Saikrishnan K, Kalapala S K, Varshney U, Vijayan M
Molecular Biophysics Unit, Indian Institute of Science, Bangalore 560012, India.
J Mol Biol. 2005 Jan 7;345(1):29-38. doi: 10.1016/j.jmb.2004.10.034.
The crystal structure of Mycobacterium tuberculosis ribosome recycling factor has been determined and refined against three X-ray diffraction data sets, two collected at room temperature and the other at 100K. The two room-temperature data sets differ in the radiation damage suffered by the crystals before the data used for processing were collected. A comparison between the structures refined against the two data sets indicates the possibility of radiation-induced conformational change. The L-shaped molecule is composed of a long three-helix bundle domain (domain I) and a globular domain (domain II) connected by a linker region. The main difference between the room-temperature structure and the low temperature structure is in the rotation of domain II about an axis close to its libration axis. This observation and a detailed comparative study of ribosome recycling factors (RRFs) of known structures led to an elaboration of the present understanding of the structural variability of RRF. The variability involves a change in the angle between the two arms of the molecule, a rotation of domain II in a plane nearly perpendicular to the axis of the helix bundle and an internal rotation of domain II. Furthermore, the domains and the linker could be delineated into fixed and variable regions in a physically meaningful manner. The relative mobility of the domains of the molecule in the crystal structure appears to be similar to that in the ribosome--RRF complex. That permits a meaningful discussion of the structural features of RRF in terms of ribosome--RRF interactions. The structure also provides insights into the results of inter-species complementation studies.
结核分枝杆菌核糖体循环因子的晶体结构已根据三个X射线衍射数据集进行了测定和精修,其中两个数据集是在室温下收集的,另一个是在100K下收集的。这两个室温数据集在用于处理的数据收集之前晶体所遭受的辐射损伤方面有所不同。针对这两个数据集精修的结构之间的比较表明了辐射诱导构象变化的可能性。这个L形分子由一个长的三螺旋束结构域(结构域I)和一个通过连接区相连的球状结构域(结构域II)组成。室温结构和低温结构之间的主要差异在于结构域II围绕靠近其摆动轴的轴的旋转。这一观察结果以及对已知结构的核糖体循环因子(RRF)的详细比较研究,使得对RRF结构变异性的当前理解得到了细化。这种变异性涉及分子双臂之间角度的变化、结构域II在几乎垂直于螺旋束轴的平面内的旋转以及结构域II的内部旋转。此外,可以以一种物理上有意义的方式将结构域和连接区分成固定区和可变区。分子在晶体结构中的结构域相对移动性似乎与在核糖体 - RRF复合物中的相似。这使得能够就核糖体 - RRF相互作用对RRF的结构特征进行有意义的讨论。该结构还为种间互补研究的结果提供了见解。