Literature DB >> 12907716

RNA structure comparison, motif search and discovery using a reduced representation of RNA conformational space.

Carlos M Duarte1, Leven M Wadley, Anna Marie Pyle.   

Abstract

Given the wealth of new RNA structures and the growing list of RNA functions in biology, it is of great interest to understand the repertoire of RNA folding motifs. The ability to identify new and known motifs within novel RNA structures, to compare tertiary structures with one another and to quantify the characteristics of a given RNA motif are major goals in the field of RNA research; however, there are few systematic ways to address these issues. Using a novel approach for visualizing and mathematically describing macromolecular structures, we have developed a means to quantitatively describe RNA molecules in order to rapidly analyze, compare and explore their features. This approach builds on the alternative eta,theta convention for describing RNA torsion angles and is executed using a new program called PRIMOS. Applying this methodology, we have successfully identified major regions of conformational change in the 50S and 30S ribosomal subunits, we have developed a means to search the database of RNA structures for the prevalence of known motifs and we have classified and identified new motifs. These applications illustrate the powerful capabilities of our new RNA structural convention, and they suggest future adaptations with important implications for bioinformatics and structural genomics.

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Year:  2003        PMID: 12907716      PMCID: PMC169959          DOI: 10.1093/nar/gkg682

Source DB:  PubMed          Journal:  Nucleic Acids Res        ISSN: 0305-1048            Impact factor:   16.971


  39 in total

1.  The Protein Data Bank.

Authors:  H M Berman; J Westbrook; Z Feng; G Gilliland; T N Bhat; H Weissig; I N Shindyalov; P E Bourne
Journal:  Nucleic Acids Res       Date:  2000-01-01       Impact factor: 16.971

2.  TectoRNA: modular assembly units for the construction of RNA nano-objects.

Authors:  L Jaeger; E Westhof; N B Leontis
Journal:  Nucleic Acids Res       Date:  2001-01-15       Impact factor: 16.971

3.  The crystal structure of UUCG tetraloop.

Authors:  E Ennifar; A Nikulin; S Tishchenko; A Serganov; N Nevskaya; M Garber; B Ehresmann; C Ehresmann; S Nikonov; P Dumas
Journal:  J Mol Biol       Date:  2000-11-17       Impact factor: 5.469

4.  The complete atomic structure of the large ribosomal subunit at 2.4 A resolution.

Authors:  N Ban; P Nissen; J Hansen; P B Moore; T A Steitz
Journal:  Science       Date:  2000-08-11       Impact factor: 47.728

5.  Structure of the 30S ribosomal subunit.

Authors:  B T Wimberly; D E Brodersen; W M Clemons; R J Morgan-Warren; A P Carter; C Vonrhein; T Hartsch; V Ramakrishnan
Journal:  Nature       Date:  2000-09-21       Impact factor: 49.962

6.  The structural basis of ribosome activity in peptide bond synthesis.

Authors:  P Nissen; J Hansen; N Ban; P B Moore; T A Steitz
Journal:  Science       Date:  2000-08-11       Impact factor: 47.728

7.  The nucleic acid database. A comprehensive relational database of three-dimensional structures of nucleic acids.

Authors:  H M Berman; W K Olson; D L Beveridge; J Westbrook; A Gelbin; T Demeny; S H Hsieh; A R Srinivasan; B Schneider
Journal:  Biophys J       Date:  1992-09       Impact factor: 4.033

8.  The structural basis for the action of the antibiotics tetracycline, pactamycin, and hygromycin B on the 30S ribosomal subunit.

Authors:  D E Brodersen; W M Clemons; A P Carter; R J Morgan-Warren; B T Wimberly; V Ramakrishnan
Journal:  Cell       Date:  2000-12-22       Impact factor: 41.582

9.  Interaction of tRNA with 23S rRNA in the ribosomal A, P, and E sites.

Authors:  D Moazed; H F Noller
Journal:  Cell       Date:  1989-05-19       Impact factor: 41.582

10.  Secondary and tertiary structural foldings in tRNA. A diagonal plot analysis using the blocked nucleotide scheme.

Authors:  R Malathi; N Yathindra
Journal:  Biochem J       Date:  1982-08-01       Impact factor: 3.857

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  65 in total

1.  The common and the distinctive features of the bulged-G motif based on a 1.04 A resolution RNA structure.

Authors:  Carl C Correll; Jutta Beneken; Matthew J Plantinga; Melissa Lubbers; Yuen-Ling Chan
Journal:  Nucleic Acids Res       Date:  2003-12-01       Impact factor: 16.971

2.  RNA conformational classes.

Authors:  Bohdan Schneider; Zdenek Morávek; Helen M Berman
Journal:  Nucleic Acids Res       Date:  2004-03-11       Impact factor: 16.971

3.  RNA backbone is rotameric.

Authors:  Laura J W Murray; W Bryan Arendall; David C Richardson; Jane S Richardson
Journal:  Proc Natl Acad Sci U S A       Date:  2003-11-11       Impact factor: 11.205

4.  RNA kink turns to the left and to the right.

Authors:  Scott A Strobel; Peter L Adams; Mary R Stahley; Jimin Wang
Journal:  RNA       Date:  2004-12       Impact factor: 4.942

5.  Elucidating the higher-order structure of biopolymers by structural probing and mass spectrometry: MS3D.

Authors:  Daniele Fabris; Eizadora T Yu
Journal:  J Mass Spectrom       Date:  2010-08       Impact factor: 1.982

6.  Computing the conformational entropy for RNA folds.

Authors:  Liang Liu; Shi-Jie Chen
Journal:  J Chem Phys       Date:  2010-06-21       Impact factor: 3.488

7.  R3D Align: global pairwise alignment of RNA 3D structures using local superpositions.

Authors:  Ryan R Rahrig; Neocles B Leontis; Craig L Zirbel
Journal:  Bioinformatics       Date:  2010-10-06       Impact factor: 6.937

8.  The identification of novel RNA structural motifs using COMPADRES: an automated approach to structural discovery.

Authors:  Leven M Wadley; Anna Marie Pyle
Journal:  Nucleic Acids Res       Date:  2004-12-17       Impact factor: 16.971

9.  The application of cluster analysis in the intercomparison of loop structures in RNA.

Authors:  Hung-Chung Huang; Uma Nagaswamy; George E Fox
Journal:  RNA       Date:  2005-04       Impact factor: 4.942

10.  Automated motif extraction and classification in RNA tertiary structures.

Authors:  Mahassine Djelloul; Alain Denise
Journal:  RNA       Date:  2008-10-28       Impact factor: 4.942

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