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一种高度简化且廉价的基质辅助激光解吸电离飞行时间质谱(MALDI-TOF MS)样品制备方法,对微生物、植物和昆虫具有广泛适用性。

A highly-simplified and inexpensive MALDI-TOF mass spectrometry sample-preparation method with broad applicability to microorganisms, plants, and insects.

作者信息

Reeve Michael A, Buddie Alan G, Pollard Kathryn M, Varia Sonal, Seier Marion K, Offord Lisa C, Cock Matthew J W

机构信息

CABI, Bakeham Lane, Egham, Surrey, TW20 9 TY, UK.

出版信息

J Biol Methods. 2018 Nov 22;5(4):e103. doi: 10.14440/jbm.2018.261. eCollection 2018.

Abstract

Matrix-assisted laser-desorption and ionization time-of-flight mass spectrometry prepares proteins intact in the gas phase with predominantly a single positive charge. The times-of-flight of charged proteins along a tube held at high vacuum after acceleration in an electrical field are proportional to the square root of the mass-over-charge ratios for the proteins, thereby allowing a mass spectrum to be generated, which can then be used to characterize or identify a protein-containing sample. Several sample-preparation methods are currently available but not all of these are applicable to some forms of fungal biomass and few of these are well suited to the analysis of plant or insect material. We have therefore developed a simplified method that: lyses cells, selectively solubilizes basic proteins, dissolves matrix to a suitable concentration, generates spectra with good intensity and peak richness, costs no more (and generally less) than current methods, and is not constrained in terms of throughput by the availability of centrifuges. Using this method, and a reagent formulation comprising α-cyano-4-hydroxycinnamic acid matrix close to saturation in 60%-65% (v/v) acetonitrile in water containing 2.5% (v/v) trifluoroacetic acid, we have been able to differentiate between strains for a representative subset of aflatoxin-producing and aflatoxin-non-producing strains of fungi, to differentiate between Indian and Pakistani strains of Himalayan balsam rust, to differentiate between closely-related spp. and regional biotypes of , and to differentiate between rubbervine introduced into Australia and Brazil. We have also analyzed fall armyworm and stem-borer samples stored in 70% (v/v) ethanol and old dried insect specimens.

摘要

基质辅助激光解吸电离飞行时间质谱法可在气相中完整地制备主要带单个正电荷的蛋白质。带电蛋白质在电场中加速后,在高真空环境下沿管道飞行的时间与蛋白质的质荷比的平方根成正比,从而能够生成质谱图,进而用于表征或鉴定含蛋白质的样品。目前有几种样品制备方法,但并非所有这些方法都适用于某些形式的真菌生物质,而且其中很少有方法非常适合分析植物或昆虫材料。因此,我们开发了一种简化方法,该方法能够:裂解细胞,选择性溶解碱性蛋白质,将基质溶解到合适的浓度,生成强度和峰丰富度良好的光谱,成本不高于(通常低于)现有方法,并且在通量方面不受离心机可用性的限制。使用这种方法以及一种试剂配方,该配方包含在含有2.5%(v/v)三氟乙酸的60%-65%(v/v)乙腈水溶液中接近饱和的α-氰基-4-羟基肉桂酸基质,我们已经能够区分产黄曲霉毒素和不产黄曲霉毒素的代表性真菌菌株子集,区分喜马拉雅凤仙花锈病的印度和巴基斯坦菌株,区分密切相关的物种和区域生物型,以及区分引入澳大利亚和巴西的橡胶藤。我们还分析了保存在70%(v/v)乙醇中的草地贪夜蛾和蛀茎害虫样本以及陈旧的干燥昆虫标本。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/50a8/6706156/2cca69a62d69/jbm-5-4-e103-g001.jpg

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