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Symmetrical Parameterization of Rigid Body Transformations for Biomolecular Structures

机译:刚体转化的生物分子结构的对称参数化。

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Assessing preferred relative rigid body position and orientation is important in the description of biomolecular structures (such as proteins) and their interactions. In this article, we extend and apply the “symmetrical parameterization,” which we recently introduced in the kinematics community, to address problems in structural biology. We also review parameterization methods that are widely used in structural biology to describe relative rigid body motions (in particular, orientations) as a basis for comparison. The new symmetrical parameterization is useful in describing the relative biomolecular rigid body motions, where the parameters are symmetrical in the sense that the subunits of a complex biomolecular structure are described in the same way for the corresponding motion and its inverse. The properties of this new parameterization, singularity analysis, and inverse kinematics are also investigated in more detail. Finally, parameterization is applied to real biomolecular structures and a potential application to structure modeling of symmetric macromolecules to show the efficacy of the symmetrical parameterization in the field of computational structural biology.
机译:在描述生物分子结构(例如蛋白质)及其相互作用时,评估首选的相对刚体位置和方向很重要。在本文中,我们扩展并应用了运动学领域最近引入的“对称参数化”,以解决结构生物学中的问题。我们还回顾了结构生物学中广泛使用的参数化方法,以描述相对刚体运动(尤其是方向)作为比较的基础。新的对称参数化在描述相对生物分子刚体运动时很有用,其中参数是对称的,在这种意义上,复杂生物分子结构的亚基以相同方式描述了相应的运动及其逆过程。还对这种新的参数化,奇异性分析和逆运动学的性质进行了更详细的研究。最后,将参数化应用于实际的生物分子结构,并将其潜在地应用于对称大分子的结构建模,以显示对称参数化在计算结构生物学领域的功效。

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