Exploring RNA structural codes with SHAPE chemistry.
暂无分享,去创建一个
[1] D. Haussler,et al. FragSeq: transcriptome-wide RNA structure probing using high-throughput sequencing , 2010, Nature Methods.
[2] K. Weeks,et al. Toward global RNA structure analysis , 2010, Nature Biotechnology.
[3] K. Weeks,et al. Definition of a high-affinity Gag recognition structure mediating packaging of a retroviral RNA genome , 2010, Proceedings of the National Academy of Sciences.
[4] K. Weeks,et al. SHAPE-directed RNA secondary structure prediction. , 2010, Methods.
[5] K. Weeks,et al. RNA Structures Facilitate Recombination-Mediated Gene Swapping in HIV-1 , 2010, Journal of Virology.
[6] Howard Y. Chang,et al. Genome-wide measurement of RNA secondary structure in yeast , 2010, Nature.
[7] K. Weeks,et al. Selective 2'-hydroxyl acylation analyzed by protection from exoribonuclease. , 2010, Journal of the American Chemical Society.
[8] K. Weeks,et al. Nonhierarchical ribonucleoprotein assembly suggests a strain-propagation model for protein-facilitated RNA folding. , 2010, Biochemistry.
[9] K. Weeks,et al. The Mrs1 Splicing Factor Binds the bI3 Group I Intron at Each of Two Tetraloop-Receptor Motifs , 2010, PloS one.
[10] K. Weeks,et al. Secondary Structure of the Mature Ex Virio Moloney Murine Leukemia Virus Genomic RNA Dimerization Domain , 2009, Journal of Virology.
[11] K. Weeks,et al. C2′-endo nucleotides as molecular timers suggested by the folding of an RNA domain , 2009, Proceedings of the National Academy of Sciences.
[12] Stefanie A. Mortimer,et al. Time-resolved RNA SHAPE chemistry: quantitative RNA structure analysis in one-second snapshots and at single-nucleotide resolution , 2009, Nature Protocols.
[13] Kristen K. Dang,et al. Architecture and Secondary Structure of an Entire HIV-1 RNA Genome , 2009, Nature.
[14] Morgan C. Giddings,et al. Influence of nucleotide identity on ribose 2'-hydroxyl reactivity in RNA. , 2009, RNA.
[15] Kevin M Weeks,et al. Quantitative analysis of RNA solvent accessibility by N-silylation of guanosine. , 2009, Biochemistry.
[16] D. Mathews,et al. Accurate SHAPE-directed RNA structure determination , 2009, Proceedings of the National Academy of Sciences.
[17] K. Weeks,et al. Time-resolved RNA SHAPE chemistry. , 2008, Journal of the American Chemical Society.
[18] Morgan C. Giddings,et al. ShapeFinder: a software system for high-throughput quantitative analysis of nucleic acid reactivity information resolved by capillary electrophoresis. , 2008, RNA.
[19] K. Weeks,et al. Strong correlation between SHAPE chemistry and the generalized NMR order parameter (S2) in RNA. , 2008, Journal of the American Chemical Society.
[20] I. Laird-Offringa,et al. Conformationally restricted nucleotides as a probe of structure-function relationships in RNA. , 2008, RNA.
[21] K. Weeks,et al. SHAPE analysis of long-range interactions reveals extensive and thermodynamically preferred misfolding in a fragile group I intron RNA. , 2008, Biochemistry.
[22] K. Weeks,et al. Slow conformational dynamics at C2'-endo nucleotides in RNA. , 2008, Journal of the American Chemical Society.
[23] C. Burge,et al. Splicing regulation: from a parts list of regulatory elements to an integrated splicing code. , 2008, RNA.
[24] Morgan C. Giddings,et al. High-Throughput SHAPE Analysis Reveals Structures in HIV-1 Genomic RNA Strongly Conserved across Distinct Biological States , 2008, PLoS biology.
[25] K. Weeks,et al. Complex ligand-induced conformational changes in tRNA(Asp) revealed by single-nucleotide resolution SHAPE chemistry. , 2008, Biochemistry.
[26] K. Weeks,et al. A fast-acting reagent for accurate analysis of RNA secondary and tertiary structure by SHAPE chemistry. , 2007, Journal of the American Chemical Society.
[27] K. Weeks,et al. The SL1-SL2 (Stem-Loop) Domain Is the Primary Determinant for Stability of the Gamma Retroviral Genomic RNA Dimer* , 2006, Journal of Biological Chemistry.
[28] K. Weeks,et al. Selective 2′-hydroxyl acylation analyzed by primer extension (SHAPE): quantitative RNA structure analysis at single nucleotide resolution , 2006, Nature Protocols.
[29] K. Weeks,et al. Architecture of a gamma retroviral genomic RNA dimer. , 2006, Biochemistry.
[30] David H Mathews,et al. Prediction of RNA secondary structure by free energy minimization. , 2006, Current opinion in structural biology.
[31] David H Mathews,et al. RNA Secondary Structure Analysis Using RNAstructure , 2006, Current protocols in bioinformatics.
[32] M. Kozak,et al. Regulation of translation via mRNA structure in prokaryotes and eukaryotes. , 2005, Gene.
[33] M. Summers,et al. How retroviruses select their genomes , 2005, Nature Reviews Microbiology.
[34] G. Varani,et al. 13C NMR relaxation studies of RNA base and ribose nuclei reveal a complex pattern of motions in the RNA binding site for human U1A protein. , 2005, Journal of molecular biology.
[35] K. Weeks,et al. RNA flexibility in the dimerization domain of a gamma retrovirus , 2005, Nature chemical biology.
[36] K. Weeks,et al. RNA structure analysis at single nucleotide resolution by selective 2'-hydroxyl acylation and primer extension (SHAPE). , 2005, Journal of the American Chemical Society.
[37] Kevin M Weeks,et al. RNA SHAPE chemistry reveals nonhierarchical interactions dominate equilibrium structural transitions in tRNA(Asp) transcripts. , 2005, Journal of the American Chemical Society.
[38] M. Summers,et al. Structural basis for packaging the dimeric genome of Moloney murine leukaemia virus , 2004, Nature.
[39] D. Turner,et al. Incorporating chemical modification constraints into a dynamic programming algorithm for prediction of RNA secondary structure. , 2004, Proceedings of the National Academy of Sciences of the United States of America.
[40] Jason H. Moore,et al. An application of conditional logistic regression and multifactor dimensionality reduction for detecting gene-gene Interactions on risk of myocardial infarction: The importance of model validation , 2004, BMC Bioinformatics.
[41] K. Weeks,et al. Mechanics of DNA flexibility visualized by selective 2'-amine acylation at nucleotide bulges. , 2004, Journal of molecular biology.
[42] K. Weeks,et al. Kinetic and thermodynamic framework for assembly of the six-component bI3 group I intron ribonucleoprotein catalyst. , 2003, Biochemistry.
[43] A. S. Krasilnikov,et al. Crystal structure of the specificity domain of ribonuclease P , 2003, Nature.
[44] K. Weeks,et al. Differential helix stabilities and sites pre-organized for tertiary interactions revealed by monitoring local nucleotide flexibility in the bI5 group I intron RNA. , 2003, Biochemistry.
[45] L. Brakier-Gingras,et al. Characterization of the frameshift stimulatory signal controlling a programmed –1 ribosomal frameshift in the human immunodeficiency virus type 1 , 2002, Nucleic acids research.
[46] K. Weeks,et al. Catalysis of amide synthesis by RNA phosphodiester and hydroxyl groups , 2002, Proceedings of the National Academy of Sciences of the United States of America.
[47] T. Rana,et al. The frameshift signal of HIV-1 involves a potential intramolecular triplex RNA structure , 2002, Proceedings of the National Academy of Sciences of the United States of America.
[48] M. F. White,et al. Recruitment of intron-encoded and co-opted proteins in splicing of the bI3 group I intron RNA , 2002, Proceedings of the National Academy of Sciences of the United States of America.
[49] J. Sabina,et al. Expanded sequence dependence of thermodynamic parameters improves prediction of RNA secondary structure. , 1999, Journal of molecular biology.
[50] T. Pan,et al. Recognition of the T stem-loop of a pre-tRNA substrate by the ribozyme from Bacillus subtilis ribonuclease P. , 1997, Biochemistry.
[51] H. Varmus,et al. Characterization of ribosomal frameshifting in HIV-1 gag-pol expression , 1988, Nature.
[52] D. Capon,et al. Regulation of mRNA accumulation by a human immunodeficiency virus trans-activator protein , 1987, Cell.
[53] A. Szabó,et al. Model-free approach to the interpretation of nuclear magnetic resonance relaxation in macromolecules. 1. Theory and range of validity , 1982 .
[54] A. Komar,et al. A pause for thought along the co-translational folding pathway. , 2009, Trends in biochemical sciences.
[55] K. Weeks,et al. High-throughput SHAPE and hydroxyl radical analysis of RNA structure and ribonucleoprotein assembly. , 2009, Methods in enzymology.
[56] K. Weeks,et al. Mapping Local Nucleotide Flexibility by Selective Acylation of 2‘-Amine Substituted RNA , 2000 .