首页> 外文期刊>Journal of proteome research >Comparison of Different Sample Preparation Protocols Reveals Lysis Buffer-Specific Extraction Biases in Gram-Negative Bacteria and Human Cells
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Comparison of Different Sample Preparation Protocols Reveals Lysis Buffer-Specific Extraction Biases in Gram-Negative Bacteria and Human Cells

机译:不同样品制备方案的比较揭示了革兰氏阴性细菌和人类细胞中特定于裂解液的提取酶

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摘要

We evaluated different in-solution and FASP-based sample preparation strategies for absolute protein quantification. Label-free quantification (LFQ) was employed to compare different sample preparation strategies in the bacterium Pseudomonas aeruginosa and human embryonic kidney cells (HEK), and organismal-specific differences in general performance and enrichment of specific protein classes were noted. The original FASP protocol globally enriched for most proteins in the bacterial sample, whereas the sodium deoxycholate in-solution strategy was more efficient with HEK cells. Although detergents were found to be highly suited for global proteome analysis, higher intensities were obtained for high-abundant nucleic acid-associated protein complexes, like the ribosome and histone proteins, using guanidine hydrochloride. Importantly, we show for the first time that the observable total proteome mass of a sample strongly depends on the sample preparation protocol, with some protocols resulting in a significant underestimation of protein mass due to incomplete protein extraction of biased protein groups. Furthermore, we demonstrate that some of the observed abundance biases can be overcome by incorporating a nuclease treatment step or, alternatively, a correction factor for complementary sample preparation approaches.
机译:我们评估了不同的溶液中和基于FASP的样品制备策略,以进行绝对蛋白质定量。采用无标记定量(LFQ)来比较铜绿假单胞菌和人类胚胎肾细胞(HEK)中的不同样品制备策略,并注意到了一般性能和特定蛋白质种类富集方面的生物特异性差异。最初的FASP方案在全球范围内丰富了细菌样品中的大多数蛋白质,而脱氧胆酸钠溶液的策略在HEK细胞中更为有效。尽管发现去污剂非常适合用于全局蛋白质组分析,但是使用盐酸胍对高丰度核酸相关蛋白复合物(如核糖体和组蛋白)获得了更高的强度。重要的是,我们首次显示出样品的可观察到的总蛋白质组质量在很大程度上取决于样品制备方案,某些方案由于对有偏向的蛋白质基团的蛋白质提取不完全而导致蛋白质质量的明显低估。此外,我们证明,通过结合核酸酶处理步骤或替代样品制备方法的校正因子,可以克服某些观察到的丰度偏差。

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