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A simple and efficient approach to improve protein identification by the peptide mass fingerprinting method: concomitant use of negative ionization

机译:一种简单有效的方法,可通过肽质量指纹法改善蛋白质鉴定:伴随使用负离子化

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摘要

Peptide mass fingerprinting (PMF) has been widely used as an efficient analytical strategy for protein identification. This is most commonly used with a combination of protein digestion using sequence-specific proteases and MALDI-TOFMS. Then database searches are performed comparing the pattern of the experimentally obtained masses with the pattern of the theoretical peptide masses of proteins stored in the database. The positive ionization mode has been mainly used for MALDI analyses with a few exceptions for phosphopeptides, oligonucleotides, etc. Therefore, nonphosphorylated peptides that have low pI values could be missed from PMF using the positive ionization mode. Here, we introduce optimal conditions for negative ionization of peptides and the practical advantages of negative ionizations in PMF. Angiotensin I (pI 6.9) and bovine serum albumin (BSA) tryptic digests were used as model peptides. Eight matrix candidates and seven additives were examined in terms of sensitivity, robustness and reproducibility. The combination of DHB and phosphoric acid was the best condition for negative ionization of peptides and was found to be compatible with the positive ionization mode. Using 150 mM DHB/1% phosphoric acid, the coverage (% by amino acid count) of BSA tryptic digest (0.6 pmol per spot) totaled 67.2% (negative + positive). The 24.1% of peptides (pI range 4.1-6.2) were detected only by negative ionization, which indicated that acidic peptides were efficiently recovered by the negative ion mode. This methodology has been successfully employed to analyze other proteins without false positive identifications.
机译:肽质量指纹分析(PMF)已被广泛用作蛋白质鉴定的有效分析策略。这最常与结合使用序列特异性蛋白酶的蛋白质消化和MALDI-TOFMS一起使用。然后进行数据库搜索,以比较实验获得的质量模式与数据库中存储的蛋白质的理论肽质量模式。正离子化模式已主要用于MALDI分析,但磷酸肽,寡核苷酸等除外。因此,使用正离子化模式时,PMF可能会漏掉pI值较低的非磷酸化肽。在这里,我们介绍了肽的负离子化的最佳条件以及PMF中负离子化的实际优势。血管紧张素I(pI 6.9)和牛血清白蛋白(BSA)胰蛋白酶消化物用作模型肽。检查了八种候选基质和七种添加剂的敏感性,耐用性和可重复性。 DHB和磷酸的组合是肽负离子化的最佳条件,并且发现与正离子化模式兼容。使用150 mM DHB / 1%磷酸,BSA胰蛋白酶消化物(每点0.6 pmol)的覆盖率(按氨基酸计数的百分比)总计为67.2%(负+阳性)。仅通过负电离检测到24.1%的肽(pI范围为4.1-6.2),这表明酸性肽可通过负离子模式有效回收。该方法已成功地用于分析其他蛋白质,没有假阳性鉴定。

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