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首页> 外文期刊>Journal of mass spectrometry: JMS >MALDI-TOF mass spectrometry, an efficient technique for in situ detection and characterization of actinomycins
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MALDI-TOF mass spectrometry, an efficient technique for in situ detection and characterization of actinomycins

机译:MALDI-TOF质谱,一种用于放线菌素原位检测和表征的有效技术

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An extensive study of actinomycins was performed usingmatrix-assisted laser desorption/ionizationmass spectrometry (MALDI-TOF MS). Actinomycins represent a well-known family of peptidolactone chromopeptides with potent cytostatic and antibiotic properties. Using five well-characterized streptomycete strains, we introduced MALDI-TOF MS as an efficient technique for rapid in situ detection of actinomycins in surface extracts of cells picked from agar plates. By this procedure, actinomycin complexes can be investigated with high sensitivity and accuracy in a minimum of time. These studies were complemented by mass spectrometric investigation of actinomycins obtained from culture filtrate extracts and purified by high-performance liquid chromatography to detect yet unknown actinomycin species. By feeding experiments, C-demethyl-actinomycins from Streptomyces chrysomallus and Streptomyces parvulus as well as hemi-actinomycins from Streptomyces antibioticus lacking one of the two pentapeptide lactone rings were isolated and characterized as novel variants for structure-activity relationship studies. Structural characterization of the investigated actinomycins was performed by post source decayMALDI-TOFMS. The specific features of the fragmentation patterns of the protonated and cationized forms of selected actinomycins were investigated in detail.
机译:使用基质辅助激光解吸/电离质谱(MALDI-TOF MS)对放线菌素进行了广泛的研究。放线菌素是具有有效的细胞抑制和抗菌特性的肽内酯肽肽家族。我们使用五种特性良好的链霉菌菌株,将MALDI-TOF MS引入作为一种快速技术,用于快速原位检测从琼脂平板中提取的细胞表面提取物中的放线菌素。通过该程序,可以在最短的时间内以高灵敏度和准确度研究放线菌素复合物。这些研究得到了从培养滤液提取物中得到的放线菌素的质谱研究的补充,并通过高效液相色谱法纯化以检测未知的放线菌素种类。通过进食实验,分离了来自链霉菌和小链霉菌的C-去甲基放线菌素以及缺乏两个五肽内酯环之一的抗生素链霉菌的半放线菌素,并将其表征为结构-活性关系研究的新变体。通过后源衰减MALDI-TOFMS对所研究的放线菌素进行结构表征。详细研究了所选放线菌素的质子化和阳离子化形式的碎片化模式的特定特征。

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