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Detection and selective dissociation of intact ribosomes in a mass spectrometer

机译:质谱仪中完整核糖体的检测和选择性解离

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摘要

Intact Escherichia coli ribosomes have been projected into the gas phase of a mass spectrometer by means of nanoflow electrospray techniques. Species with mass/charge ratios in excess of 20,000 were detected at the level of individual ions by using time-of-flight analysis. Once in the gas phase the stability of intact ribosomes was investigated and found to increase as a result of cross-linking ribosomal proteins to the rRNA. By lowering the Mg2+ concentration in solutions containing ribosomes the particles were found to dissociate into 30S and 50S subunits. The resolution of the charge states in the spectrum of the 30S subunit enabled its mass to be determined as 852,187 ± 3,918 Da, a value within 0.6% of that calculated from the individual proteins and the 16S RNA. Further dissociation into smaller macromolecular complexes and then individual proteins could be induced by subjecting the particles to increasingly energetic gas phase collisions. The ease with which proteins dissociated from the intact species was found to be related to their known interactions in the ribosome particle. The results show that emerging mass spectrometric techniques can be used to characterize a fully functional biological assembly as well as its isolated components.
机译:已经通过纳米流电喷雾技术将完整的大肠杆菌核糖体投射到质谱仪的气相中。通过飞行时间分析,在单个离子水平上检测到质荷比超过20,000的物种。一旦进入气相,就研究了完整核糖体的稳定性,并发现由于核糖体蛋白与rRNA的交联而增加了稳定性。通过降低含核糖体的溶液中的Mg 2 + 浓度,发现颗粒分解为30S和50S亚基。 30S亚基光谱中电荷状态的分辨率可以确定其质量为852,187±3,918 Da,该值在单个蛋白质和16S RNA计算值的0.6%之内。进一步解离成较小的大分子复合物,然后通过使颗粒受到越来越高能的气相碰撞,可以诱导单个蛋白质。发现从完整物种中解离蛋白质的难易程度与其在核糖体颗粒中的已知相互作用有关。结果表明,新兴的质谱技术可用于表征功能完备的生物组件及其分离的组分。

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