合物的一种有效方法。

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