Huang Wei, Kim Joohyun, Jha Shantenu, Aboul-ela Fareed
Department of Biological Sciences, Louisiana State University, Baton Rouge, LA 70803, USA.
Nucleic Acids Res. 2009 Oct;37(19):6528-39. doi: 10.1093/nar/gkp664. Epub 2009 Aug 31.
The S-adenosylmethionine-1 (SAM-I) riboswitch mediates expression of proteins involved in sulfur metabolism via formation of alternative conformations in response to binding by SAM. Models for kinetic trapping of the RNA in the bound conformation require annealing of nonadjacent mRNA segments during a transcriptional pause. The entropic cost required to bring nonadjacent segments together should slow the folding process. To address this paradox, we performed molecular dynamics simulations on the SAM-I riboswitch aptamer domain with and without SAM, starting with the X-ray coordinates of the SAM-bound RNA. Individual trajectories are 200 ns, among the longest reported for an RNA of this size. We applied principle component analysis (PCA) to explore the global dynamics differences between these two trajectories. We observed a conformational switch between a stacked and nonstacked state of a nonadjacent dinucleotide in the presence of SAM. In the absence of SAM the coordination between a bound magnesium ion and the phosphate of A9, one of the nucleotides involved in the dinucleotide stack, is destabilized. An electrostatic potential map reveals a 'hot spot' at the Mg binding site in the presence of SAM. These results suggest that SAM binding helps to position J1/2 in a manner that is favorable for P1 helix formation.
S-腺苷甲硫氨酸-1(SAM-I)核糖开关通过响应SAM的结合形成不同构象来介导参与硫代谢的蛋白质的表达。RNA在结合构象中动力学捕获的模型要求在转录暂停期间非相邻mRNA片段退火。将非相邻片段聚集在一起所需的熵成本应会减缓折叠过程。为了解决这一矛盾,我们从结合SAM的RNA的X射线坐标开始,对有和没有SAM的SAM-I核糖开关适体结构域进行了分子动力学模拟。单个轨迹为200纳秒,是针对这种大小的RNA所报道的最长轨迹之一。我们应用主成分分析(PCA)来探索这两条轨迹之间的全局动力学差异。我们观察到在存在SAM的情况下,一个非相邻二核苷酸的堆积态和非堆积态之间发生了构象转换。在没有SAM的情况下,结合的镁离子与A9的磷酸之间的配位不稳定,A9是参与二核苷酸堆积的核苷酸之一。静电势图显示在存在SAM的情况下,镁结合位点有一个“热点”。这些结果表明,SAM结合有助于以有利于P1螺旋形成的方式定位J1/2。