Meinnel Thierry, Giglione Carmela
Protein Maturation, Cell Fate and Therapeutics, Institut des Sciences du Végétal, Centre National de la Recherche Scientifique, Gif-sur-Yvette, France.
Proteomics. 2008 Feb;8(4):626-49. doi: 10.1002/pmic.200700592.
The vast majority of the proteins encoded in any genome naturally undergo a large number of different N-terminal modifications, hindering their characterization by routine proteomic approaches. These modifications are often irreversible, usually cotranslational and are crucial, as their occurrence may reflect or affect the status, fate and function of the protein. For example, large signal peptide cleavages and N-blocking mechanisms reflect targeting to various cell compartments, whereas N-ligation events tend to be related to protein half-life. N-terminal positional proteomic strategies hold promise as a new generation of approaches to the fine analysis of such modifications. However, further biological investigation is required to resolve problems associated with particular low-abundance or challenging N-terminal modifications. Recent progress in genomics and bioinformatics has provided us with a means of assessing the impact of these modifications in proteomes. This review focuses on methods for characterizing the occurrence and diversity of N-terminal modifications and for assessing their contribution to function in complete proteomes. Progress is being made towards the annotation of databases containing information for complete proteomes, and should facilitate research into all areas of proteomics.
任何基因组中编码的绝大多数蛋白质自然会经历大量不同的N端修饰,这使得通过常规蛋白质组学方法对其进行表征变得困难。这些修饰通常是不可逆的,通常是共翻译的,并且至关重要,因为它们的出现可能反映或影响蛋白质的状态、命运和功能。例如,大的信号肽切割和N阻断机制反映了蛋白质靶向到各种细胞区室,而N连接事件往往与蛋白质半衰期有关。N端定位蛋白质组学策略有望成为对这类修饰进行精细分析的新一代方法。然而,需要进一步的生物学研究来解决与特定低丰度或具有挑战性的N端修饰相关的问题。基因组学和生物信息学的最新进展为我们提供了一种评估这些修饰在蛋白质组中影响的方法。本综述重点介绍了表征N端修饰的发生和多样性以及评估其在完整蛋白质组中对功能贡献的方法。在注释包含完整蛋白质组信息的数据库方面正在取得进展,这将有助于蛋白质组学所有领域的研究。