首页> 外文期刊>European journal of mass spectrometry >Chemically-assisted fragmentation combined with multi-dimensional liquid chromatography and matrix-assisted laser desorption/ionization post source decay, matrix-assisted laser desorption/ionization tandem time-of-flight or matrix-assisted laser deso
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Chemically-assisted fragmentation combined with multi-dimensional liquid chromatography and matrix-assisted laser desorption/ionization post source decay, matrix-assisted laser desorption/ionization tandem time-of-flight or matrix-assisted laser deso

机译:化学辅助裂解结合多维液相色谱和源衰减后的基质辅助激光解吸/电离,基质辅助激光解吸/电离串联飞行时间或基质辅助激光解吸

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摘要

Derivatization of tryptic peptides using an Ettan CAF matrix-assisted laser desorption/ionization (MALDI) sequencing kit in combination with MALDI-post source decay (PSD) is a fast, accurate and convenient way to obtain de novo or confirmative peptide sequencing data. CAF (chemically assisted fragmentation) is based on solid-phase derivatization using a new class of water stable sulfonation agents, which strongly improves PSD analysis and simplifies the interpretation of acquired spectra. The derivatization is performed on solid supports, ZipTip(mu C18), limiting the maximum peptide amount to 5 mu g. By performing the derivatization in solution enabled the labeling of tryptic peptides derived from 100 mu g of protein. To increase the number of peptides that could be sequenced, derivatized peptides were purified using multidimensional liquid chromatography (MDLC) prior to MALDI sequencing. Following the first dimension strong cation exchange (SCX) chromatography step, modified peptides were separated using reversed-phase chromatography (RPC). During the SCX clean up step, positively charged peptides are retained on the column while properly CAF-derivatized peptides (uncharged) are not. A moderately complex tryptic digest, prepared from six different proteins of equimolar amounts, was CAF-derivatized and purified by MDLC. Fractions from the second dimension nano RPC step were automatically sampled and on-line dispensed to MALDI sample plates and analyzed using MALDI mass spectrometry fragmentation techniques. All proteins in the derivatized protein mixture digest were readily identified using MALDI-PSD or MALDI tandem mass spectrometry (MS/MS). More than 40 peptides were unambiguously sequenced, representing a seven-fold increase in the number of sequenced peptides in comparison to when the CAF-derivatized protein mix digest was analyzed directly (no MDLC-separation) using MALDI-PSD. In conclusion, MDLC purification of CAF-derivatized peptides significantly increases the success rate for de novo and confirmative sequencing using various MALDI fragmentation techniques. This new approach is not only applicable to single protein digests but also to more complex digests and could, thus, be an alternative to electrospray ionization MS/MS for peptide sequencing.
机译:使用Ettan CAF基质辅助激光解吸/电离(MALDI)测序试剂盒和MALDI后源衰变(PSD)进行胰蛋白酶消化肽的衍生化,是获得从头或确认性肽测序数据的快速,准确和方便的方法。 CAF(化学辅助裂解)基于使用一类新型的水稳定型磺化剂的固相衍生化,可大大改善PSD分析并简化对采集光谱的解释。在固体载体ZipTip(μC18)上进行衍生化,将最大肽量限制为5μg。通过在溶液中进行衍生化,可以标记衍生自100微克蛋白质的胰蛋白酶肽。为了增加可以测序的肽的数量,在进行MALDI测序之前,使用多维液相色谱(MDLC)纯化衍生肽。在进行一维强阳离子交换(SCX)色谱步骤后,使用反相色谱(RPC)分离修饰的肽。在SCX净化步骤中,带正电荷的肽保留在色谱柱上,而没有适当地CAF衍生的肽(不带电荷)则未被保留。由六种等摩尔量的不同蛋白质制备的中度复杂的胰蛋白酶消化物被CAF衍生化并通过MDLC纯化。来自第二维纳米RPC步骤的馏分被自动采样,并在线分配到MALDI样品板上,并使用MALDI质谱碎裂技术进行分析。使用MALDI-PSD或MALDI串联质谱(MS / MS)可以轻松识别衍生化蛋白质混合物消化液中的所有蛋白质。与使用MALDI-PSD直接分析CAF衍生化的蛋白质混合物消化物(无MDLC分离)相比,对40多个肽段进行了明确的测序,这表示已测序肽段的数量增加了7倍。总之,使用各种MALDI片段技术对CAF衍生肽的MDLC纯化显着提高了从头测序和确证测序的成功率。这种新方法不仅适用于单一蛋白质的消化物,还适用于更复杂的消化物,因此可以替代电喷雾离子化MS / MS进行肽测序。

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