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Protein Identification Strategies: Towards a Hybrid Approach to Control FDR

机译:蛋白质鉴定策略:迈向控制FDR的混合方法

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Tandem Mass Spectrometry has made a massive advance as a main technology for peptide sequencing. It generates a flood of data that represents significant challenges for their interpretation. With the emergence of tandem mass spectrometry data (MS/MS), a lot of computational methods have been developed to infer peptide sequences from them. However, the correct identification of all proteins present in a sample is of utmost importance to provide a suitable biological interpretation. Mostly, there are two strategies, which are widely used for peptide/protein identification: (i) Database searching strategy consists of comparing the experimental spectra acquired through the mass spectrometer, with the identified spectra belonging to peptide libraries. (ii) De novo sequencing strategy predicts, without the assistance of peptide database, amino acids sequence from its tandem mass spectrum. These two strategies differ in term of their ability and effectiveness to control the False Discovery Rate (FDR). In this paper, we introduce a review study of database searching and de novo sequencing for peptide identification. Some background information of mass spectrometry and peptide/protein identification are first outlined. Afterward, we discuss the process and tools of both database searching and de novo strategies. Aiming to control the False Discovery Rate, an effective and hybrid approach, which combines database searching and de novo strategies, is proposed in this work.
机译:串联质谱作为肽测序的主要技术已取得了巨大的进步。它产生了大量的数据,这代表了数据解释方面的重大挑战。随着串联质谱数据(MS / MS)的出现,已经开发出许多计算方法来从中推断出肽序列。但是,正确鉴定样品中存在的所有蛋白质对于提供合适的生物学解释至关重要。通常,有两种策略,广泛用于肽/蛋白质鉴定:(i)数据库搜索策略包括将通过质谱仪获得的实验光谱与属于肽库的鉴定光谱进行比较。 (ii)从头测序策略无需肽数据库的帮助即可预测其串联质谱的氨基酸序列。这两种策略在控制错误发现率(FDR)的能力和有效性方面有所不同。在本文中,我们介绍了数据库搜索和从头测序用于肽鉴定的综述研究。首先概述了质谱和肽/蛋白质鉴定的一些背景信息。之后,我们讨论数据库搜索和从头策略的过程和工具。为了控制错误发现率,本文提出了一种有效的混合方法,将数据库搜索和从头策略结合在一起。

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