Loschmidt Laboratories, Department of Experimental Biology and Research Centre for Toxic Compounds in the Environment, Faculty of Science, Masaryk University, Kamenice 5/A13, 625 00 Brno, Czech Republic.
Biotechnol Adv. 2013 Jan-Feb;31(1):38-49. doi: 10.1016/j.biotechadv.2012.02.002. Epub 2012 Feb 10.
Protein structures contain highly complex systems of voids, making up specific features such as surface clefts or grooves, pockets, protrusions, cavities, pores or channels, and tunnels. Many of them are essential for the migration of solvents, ions and small molecules through proteins, and their binding to the functional sites. Analysis of these structural features is very important for understanding of structure-function relationships, for the design of potential inhibitors or proteins with improved functional properties. Here we critically review existing software tools specialized in rapid identification, visualization, analysis and design of protein tunnels and channels. The strengths and weaknesses of individual tools are reported together with examples of their applications for the analysis and engineering of various biological systems. This review can assist users with selecting a proper software tool for study of their biological problem as well as highlighting possible avenues for further development of existing tools. Development of novel descriptors representing not only geometry, but also electrostatics, hydrophobicity or dynamics, is needed for reliable identification of biologically relevant tunnels and channels.
蛋白质结构包含高度复杂的空穴系统,形成特定的特征,如表面裂缝或凹槽、口袋、突起、腔、孔或通道以及隧道。其中许多特征对于溶剂、离子和小分子通过蛋白质的迁移以及它们与功能位点的结合至关重要。分析这些结构特征对于理解结构-功能关系、设计潜在抑制剂或具有改进功能特性的蛋白质非常重要。在这里,我们批判性地回顾了专门用于快速识别、可视化、分析和设计蛋白质隧道和通道的现有软件工具。报告了各个工具的优缺点,并举例说明了它们在分析和工程各种生物系统中的应用。本综述可以帮助用户选择合适的软件工具来研究他们的生物学问题,并突出现有工具进一步发展的可能途径。需要开发新的描述符,不仅代表几何形状,还代表静电、疏水性或动力学,以可靠地识别具有生物学意义的隧道和通道。