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Advantages and drawbacks of nanospray for studying noncovalent protein-DNA complexes by mass spectrometry

机译:纳米喷雾技术通过质谱研究非共价蛋白质-DNA复合物的优缺点

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摘要

The noncovalent complexes between the BlaI protein dimer (wild-type and GM2 mutant) and its double-stranded DNA operator were studied by nanospray mass spectrometry and tandem mass spectrometry (MS/MS). Reproducibility problems in the nanospray single-stage mass spectra are emphasized. The relative intensities depend greatly on the shape of the capillary tip and on the capillary-cone distance. This results in difficulties in assessing the relative stabilities of the complexes simply from MS' spectra of protein-DNA mixtures. Competition experiments using MS/MS are a better approach to determine relative binding affinities. A competition between histidine-tagged BlaIWT (BlaIWTHis) and the GM2 mutant revealed that the two proteins have similar affinities for the DNA operator, and that they co-dimerize to form heterocomplexes. The low sample consumption of nanospray allows MS/MS spectra to be recorded at different collision energies for different charge states with 1 muL of sample. The MS/MS experiments on the dimers reveal that the GM2 dimer is more kinetically stable in the gas phase than the wild-type dimer. The MS/MS experiments on the complexes shows that the two proteins require the same collision energy to dissociate from the complex. This indicates that the rate-limiting step in the monomer loss from the protein-DNA complex arises from the breaking of the protein-DNA interface rather than the protein-protein interface. The dissociation of the protein-DNA complex proceeds by the loss of a highly charged monomer (carrying about two-thirds of the total charge and one-third of the total mass). MS/MS experiments on a heterocomplex also show that the two proteins BlaIWTHis and BlaIGM2 have slightly different charge distributions in the fragments. This emphasizes the need for better understanding the dissociation mechanisms of biomolecular complexes.
机译:通过纳米喷雾质谱和串联质谱(MS / MS)研究了BlaI蛋白二聚体(野生型和GM2突变体)与其双链DNA操纵子之间的非共价复合物。强调了纳米喷雾单级质谱中的重现性问题。相对强度在很大程度上取决于毛细管尖端的形状和毛细管锥的距离。这导致难以仅从蛋白质-DNA混合物的MS光谱评估复合物的相对稳定性。使用MS / MS进行竞争实验是确定相对结合亲和力的更好方法。组氨酸标记的BlaIWT(BlaIWTHis)与GM2突变体之间的竞争表明,这两种蛋白质对DNA操纵子具有相似的亲和力,并且它们共同二聚形成异源复合物。纳喷雾的样品消耗量低,允许使用1μL样品以不同的碰撞能量记录不同电荷状态下的MS / MS光谱。在二聚体上进行的MS / MS实验表明,与野生型二聚体相比,GM2二聚体在气相中具有更高的动力学稳定性。对复合物的MS / MS实验表明,两种蛋白质需要相同的碰撞能才能从复合物中解离。这表明从蛋白质-DNA复合物中损失单体的限速步骤是由蛋白质-DNA界面而不是蛋白质-蛋白质界面的断裂引起的。蛋白质-DNA复合物的解离通过丢失高电荷单体(携带约三分之二的总电荷和三分之一的总质量)而进行。在异源复合物上的MS / MS实验还表明,两种蛋白质BlaIWTHis和BlaIGM2在片段中的电荷分布略有不同。这强调需要更好地了解生物分子复合物的解离机制。

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