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首页> 外文期刊>Rapid Communications in Mass Spectrometry: RCM >Affinity capture using chimeric membrane proteins bound to magnetic beads for rapDE ligand screening by matrix-assisted laser desorption/ionization time-of-flight mass spectrometry
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Affinity capture using chimeric membrane proteins bound to magnetic beads for rapDE ligand screening by matrix-assisted laser desorption/ionization time-of-flight mass spectrometry

机译:使用与磁珠结合的嵌合膜蛋白进行亲和捕获,以通过基质辅助激光解吸/电离飞行时间质谱法筛选rapDE配体

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摘要

The rapDE and specific detection of therapeutically important ligands in complex mixtures, that may bind to membrane proteins, remains challenging for many research laboratories and pharmaceutical industries. Through its use in the development of screening assays, mass spectrometry (MS) is currently experiencing a period of tremendous expansion. In the study presented here, we took advantage of the remarkable stability properties of a bacterial membrane protein, the KcsA K+ channel, produced in E. coli and purified as a tetrameric protein in the presence of a detergent. This membrane protein can subserve as a molecular template to display the pore-forming region of human K+ channels, which are consDEered as targets in the search for inhibitory ligands. The engineered chimeric proteins were linked to metal-bound magnetic beads, for the screening of complex peptDEe mixtures, such as that of scorpion venoms. The affinity-captured scorpion toxins were eluted prior to matrix-assisted laser desorption/ionization time-of-flight mass spectrometry (MALDI-TOFMS), and to nano-electrospray ionization tandem mass QqTOF mass spectrometry (MS/MS) analysis. The de novo sequence of the toxins was deduced by combining the MS/MS fragmentation of the reduced form (up to the 33 first resDEues) and the trypsin digest peptDEes of the native toxins. This affinity-capture screening assay led to the isolation and characterization of potent and specific ligands of the human K+ channel, Kv1.3. The affinity-capture procedure is fast and reproducible. When linked to magnetic beads, the chimeric membrane protein can be re-used several times without losing any of its selectivity or specificity. This assay also benefits from the fact that it requires minimal amounts of animal venoms or complex mixtures, which can be expensive or difficult to procure.
机译:对于许多研究实验室和制药行业而言,可能与膜蛋白结合的复杂混合物中的具有治疗意义的配体的rapDE和特异性检测仍然具有挑战性。通过其在筛选测定法开发中的应用,质谱(MS)目前正经历一段巨大的发展时期。在这里提出的研究中,我们利用了细菌膜蛋白的显着稳定性,即在大肠杆菌中产生并在去污剂存在下纯化为四聚体蛋白的KcsA K +通道。该膜蛋白可以作为分子模板显示人K +通道的孔形成区域,而这些区域被认为是寻找抑制性配体的靶标。将工程化的嵌合蛋白与金属结合的磁珠相连,以筛选复杂的peptDEe混合物,例如蝎毒。在基质辅助激光解吸/电离飞行时间质谱(MALDI-TOFMS)和纳米电喷雾电离串联质谱QqTOF质谱(MS / MS)分析之前,先洗脱亲和力捕获的蝎毒素。通过将还原形式的MS / MS片段(最多33个第一个RESDEue)与天然毒素的胰蛋白酶消化肽DE结合起来,推导出毒素的从头序列。这种亲和捕获筛选测定法可分离和表征人K +通道Kv1.3的有效配体和特异配体。亲和捕获过程是快速且可重现的。当与磁珠连接时,嵌合膜蛋白可以重复使用几次,而不会失去其选择性或特异性。该测定法还受益于以下事实,即它需要少量的动物毒液或复杂的混合物,这可能是昂贵的或难以获得的。

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