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  4. Rapid High-pH Reverse Phase StageTip for Sensitive Small-Scale Membrane Proteomic Profiling
 
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Rapid High-pH Reverse Phase StageTip for Sensitive Small-Scale Membrane Proteomic Profiling

Journal
Analytical chemistry
Journal Volume
87
Journal Issue
24
Pages
12016
Date Issued
2015-12-15
Author(s)
Dimayacyac-Esleta, Baby Rorielyn T
Tsai, Chia-Feng
Kitata, Reta Birhanu
Lin, Pei-Yi
Choong, Wai-Kok
Lin, Tai-Du
Wang, Yi-Ting
Weng, Shao-Hsing
PAN-CHYR YANG  
Arco, Susan D
Sung, Ting-Yi
Chen, Yu-Ju
DOI
10.1021/acs.analchem.5b03639
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/627082
URL
https://scholars.lib.ntu.edu.tw/handle/123456789/523497
Abstract
Membrane proteins are crucial targets for cancer biomarker discovery and drug development. However, in addition to the inherent challenges of hydrophobicity and low abundance, complete membrane proteome coverage of clinical specimen is usually hindered by the requirement of large amount of starting materials. Toward comprehensive membrane proteomic profiling for small amounts of samples (10 μg), we developed high-pH reverse phase (Hp-RP) combined with stop-and-go extraction tip (StageTip) technique, as a fast (∼15 min.), sensitive, reproducible, high-resolution and multiplexed fractionation method suitable for accurate quantification of the membrane proteome. This approach provided almost 2-fold enhanced detection of peptides encompassing transmembrane helix (TMH) domain, as compared with strong anion exchange (SAX) and strong cation exchange (SCX) StageTip techniques. Almost 5000 proteins (∼60% membrane proteins) can be identified in only 10 μg of membrane protein digests, showing the superior sensitivity of the Hp-RP StageTip approach. The method allowed up to 9- and 6-fold increase in the identification of unique hydrophobic and hydrophilic peptides, respectively. The Hp-RP StageTip method enabled in-depth membrane proteome profiling of 11 lung cancer cell lines harboring different EGFR mutation status, which resulted in the identification of 3983 annotated membrane proteins. This provides the largest collection of reference peptide spectral data for lung cancer membrane subproteome. Finally, relative quantification of membrane proteins between Gefitinib-resistant and -sensitive lung cancer cell lines revealed several up-regulated membrane proteins with key roles in lung cancer progression.
Subjects
MASS-SPECTROMETRY; PEPTIDE IDENTIFICATION; FRACTION CONCATENATION; PROTEIN TOPOLOGY; LUNG-CANCER; CELL-LINES; CHROMATOGRAPHY; STRATEGY; SEPARATION; PREDICTION
SDGs

[SDGs]SDG3

Publisher
AMER CHEMICAL SOC
Type
journal article

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