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MYTHBUSTERS: a universal procedure for sample preparation for mass spectrometry

机译:妙处:质谱样品制备的通用程序

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Improvements in proteomic strategies from the development of new and robust separation and identification techniques have led to broad applications of proteomics to solve numerous biological questions. For all analyses, sample quality is unquestionably a critical factor; therefore protein extraction is of outmost importance. The ideal extraction method should provide reproducible spectra of the most comprehensive repertoire of proteins, while minimizing sample loss and degradation. It is already known that to capture the whole proteome is an unenforceable task. Many protein extraction protocols have been described, yet there is no "one perfect procedure" taking into account the vast diversity of biological and physical properties of proteins, including their charge, size, hydrophobicity, interactions and sub-cellular localization. The research presented here reflects the main obstacle occurring in proteomic experimental design; i.e. the lack of reproducibility as a result of alterations in protein extraction methods. We have performed a series of experiments, aimed towards identification of the aptamer-binding partners in cancerous cells. Aptamers are chemically synthesized, short, single-stranded nucleic acids with a strictly defined three-dimensional structure, which allows them to interact with a target molecule with high affinity. The low immunogenicity and cellular-targeting properties of aptamers might facilitate design of suitable drugs with low side-effects. Aptamers can be used for identification of molecules associated with a pathogenic state of a cell. Aptamers can be considered as a powerful-tool, since they possess unique properties to benefit cancer diagnosis, prevention and treatment. We have used different types of protein extraction methods prior to analyses of complex biological samples by mass spectrometry, based on slight changes of homogenization-buffers, and have observed the changes in the identified compounds. These results should prove to be very useful for future proteomic studies and the design of studies in terms of sample preparation, especially sample homogenization and protein extraction.
机译:由于开发了新的强大的分离和鉴定技术,蛋白质组学策略的改进已导致蛋白质组学在解决众多生物学问题上的广泛应用。对于所有分析,样品质量无疑是一个关键因素。因此,蛋白质提取至关重要。理想的提取方法应提供最全面的蛋白质谱图的可再现光谱,同时最大程度地减少样品损失和降解。众所周知,捕获整个蛋白质组是一项不可执行的任务。已经描述了许多蛋白质提取方案,但是考虑到蛋白质的生物学和物理特性的多样性,包括其电荷,大小,疏水性,相互作用和亚细胞定位,还没有“一个完美的程序”。这里提出的研究反映了蛋白质组学实验设计中出现的主要障碍。即由于蛋白质提取方法的改变而导致缺乏再现性。我们已经进行了一系列实验,旨在鉴定癌细胞中的适体结合伴侣。适体是化学合成的,短的,单链的核酸,具有严格定义的三维结构,这使它们可以高亲和力与靶分子相互作用。适体的低免疫原性和细胞靶向特性可能有助于设计副作用低的合适药物。适体可用于鉴定与细胞的致病状态有关的分子。适体可以被认为是强大的工具,因为它们具有独特的特性,可以使癌症的诊断,预防和治疗受益。基于均质缓冲液的微小变化,在通过质谱分析复杂的生物样品之前,我们已经使用了不同类型的蛋白质提取方法,并观察到了所鉴定化合物的变化。这些结果应该证明对将来的蛋白质组学研究以及样品制备,尤其是样品均质化和蛋白质提取的研究设计非常有用。

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