Institute of Biophysics, Academy of Sciences of the Czech Republic, 61265 Brno, Czech Republic.
Nucleic Acids Res. 2010 Oct;38(18):6247-64. doi: 10.1093/nar/gkq414. Epub 2010 May 27.
We present extensive explicit solvent molecular dynamics analysis of three RNA three-way junctions (3WJs) from the large ribosomal subunit: the 3WJ formed by Helices 90-92 (H90-H92) of 23S rRNA; the 3WJ formed by H42-H44 organizing the GTPase associated center (GAC) of 23S rRNA; and the 3WJ of 5S rRNA. H92 near the peptidyl transferase center binds the 3'-CCA end of amino-acylated tRNA. The GAC binds protein factors and stimulates GTP hydrolysis driving protein synthesis. The 5S rRNA binds the central protuberance and A-site finger (ASF) involved in bridges with the 30S subunit. The simulations reveal that all three 3WJs possess significant anisotropic hinge-like flexibility between their stacked stems and dynamics within the compact regions of their adjacent stems. The A-site 3WJ dynamics may facilitate accommodation of tRNA, while the 5S 3WJ flexibility appears to be essential for coordinated movements of ASF and 5S rRNA. The GAC 3WJ may support large-scale dynamics of the L7/L12-stalk region. The simulations reveal that H42-H44 rRNA segments are not fully relaxed and in the X-ray structures they are bent towards the large subunit. The bending may be related to L10 binding and is distributed between the 3WJ and the H42-H97 contact.
我们对来自大核糖体亚基的三个 RNA 三链结(3WJ)进行了广泛的显式溶剂分子动力学分析:由 23S rRNA 的螺旋 90-92(H90-H92)形成的 3WJ;由 H42-H44 组织的 GTPase 相关中心(GAC)形成的 3WJ 23S rRNA;以及 5S rRNA 的 3WJ。靠近肽基转移酶中心的 H92 结合氨酰化 tRNA 的 3'-CCA 末端。GAC 结合蛋白因子并刺激 GTP 水解驱动蛋白质合成。5S rRNA 与中央突出部和参与与 30S 亚基桥接的 A 位点手指(ASF)结合。模拟表明,所有三个 3WJ 在其堆叠茎之间具有显著的各向异性铰链样灵活性,并且在其相邻茎的紧凑区域内具有动力学。A 位点 3WJ 动力学可能有助于 tRNA 的容纳,而 5S 3WJ 的灵活性似乎对于 ASF 和 5S rRNA 的协调运动至关重要。GAC 3WJ 可能支持 L7/L12-茎区的大规模动力学。模拟表明,H42-H44 rRNA 片段没有完全松弛,在 X 射线结构中它们朝向大亚基弯曲。弯曲可能与 L10 结合有关,并分布在 3WJ 和 H42-H97 接触之间。