2 research outputs found
Capillary Zone Electrophoresis-Tandem Mass Spectrometry for Top-Down Proteomics of Mouse Brain Integral Membrane Proteins
Mass
spectrometry (MS)-based top-down characterization of integral
membrane proteins (IMPs) is crucial for understanding their functions
in biological processes. However, it is technically challenging due
to their low solubility in typical MS-compatible buffers. In this
work, for the first time, we developed an efficient capillary zone
electrophoresis (CZE)-tandem MS (MS/MS) method for the top-down proteomics
(TDP) of IMPs enriched from mouse brains. Our technique employs a
sample buffer containing 30% (v/v) formic acid and 60% (v/v) methanol
for solubilizing IMPs and utilizes a separation buffer of 30% (v/v)
acetic acid and 30% (v/v) methanol for maintaining the solubility
of IMPs during CZE separation. Single-shot CZE-MS/MS identified 51
IMP proteoforms from the mouse brain sample. Coupling size exclusion
chromatography (SEC) to CZE-MS/MS enabled the identification of 276
IMP proteoforms from the mouse brain sample containing 1–4
transmembrane domains. This proof-of-concept work demonstrates the
high potential of CZE-MS/MS for the large-scale TDP of IMPs
Capillary Zone Electrophoresis-Tandem Mass Spectrometry for Top-Down Proteomics of Mouse Brain Integral Membrane Proteins
Mass
spectrometry (MS)-based top-down characterization of integral
membrane proteins (IMPs) is crucial for understanding their functions
in biological processes. However, it is technically challenging due
to their low solubility in typical MS-compatible buffers. In this
work, for the first time, we developed an efficient capillary zone
electrophoresis (CZE)-tandem MS (MS/MS) method for the top-down proteomics
(TDP) of IMPs enriched from mouse brains. Our technique employs a
sample buffer containing 30% (v/v) formic acid and 60% (v/v) methanol
for solubilizing IMPs and utilizes a separation buffer of 30% (v/v)
acetic acid and 30% (v/v) methanol for maintaining the solubility
of IMPs during CZE separation. Single-shot CZE-MS/MS identified 51
IMP proteoforms from the mouse brain sample. Coupling size exclusion
chromatography (SEC) to CZE-MS/MS enabled the identification of 276
IMP proteoforms from the mouse brain sample containing 1–4
transmembrane domains. This proof-of-concept work demonstrates the
high potential of CZE-MS/MS for the large-scale TDP of IMPs
