结构母题
核糖核酸
计算生物学
核糖开关
序列母题
蛋白质二级结构
生物分子
核酸结构
结构相似性
生物
非编码RNA
遗传学
DNA
生物化学
基因
作者
Donna K. Hendrix,Steven E. Brenner,Stephen R. Holbrook
出处
期刊:Quarterly Reviews of Biophysics
[Cambridge University Press]
日期:2005-08-01
卷期号:38 (3): 221-243
被引量:192
标识
DOI:10.1017/s0033583506004215
摘要
1. Introduction 222 2. What is an RNA motif? 222 2.1 Sequence vs . structural motifs 222 2.2 RNA structural motifs 223 2.3 RNA structural elements vs . motifs 223 2.4 Specific recognition motifs 224 2.5 Tools for identifying and classifying elements and motifs 226 3. Types of RNA structural motifs 228 3.1 Helices 228 3.2 Hairpin loops 228 3.3 Internal loops 230 3.4 Junction loops/multiloops 230 3.5 Binding motifs 232 3.5.1 Metal binding 232 3.5.2 Natural and selected aptamers 234 3.6 Tertiary interactions 234 4. Future directions 236 5. Acknowledgments 239 6. References 239 RNAs are modular biomolecules, composed largely of conserved structural subunits, or motifs. These structural motifs comprise the secondary structure of RNA and are knit together via tertiary interactions into a compact, functional, three-dimensional structure and are to be distinguished from motifs defined by sequence or function. A relatively small number of structural motifs are found repeatedly in RNA hairpin and internal loops, and are observed to be composed of a limited number of common ‘structural elements’. In addition to secondary and tertiary structure motifs, there are functional motifs specific for certain biological roles and binding motifs that serve to complex metals or other ligands. Research is continuing into the identification and classification of RNA structural motifs and is being initiated to predict motifs from sequence, to trace their phylogenetic relationships and to use them as building blocks in RNA engineering.
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