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Fully Automated Sample Processing and Analysis Workflow for Low-Input Proteome Profiling

delete2020-12-22
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OA
AI
梁毅然 cover
梁毅然 (Yiran Liang)
H
Hayden Acor
M
Michaela A. McCown
A
Andikan J. Nwosu
N
Nathaniel B. Axtell
T
Thy Truong
Y
Yongzheng Cong
S
Samuel Payne
R
Ryan Kelly *
DOI:10.1021/acs.analchem.0c04240delete
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Abstract

Abstract

En 中文
Recent advances in sample preparation and analysis have enabled direct profiling of protein expression in single mammalian cells and other trace samples. Several techniques to prepare and analyze low-input samples employ custom fluidics for nanoliter sample processing and manual sample injection onto a specialized separation column. While being effective, these highly specialized systems require significant expertise to fabricate and operate, which has greatly limited implementation in most proteomic laboratories. Here, we report a fully automated platform termed autoPOTS (automated preparation in one pot for trace samples) that uses only commercially available instrumentation for sample processing and analysis. An unmodified, low-cost commercial robotic pipetting platform was utilized for one-pot sample preparation. We used low-volume 384-well plates and periodically added water or buffer to the microwells to compensate for limited evaporation during sample incubation. Prepared samples were analyzed directly from the well plate with a commercial autosampler that was modified with a 10-port valve for compatibility with 30 mu m i.d. nanoLC columns. We used autoPOTS to analyze 1-500 HeLa cells and observed only a moderate reduction in peptide coverage for 150 cells and a 24% reduction in coverage for single cells compared to our previously developed nanoPOTS platform. To evaluate clinical feasibility, we identified an average of 1095 protein groups from similar to 130 sorted B or T lymphocytes. We anticipate that the straightforward implementation of autoPOTS will make it an attractive option for low-input and single-cell proteomics in many laboratories.
Keywords:
MASS-SPECTROMETRY
QUANTITATIVE PROTEOME
CD20
HETEROGENEITY
LYMPHOCYTES
ASSOCIATE
PLATFORM
DATABASE
COLUMNS
ENRICHR

Journal

Analytical Chemistry cover
Analytical Chemistry
IF:
6.7
Papers:
4.7W
Citations:
15.9W

Organization

B
Brigham Young University
Scholars:
9.0K
Papers: 6.0K
Citations: 9.3K
Cited Papers

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