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GOAT - A simple LC-MS/MS gradient optimization tool
DOI:10.1002/pmic.201300524.png)
摘要
En 中文
Modern nano-HPLC systems are capable of extremely precise control of solvent gradients, allowing high-resolution separation of peptides. Most proteomics laboratories use a simple linear analytical gradient for nano-LC-MS/MS experiments, though recent evidence indicates that optimized non-linear gradients result in increased peptide and protein identifications from cell lysates. In concurrent work, we examined non-linear gradients for the analysis of samples fractionated at the peptide level, where the distribution of peptide retention times often varies by fraction. We hypothesized that greater coverage of these samples could be achieved using per-fraction optimized gradients. We demonstrate that the optimized gradients improve the distribution of peptides throughout the analysis. Using previous generation MS instrumentation, a considerable gain in peptide and protein identifications can be realized. With current MS platforms that have faster electronics and achieve shorter duty cycle, the improvement in identifications is smaller. Our gradient optimization method has been implemented in a simple graphical tool (GOAT) that is MS-vendor independent, does not require peptide ID input, and is freely available for non-commercial use at http://proteomics.swmed.edu/goat/
Keyword:
Bioinformatics
Gradient
LC-MS/MS
Liquid chromatography
Optimization
Separation
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期刊
IF:
3.9
论文数:
7.6K
被引数:
1.1W
机构
引用论文
Evaluation of comprehensive multidimensional separations using reversed-phase, reversed-phase liquid chromatography/mass spectrometry for shotgun proteomics使用反相,反相液相色谱/质谱法对shot弹枪蛋白质组学进行全面多维分离的评估
Optimized Nonlinear Gradients for Reversed-Phase Liquid Chromatography in Shotgun Proteomics
ANALYTICAL CHEMISTRY
IF6.7
In-house construction of a UHPLC system enabling the identification of over 4000 protein groups in a single analysis
ANALYST
IF3.3
Advances in chromatographic techniques and methods in shotgun proteome analysisShot弹枪蛋白质组分析中色谱技术和方法的研究进展

