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ACCURACY REQUIREMENTS FOR PEPTIDE CHARACTERIZATION BY MONOISOTOPIC MOLECULAR MASS MEASUREMENTS

机译:通过单同位素分子质量测量表征肽的准确性要求

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Accurately measured monoisotopic mass of a biomolecule can reveal its elemental and, in the case of a biopolymer, its monomer composition, In this work, the limitations of the technique were analyzed in application to peptides, For the currently available level of mass accuracy of about +/-1 ppm, the mass limit for revealing the unique elemental composition of a peptide was found to be 700-800 Da, with the possibility to extend this range as the mass accuracy improves, As for the amino acid composition determination, the principal limit of similar to 500-600 Da cannot be overcome in the general case by instrumental or methodological improvements. It is proposed that, for the peptide characterization, the molecular mass must be determined with sufficient accuracy to rule out a significant fraction of the peptides having the same nominal mass but different elemental and amino acid compositions, An accuracy of +/-1 ppm tvas found to exclude 99% of such peptides and, therefore, ensure a high degree of confidence in peptide characterization.
机译:精确测量的生物分子的单同位素质量可以揭示其元素,对于生物聚合物,还可以揭示其单体组成。在这项工作中,分析了该技术在应用于肽中的局限性。 +/- 1 ppm,发现揭示肽独特元素组成的质量极限为700-800 Da,随着质量准确性的提高,该范围有可能扩大。在一般情况下,无法通过仪器或方法上的改进来克服类似于500-600 Da的限制。建议对于肽表征,必须以足够的准确度确定分子量,以排除相当一部分标称质量相同但元素和氨基酸组成不同的肽,准确度为+/- 1 ppm tvas被发现排除了99%的此类肽,因此确保了对肽表征的高度信心。

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