Pan T, Loria A, Zhong K
Department of Biochemistry and Molecular Biology, University of Chicago, IL 60637, USA.
Proc Natl Acad Sci U S A. 1995 Dec 19;92(26):12510-4. doi: 10.1073/pnas.92.26.12510.
A general method has been developed to analyze all 2' hydroxyl groups involved in tertiary interactions in RNA in a single experiment. This method involves comparing the activity of populations of circularly permuted RNAs that contain or lack potential hydrogen-bond donors at each position. The 2' hydroxyls of the pre-tRNA substrate identified as potential hydrogen bond donors in intermolecular interactions with the ribozyme from eubacterial RNase P (P RNA) are located in the T stem and T loop, acceptor stem, and 3' CCA regions. To locate the hydrogen-bond acceptors for one of those 2' hydroxyls in the P RNA, a phylogenetically conserved adenosine was mutated to a guanosine. When this mutant P RNA was used, increased cleavage activity of a single circularly permuted substrate within the population was observed. The cleavage efficiency (kcat/Km) of a singly 2'-deoxy-substituted substrate at this position in the T stem was also determined. For the wild-type P RNA, the catalytic efficiency was significantly decreased compared with that of the all-ribo substrate, consistent with the notion that this 2' hydroxyl plays an important role. For the P RNA mutant, no additional effect was found upon 2'-deoxy substitution. We propose that this particular 2' hydroxyl in the pre-tRNA interacts specifically with this adenosine in the P RNA. This method should be useful in examining the role of 2' hydroxyl groups in other RNA-RNA and RNA-protein complexes.
已经开发出一种通用方法,可在单个实验中分析RNA三级相互作用中涉及的所有2'-羟基。该方法包括比较在每个位置含有或缺乏潜在氢键供体的环状排列RNA群体的活性。在与真细菌RNase P(P RNA)的核酶进行分子间相互作用时,被鉴定为潜在氢键供体的前体tRNA底物的2'-羟基位于T茎和T环、受体茎以及3'-CCA区域。为了在P RNA中定位其中一个2'-羟基的氢键受体,将一个系统发育保守的腺苷突变为鸟苷。当使用这种突变的P RNA时,观察到群体内单个环状排列底物的切割活性增加。还测定了T茎中该位置的单2'-脱氧取代底物的切割效率(kcat/Km)。对于野生型P RNA,与全核糖底物相比,催化效率显著降低,这与该2'-羟基起重要作用的观点一致。对于P RNA突变体,2'-脱氧取代未发现额外影响。我们提出,前体tRNA中这个特定的2'-羟基与P RNA中的这个腺苷特异性相互作用。该方法在研究2'-羟基在其他RNA-RNA和RNA-蛋白质复合物中的作用时应该是有用的。