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首页> 外文期刊>Frontiers in Bioengineering and Biotechnology >High-Throughput Large-Scale Targeted Proteomics Assays for Quantifying Pathway Proteins in Pseudomonas putida KT2440
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High-Throughput Large-Scale Targeted Proteomics Assays for Quantifying Pathway Proteins in Pseudomonas putida KT2440

机译:用于量化途径蛋白的高通量大规模蛋白质组学测定在PSEUDOMONAS PITIDA KT2440中定量途径

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摘要

Targeted proteomics is a mass spectrometry-based protein quantification technique with high sensitivity, accuracy, and reproducibility. As a key component in the multi-omics toolbox of systems biology, targeted liquid chromatography-selected reaction monitoring (LC-SRM) measurements are critical for enzyme and pathway identification and design in metabolic engineering. To fulfill the increasing need for analyzing large sample sets with faster turnaround time in systems biology, high-throughput LC-SRM is greatly needed. Even though nanoflow LC-SRM has better sensitivity, it lacks the speed offered by microflow LC-SRM. Recent advancements in mass spectrometry instrumentation significantly enhance the scan speed and sensitivity of LC-SRM, thereby creating opportunities for applying the high speed of microflow LC-SRM without losing peptide multiplexing power or sacrificing sensitivity. Here, we studied the performance of microflow LC-SRM relative to nanoflow LC-SRM by monitoring 339 peptides representing 132 enzymes in Pseudomonas putida KT2440 grown on various carbon sources. The results from the two LC-SRM platforms are highly correlated. In addition, the response curve study of 248 peptides demonstrates that microflow LC-SRM has comparable sensitivity for the majority of detected peptides and better mass spectrometry signal and chromatography stability than nanoflow LC-SRM.
机译:靶向蛋白质组学是一种基于质谱的蛋白质量化技术,具有高灵敏度,准确性和再现性。作为系统生物学的多OMICS工具箱中的关键组件,靶向液相色谱 - 选择的反应监测(LC-SRM)测量对于代谢工程中的酶和途径鉴定和设计至关重要。为了满足越来越需要分析系统生物学中的旋转周转时间的大型样本集,大力需要高通量LC-SRM。尽管纳米射线LC-SRM具有更好的灵敏度,但它缺乏Microflow LC-SRM提供的速度。质谱仪中最近的进步显着提高了LC-SRM的扫描速度和灵敏度,从而产生了施加高速微流量LC-SRM的机会,而不会损失肽复用功率或牺牲敏感性。在此,我们通过监测在各种碳源生长的假单胞菌普赖达KT2440中的339个肽的339肽进行339肽来研究微射线LC-SRM的性能。两个LC-SRM平台的结果高度相关。此外,248肽的响应曲线研究表明,微射线LC-SRM对大多数检测的肽和更好的质谱信号和比纳米氟-SRM的色谱稳定性具有相当的灵敏度。
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