Neusüss Christian, Pelzing Matthias, Macht Marcus
Bruker Saxonia Analytik GmbH, Leipzig, Germany.
Electrophoresis. 2002 Sep;23(18):3149-59. doi: 10.1002/1522-2683(200209)23:18<3149::AID-ELPS3149>3.0.CO;2-8.
A capillary electrophoresis-tandem mass spectrometry (CE-MS/MS) approach has been developed for routine application in proteomic studies. Robustness of the coupling is achieved by using a standard coaxial sheath-flow sprayer. Thereby, greater stability than nanoelectrospray ionization-mass spectrometry coupling of sheathless capillary electrophoresis or nanoliquid chromatography (nano-LC) is achieved, resulting in stable operation for several weeks and unattended overnight sequences. The applied sheath flow is reduced to 1-2 microL/min in order to increase sensitivity. Standard peptides and those of digests of standard proteins and gel-separated proteins can be detected in the low femtomole range (full scan and MS/MS). Detection limits are found to be as low as 500 amol. Low femtomole amounts are required for unequivocal identification by MS/MS experiments in the ion trap and subsequent database search. By applying a simple pH-mediated stacking the concentration sensitivity can be lowered to some tens of fmol/microL (nM), depending on capillary size. This sensitivity is close to published values for sheathless CE-MS and nano-LC-MS, respectively (a comparison to reference values is presented). Moreover, with capillaries of about 50 cm in length separations in less than 10 min are possible resulting in a throughput of up to four analyses per hour. This is a factor of 4-12 times faster than nano-LC separation, being the state-of-the-art techniques for proteomic studies.
已开发出一种毛细管电泳-串联质谱(CE-MS/MS)方法用于蛋白质组学研究的常规应用。通过使用标准同轴鞘流喷雾器实现了联用的稳健性。由此,与无鞘毛细管电泳或纳升液相色谱(nano-LC)的纳电喷雾电离-质谱联用相比,实现了更高的稳定性,从而能够稳定运行数周并进行无人值守的过夜序列分析。为了提高灵敏度,将施加的鞘流降低至1-2微升/分钟。标准肽以及标准蛋白质和凝胶分离蛋白质的消化产物在低飞摩尔范围内(全扫描和MS/MS)均可检测到。检测限低至500阿托摩尔。通过离子阱中的MS/MS实验进行明确鉴定并随后进行数据库搜索,需要低飞摩尔量。通过应用简单的pH介导堆积,浓度灵敏度可降低至几十飞摩尔/微升(纳摩尔),具体取决于毛细管尺寸。该灵敏度分别接近已发表的无鞘CE-MS和nano-LC-MS的值(给出了与参考值的比较)。此外,使用长度约为50厘米的毛细管,可在不到10分钟内完成分离,从而实现每小时高达四次分析的通量。这比作为蛋白质组学研究的最新技术的nano-LC分离快4至12倍。