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Protein–Protein Interactions in Plants

机译:植物中蛋白质与蛋白质的相互作用

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The study of protein–protein interactions (PPIs) is essential to uncover unknown functions of proteins at the molecular level and to gain insight into complex cellular networks. Affinity purification and mass spectrometry (AP-MS), yeast two-hybrid, imaging approaches and numerous diverse databases have been developed as strategies to analyze PPIs. The past decade has seen an increase in the number of identified proteins with the development of MS and large-scale proteome analyses. Consequently, the false-positive protein identification rate has also increased. Therefore, the general consensus is to confirm PPI data using one or more independent approaches for an accurate evaluation. Furthermore, identifying minor PPIs is fundamental for understanding the functions of transient interactions and low-abundance proteins. Besides establishing PPI methodologies, we are now seeing the development of new methods and/or improvements in existing methods, which involve identifying minor proteins by MS, multidimensional protein identification technology or OFFGEL electrophoresis analyses, one-shot analysis with a long column or filter-aided sample preparation methods. These advanced techniques should allow thousands of proteins to be identified, whereas in-depth proteomic methods should permit the identification of transient binding or PPIs with weak affinity. Here, the current status of PPI analysis is reviewed and some advanced techniques are discussed briefly along with future challenges for plant proteomics.
机译:蛋白质-蛋白质相互作用(PPI)的研究对于揭示蛋白质在分子水平上的未知功能以及深入了解复杂的细胞网络至关重要。亲和纯化和质谱分析(AP-MS),酵母双杂交,成像方法和众多不同的数据库已被开发为分析PPI的策略。在过去的十年中,随着质谱技术和大规模蛋白质组分析技术的发展,鉴定出的蛋白质数量有所增加。因此,假阳性蛋白质识别率也增加了。因此,一般共识是使用一种或多种独立方法进行PPI数据确认以进行准确评估。此外,识别次要PPI对于理解瞬时相互作用和低丰度蛋白质的功能至关重要。除了建立PPI方法论之外,我们现在还看到了新方法的发展和/或对现有方法的改进,其中包括通过MS鉴定次要蛋白质,多维蛋白质鉴定技术或OFFGEL电泳分析,长柱单次分析或过滤器,辅助样品制备方法。这些先进的技术应可鉴定出数千种蛋白质,而深入的蛋白质组学方法应可鉴定具有弱亲和力的瞬时结合或PPI。在此,回顾了PPI分析的当前状态,并简要讨论了一些先进的技术以及植物蛋白质组学的未来挑战。

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