Environmental Molecular Sciences Laboratory, Pacific Northwest National Laboratory, P.O. Box 999, Richland, Washington 99352, USA.
Anal Chem. 2010 Oct 1;82(19):8327-34. doi: 10.1021/ac101878a.
Many proteins and proteolytic peptides incorporate the same post-translational modification (PTM) at different sites, creating multiple localization variants with different functions or activities that may coexist in cells. Current analytical methods based on liquid chromatography (LC) followed by tandem mass spectrometry (MS/MS) are challenged by such isomers that often coelute in LC and/or produce nonunique fragment ions. The application of ion mobility spectrometry (IMS) was explored, but success has been limited by insufficient resolution. We show that high-resolution differential ion mobility spectrometry (FAIMS) employing helium-rich gases can readily separate phosphopeptides with variant modification sites. Use of He/N(2) mixtures containing up to 74% He has allowed separating to >95% three monophosphorylated peptides of identical sequence. Similar separation was achieved at 50% He, using an elevated electric field. Bisphosphorylated isomers that differ in only one modification site were separated to the same extent. We anticipate FAIMS capabilities for such separations to extend to other PTMs.
许多蛋白质和蛋白水解肽在不同位点结合相同的翻译后修饰 (PTM),形成具有不同功能或活性的多个定位变体,这些变体可能在细胞中共存。基于液相色谱 (LC) 串联质谱 (MS/MS) 的当前分析方法受到此类异构体的挑战,这些异构体通常在 LC 中共同洗脱和/或产生非独特的片段离子。已经探索了离子淌度谱 (IMS) 的应用,但由于分辨率不足,成功受到限制。我们表明,使用富含氦气的高分辨率差分离子淌度谱 (FAIMS) 可以轻松分离具有不同修饰位点的磷酸肽。使用含有高达 74%氦气的 He/N(2)混合物允许将相同序列的三个单磷酸化肽分离至 >95%。在 50%氦气下,使用升高的电场也可以实现类似的分离。仅在一个修饰位点上有所不同的双磷酸化异构体也被分离到相同程度。我们预计 FAIMS 在这种分离方面的能力将扩展到其他 PTM。