Painter Jay, Merritt Ethan A
Biomolecular Structure Center, Department of Biochemistry, University of Washington, Seattle, WA 98195-7742, USA.
Acta Crystallogr D Biol Crystallogr. 2005 Apr;61(Pt 4):465-71. doi: 10.1107/S0907444905001897. Epub 2005 Mar 24.
TLS (translation/libration/screw) models describe rigid-body vibrational motions of arbitrary objects. A single-group TLS model can be used to approximate the vibration of an entire protein molecule within a crystal lattice. More complex TLS models are broadly applicable to describing inter-domain and other internal vibrational modes of proteins. Such models can be derived and refined from crystallographic data, but they can also be used to describe the vibrational modes observed through other physical techniques or derived from molecular dynamics. The use of TLS models for protein motion has been relatively limited, partly because the physical meaning of the refined TLS parameters is not intuitive. Here, a molecular viewer, TLSView, is introduced using OpenGL and based on the mmLib library for describing and manipulating macromolecular structural models. This visualization tool allows an intuitive understanding of the physical significance of TLS models derived from crystallographic or other data and may be used as an interactive tool to display and interpret inter-domain or other motions in protein structural models. TLSView may also be used to prepare, analyze and validate TLS models for crystallographic refinement.
TLS(平移/摆动/螺旋)模型描述任意物体的刚体振动运动。单组TLS模型可用于近似晶体晶格内整个蛋白质分子的振动。更复杂的TLS模型广泛适用于描述蛋白质的结构域间及其他内部振动模式。此类模型可从晶体学数据推导和优化得出,但也可用于描述通过其他物理技术观察到的或源自分子动力学的振动模式。TLS模型在蛋白质运动方面的应用相对有限,部分原因是优化后的TLS参数的物理意义并不直观。在此,介绍一种基于mmLib库并使用OpenGL的分子查看器TLSView,用于描述和操纵大分子结构模型。该可视化工具能让人们直观理解从晶体学或其他数据得出的TLS模型的物理意义,还可作为交互式工具来显示和解释蛋白质结构模型中的结构域间或其他运动。TLSView也可用于准备、分析和验证用于晶体学精修的TLS模型。