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Recent Developments in Structural Proteomics: From Protein Identifications and Structure Determinations to Protein-Protein Interactions

机译:结构蛋白质组学的最新进展:从蛋白质鉴定和结构确定到蛋白质与蛋白质的相互作用

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摘要

The human genome project has opened novel scientific avenues such as structural proteomics. The major challenge in structural proteomics is to predict protein structure-function relationships, including the identification of those proteins whose structures are partially or fully unknown. The use of two-dimensional gel electrophoresis and mass spectrometry methods to identify proteins strongly aids our understanding of biological regulatory networks that govern protein expressions. After identifying proteins, the crucial step is to determine their functions and structures. Recent developments of many high-throughput methodologies and technologies have enabled novel data to be generated with efficiency and speed. Protein structures are typically determined by experimental approaches such as X-ray crystallography or NMR spectroscopy. However, the knowledge of three-dimensional space by these techniques are still limited. Thus, computational methods such as comparative approaches and molecular dynamics simulations are intensively used as alternative tools to predict the three-dimensional structures and dynamic behaviors of proteins. This review summarizes recent advances in high-throughput structural proteomics that involve instrumentation methods such as two-dimensional gel electrophoresis, mass spectrometry, X-ray crystallography, and NMR spectroscopy, and computational methods such as comparative approaches and molecular dynamics simulations. New insights into proteinprotein interactions and relationships between structure and protein-protein interactions will also be presented.
机译:人类基因组计划开辟了新的科学途径,例如结构蛋白质组学。结构蛋白质组学的主要挑战是预测蛋白质结构与功能的关系,包括鉴定其结构部分或完全未知的蛋白质。二维凝胶电泳和质谱法鉴定蛋白质的使用极大地帮助我们理解控制蛋白质表达的生物调控网络。鉴定蛋白质后,关键步骤是确定其功能和结构。许多高通量方法和技术的最新发展使得能够高效高效地生成新数据。蛋白质结构通常是通过实验方法(例如X射线晶体学或NMR光谱法)确定的。但是,这些技术对三维空间的知识仍然有限。因此,诸如比较方法和分子动力学模拟之类的计算方法被广泛用作预测蛋白质的三维结构和动力学行为的替代工具。这篇综述总结了高通量结构蛋白质组学的最新进展,其中涉及仪器方法,例如二维凝胶电泳,质谱,X射线晶体学和NMR光谱,以及计算方法,例如比较方法和分子动力学模拟。也将提供对蛋白质相互作用以及结构与蛋白质相互作用之间关系的新见解。

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