Institute of Inorganic Chemistry, University of Zürich, Winterthurerstrasse 190, CH-8057 Zürich, Switzerland.
J Inorg Biochem. 2010 May;104(5):611-3. doi: 10.1016/j.jinorgbio.2010.01.008. Epub 2010 Jan 28.
The N7 of purine nucleotides presents one of the most dominant metal ion binding sites in nucleic acids. However, the interactions between kinetically labile metal ions like Mg(2+) and these nitrogen atoms are inherently difficult to observe in large RNAs. Rather than using the insensitive direct (15)N detection, here we have used (2)J-[(1)H,(15)N]-HSQC (Heteronuclear Single Quantum Coherence) NMR experiments as a fast and efficient method to specifically observe and characterize such interactions within larger RNA constructs. Using the 27 nucleotides long branch domain of the yeast-mitochondrial group II intron ribozyme Sc.ai5gamma as an example, we show that direct N7 coordination of a Mg(2+) ion takes place in a tetraloop nucleotide. A second Mg(2+) ion, located in the major groove at the catalytic branch site, coordinates mainly in an outer-sphere fashion to the highly conserved flanking GU wobble pairs but not to N7 of the sandwiched branch adenosine.
嘌呤核苷酸的 N7 呈现出核酸中最主要的金属离子结合位点之一。然而,对于像 Mg(2+) 这样的动力学不稳定金属离子与这些氮原子之间的相互作用,在大型 RNA 中很难被观察到。我们没有使用不灵敏的直接 (15)N 检测方法,而是使用 (2)J-[(1)H,(15)N]-HSQC(异核单量子相干)NMR 实验作为一种快速有效的方法来专门观察和表征较大 RNA 结构中的这种相互作用。我们以酵母线粒体组 II 内含子核酶 Sc.ai5gamma 的 27 个核苷酸长的分支结构域为例,表明 Mg(2+) 离子的直接 N7 配位发生在四核苷酸环中。第二个位于催化分支位点主沟的 Mg(2+)离子主要以外配位方式与高度保守的侧翼 GU 摆动对配位,但不与夹在中间的分支腺苷的 N7 配位。