Pitt Stephen W, Majumdar Ananya, Serganov Alexander, Patel Dinshaw J, Al-Hashimi Hashim M
Cellular Biochemistry and Biophysics Program, Memorial Sloan-Kettering Cancer Center, New York, NY 10021, USA.
J Mol Biol. 2004 Apr 16;338(1):7-16. doi: 10.1016/j.jmb.2004.02.031.
The structure and dynamics of the stem-loop transactivation response element (TAR) RNA from the human immunodeficiency virus type-1 (HIV-1) bound to the ligand argininamide (ARG) has been characterized using a combination of a large number of residual dipolar couplings (RDCs) and trans-hydrogen bond NMR methodology. Binding of ARG to TAR changes the average inter-helical angle between the two stems from approximately 47 degrees in the free state to approximately 11 degrees in the bound state, and leads to the arrest of large amplitude (+/-46 degrees ) inter-helical motions observed previously in the free state. While the global structural dynamics of TAR-ARG is similar to that previously reported for TAR bound to Mg2+, there are substantial differences in the hydrogen bond alignment of bulge and neighboring residues. Based on a novel H5(C5)NN experiment for probing hydrogen-mediated 2hJ(N,N) scalar couplings as well as measured RDCs, the TAR-ARG complex is stabilized by a U38-A27.U23 base-triple involving an A27.U23 reverse Hoogsteen hydrogen bond alignment as well as by a A22-U40 Watson-Crick base-pair at the junction of stem I. These hydrogen bond alignments are not observed in either the free or Mg2+ bound forms of TAR. The combined conformational analysis of TAR under three states reveals that ligands and divalent ions can stabilize similar RNA global conformations through distinct interactions involving different hydrogen bond alignments in the RNA.
利用大量剩余偶极耦合(RDC)和反式氢键核磁共振方法,对与配体精氨酰胺(ARG)结合的人类免疫缺陷病毒1型(HIV-1)茎环反式激活应答元件(TAR)RNA的结构和动力学进行了表征。ARG与TAR的结合使两个茎之间的平均螺旋间角度从自由状态下的约47度变为结合状态下的约11度,并导致先前在自由状态下观察到的大幅度(±46度)螺旋间运动停止。虽然TAR-ARG的整体结构动力学与先前报道的与Mg2+结合的TAR相似,但凸起和相邻残基的氢键排列存在显著差异。基于一种用于探测氢介导的2hJ(N,N)标量耦合的新型H5(C5)NN实验以及测量的RDC,TAR-ARG复合物通过一个涉及A27.U23反向Hoogsteen氢键排列的U38-A27.U23碱基三联体以及茎I连接处的一个A22-U40沃森-克里克碱基对得以稳定。这些氢键排列在TAR的自由或Mg2+结合形式中均未观察到。对TAR在三种状态下的联合构象分析表明,配体和二价离子可以通过涉及RNA中不同氢键排列的不同相互作用来稳定相似的RNA整体构象。