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A database of macromolecular motions.

机译:高分子运动数据库。

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We describe a database of macromolecular motions meant to be of general use to the structural community. The database, which is accessible on the World Wide Web with an entry point at http://bioinfo.mbb.yale.edu/MolMovDB , attempts to systematize all instances of protein and nucleic acid movement for which there is at least some structural information. At present it contains >120 motions, most of which are of proteins. Protein motions are further classified hierarchically into a limited number of categories, first on the basis of size (distinguishing between fragment, domain and subunit motions) and then on the basis of packing. Our packing classification divides motions into various categories (shear, hinge, other) depending on whether or not they involve sliding over a continuously maintained and tightly packed interface. In addition, the database provides some indication about the evidence behind each motion (i.e. the type of experimental information or whether the motion is inferred based on structural similarity) and attempts to describe many aspects of a motion in terms of a standardized nomenclature (e.g. the maximum rotation, the residue selection of a fixed core, etc.). Currently, we use a standard relational design to implement the database. However, the complexity and heterogeneity of the information kept in the database makes it an ideal application for an object-relational approach, and we are moving it in this direction. Specifically, in terms of storing complex information, the database contains plausible representations for motion pathways, derived from restrained 3D interpolation between known endpoint conformations. These pathways can be viewed in a variety of movie formats, and the database is associated with a server that can automatically generate these movies from submitted coordinates.
机译:我们描述了大分子运动的数据库,该数据库对结构社区具有普遍用途。该数据库可在万维网上访问,入口点为http://bioinfo.mbb.yale.edu/MolMovDB,该数据库试图将至少具有某些结构信息的所有蛋白质和核酸运动实例系统化。目前它包含> 120个运动,其中大多数是蛋白质运动。蛋白质运动进一步根据等级(首先根据大小(在片段,域和亚基运动之间进行区分),然后根据包装)进一步分为有限的几类。我们的包装分类根据运动是否涉及在连续维护且紧密包装的界面上滑动而将运动分为各种类别(剪切,铰链等)。此外,数据库还提供了有关每个运动背后的证据的一些指示(例如,实验信息的类型或是否根据结构相似性推断出运动),并尝试根据标准化的命名法描述运动的许多方面(例如,最大旋转,固定芯的残渣选择等)。当前,我们使用标准的关系设计来实现数据库。但是,数据库中保留的信息的复杂性和异构性使其成为对象关系方法的理想应用,我们正在朝着这个方向发展。具体而言,就存储复杂信息而言,数据库包含运动路径的合理表示,这些表示是从已知端点构型之间受约束的3D插值得出的。可以以各种电影格式查看这些路径,并且数据库与服务器关联,该服务器可以根据提交的坐标自动生成这些电影。

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