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Abstract A unique method using membrane preconcentration capillary electrophoresis (mPC-CE) on-line with tandem mass spectrometry (mPC-CE-MS/MS) for sequencing 100 μL) while maintaining high analyte resolution and separation efficiencies that are typically afforded by CE. Instrumental parameters, including the internal dimensions of the mPC-CE capillary, collision gas pressure, collision gas type, and collision energy, are all shown to have substantial effect on the abundance of product ions produced in tandem MS/MS spectra when attempting to sequence peptides at the sub 100 femtomole level. Furthermore, we demonstrate that the physico-chemical properties of these analytes can also affect the MS/MS product ion abundance. In particular, the presence of acidic residue tends to reduce mPC-tlTP-CE-MS/MS sensitivity and direct fragmentation processes resulting in incomplete sequence information. This can be overcome by a simple esterification of the carboxylic acid functional group. Ultimately, we present an optimized mPC-tlTP-CE-MS/MS approach that permits peptide sequence determination by consumption of ∼40 femtomole of peptide analyte.
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Andy J. Tomlinson
Boston University
Stephen Naylor
University of Wisconsin–Milwaukee
Journal of Liquid Chromatography
Mayo Clinic
Mayo Clinic in Arizona
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Tomlinson et al. (Wed,) studied this question.
synapsesocial.com/papers/6a19f25105af093a17f6c89a — DOI: https://doi.org/10.1080/10826079508014613