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Shotgun Proteomics of Tomato Fruits: Evaluation Optimization and Validation of Sample Preparation Methods and Mass Spectrometric Parameters

机译:番茄果实的弹枪蛋白质组学:样品制备方法和质谱参数的评估优化和验证

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摘要

An optimized protocol was developed for shotgun proteomics of tomato fruit, which is a recalcitrant tissue due to a high percentage of sugars and secondary metabolites. A number of protein extraction and fractionation techniques were examined for optimal protein extraction from tomato fruits followed by peptide separation on nanoLCMS. Of all evaluated extraction agents, buffer saturated phenol was the most efficient. In-gel digestion [SDS-PAGE followed by separation on LCMS (GeLCMS)] of phenol-extracted sample yielded a maximal number of proteins. For in-solution digested samples, fractionation by strong anion exchange chromatography (SAX) also gave similar high proteome coverage. For shotgun proteomic profiling, optimization of mass spectrometry parameters such as automatic gain control targets (5E+05 for MS, 1E+04 for MS/MS); ion injection times (500 ms for MS, 100 ms for MS/MS); resolution of 30,000; signal threshold of 500; top N-value of 20 and fragmentation by collision-induced dissociation yielded the highest number of proteins. Validation of the above protocol in two tomato cultivars demonstrated its reproducibility, consistency, and robustness with a CV of < 10%. The protocol facilitated the detection of five-fold higher number of proteins compared to published reports in tomato fruits. The protocol outlined would be useful for high-throughput proteome analysis from tomato fruits and can be applied to other recalcitrant tissues.
机译:针对番茄果实的shot弹蛋白质组学开发了一种优化方案,该果实因糖和次生代谢物的比例较高而成为顽固的组织。检查了多种蛋白质提取和分级分离技术,以从番茄果实中提取蛋白质,然后在nanoLCMS上进行肽分离。在所有评估的萃取剂中,缓冲饱和苯酚是最有效的。苯酚提取的样品的凝胶内消化[SDS-PAGE,然后在LCMS(GeLCMS)上分离]可产生最大数量的蛋白质。对于溶液中消化的样品,通过强阴离子交换色谱(SAX)进行分馏也可得到相似的高蛋白质组覆盖率。对于shot弹枪蛋白质组分析,可以优化质谱参数,例如自动增益控制目标(对于MS为5E + 05,对于MS / MS为1E + 04);离子注入时间(MS为500毫秒,MS / MS为100毫秒);分辨率30,000;信号阈值为500; N值最高为20,并因碰撞诱导的解离而断裂,产生的蛋白质数量最多。在两个番茄品种中对以上方案的验证证明了其可重复性,一致性和稳健性,CV <10%。与公开发表的番茄果实报道相比,该协议有助于检测出五倍数量的蛋白质。概述的协议对于番茄果实的高通量蛋白质组学分析将很有用,并可应用于其他顽强的组织。

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