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PrinCCes:基于连续性的蛋白质空穴库几何分解与系统可视化

PrinCCes: Continuity-based geometric decomposition and systematic visualization of the void repertoire of proteins.

作者信息

Czirják Gábor

机构信息

Department of Physiology, Semmelweis University, P.O. Box 259, H-1444 Budapest, Hungary.

出版信息

J Mol Graph Model. 2015 Nov;62:118-127. doi: 10.1016/j.jmgm.2015.09.013. Epub 2015 Sep 16.

Abstract

Grooves and pockets on the surface, channels through the protein, the chambers or cavities, and the tunnels connecting the internal points to each other or to the external fluid environment are fundamental determinants of a wide range of biological functions. PrinCCes (Protein internal Channel & Cavity estimation) is a computer program supporting the visualization of voids. It includes a novel algorithm for the decomposition of the entire void volume of the protein or protein complex to individual entities. The decomposition is based on continuity. An individual void is defined by uninterrupted extension in space: a spherical probe can freely move between any two internal locations of a continuous void. Continuous voids are detected irrespective of their topological complexity, they may contain any number of holes and bifurcations. The voids of a protein can be visualized one by one or in combinations as triangulated surfaces. The output is automatically exported to free VMD (Visual Molecular Dynamics) or Chimera software, allowing the 3D rotation of the surfaces and the production of publication quality images. PrinCCes with graphic user interface and command line versions are available for MS Windows and Linux. The source code and executable can be downloaded at any of the following links: http://scholar.semmelweis.hu/czirjakgabor/s/princces/#t1 https://github.com/CzirjakGabor/PrinCCes http://1drv.ms/1bP9iJ3.

摘要

蛋白质表面的凹槽和口袋、贯穿蛋白质的通道、腔室或空洞以及连接内部各点或与外部流体环境相连的隧道,是多种生物学功能的基本决定因素。PrinCCes(蛋白质内部通道与空洞估计)是一个支持空洞可视化的计算机程序。它包含一种将蛋白质或蛋白质复合物的整个空洞体积分解为单个实体的新颖算法。这种分解基于连续性。单个空洞由空间中的不间断延伸来定义:一个球形探针可以在连续空洞的任意两个内部位置之间自由移动。无论其拓扑复杂性如何,都能检测到连续空洞,它们可能包含任意数量的孔洞和分支。蛋白质的空洞可以逐个或组合地可视化为三角化表面。输出结果会自动导出到免费的VMD(可视化分子动力学)或Chimera软件中,允许对表面进行3D旋转并生成可用于发表的高质量图像。PrinCCes有图形用户界面和命令行版本,适用于MS Windows和Linux。源代码和可执行文件可从以下任何链接下载:http://scholar.semmelweis.hu/czirjakgabor/s/princces/#t1 https://github.com/CzirjakGabor/PrinCCes http://1drv.ms/1bP9iJ3

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