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RNA Biology
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July 8, 2011
The R2 retrotransposon RNA families
Walter N Moss, Danna G Eickbush, Michael J Lopez, et al.
Viruses
|
February 26, 2022
Secondary Structure of Subgenomic RNA M of SARS-CoV-2
Marta Soszynska-Jozwiak, Agnieszka Ruszkowska, Ryszard Kierzek, et al.
Peerj
|
November 17, 2022
ScanFold 2.0: a rapid approach for identifying potential structured RNA targets in genomes and transcriptomes
Ryan J Andrews, Warren B Rouse, Collin A O'Leary, et al.
Methodsx
|
July 14, 2023
Discovery of RNA secondary structural motifs using sequence-ordered thermodynamic stability and comparative sequence analysis
Jake M Peterson, Collin A O'Leary, Evelyn C Coppenbarger, et al.
Biochemistry
|
May 10, 2024
Structure of the SARS-CoV-2 Frameshift Stimulatory Element with an Upstream Multibranch Loop
Jake M Peterson, Scott T Becker, Collin A O'Leary, et al.
Nucleic Acids Research
|
February 7, 2008
Isoenergetic penta- and hexanucleotide microarray probing and chemical mapping provide a secondary structure model for an RNA element orchestrating R2 retrotransposon protein function
Elzbieta Kierzek, Ryszard Kierzek, Walter N Moss, et al.
RNA (New York, N.Y.)
|
January 5, 2022
Nuclear magnetic resonance reveals a two hairpin equilibrium near the 3'-splice site of influenza A segment 7 mRNA that can be shifted by oligonucleotides
Andrew D Kauffmann, Scott D Kennedy, Walter N Moss, et al.
Journal of Molecular Biology
|
April 29, 2009
Secondary structures for 5' regions of R2 retrotransposon RNAs reveal a novel conserved pseudoknot and regions that evolve under different constraints
Elzbieta Kierzek, Shawn M Christensen, Thomas H Eickbush, et al.
Plos One
|
June 12, 2012
The 3' splice site of influenza A segment 7 mRNA can exist in two conformations: a pseudoknot and a hairpin
Walter N Moss, Lumbini I Dela-Moss, Elzbieta Kierzek, et al.
Plos One
|
January 18, 2024
Identification of MYC intron 2 regions that modulate expression
Van S Tompkins, Zheng Xue, Jake M Peterson, et al.
Page
of 9
Search research articles
Search
Showing results (41-50 of 83) with videos related to
Sort By:
Page
of 9
RNA Biology
|
July 8, 2011
The R2 retrotransposon RNA families
Walter N Moss, Danna G Eickbush, Michael J Lopez, et al.
Viruses
|
February 26, 2022
Secondary Structure of Subgenomic RNA M of SARS-CoV-2
Marta Soszynska-Jozwiak, Agnieszka Ruszkowska, Ryszard Kierzek, et al.
Peerj
|
November 17, 2022
ScanFold 2.0: a rapid approach for identifying potential structured RNA targets in genomes and transcriptomes
Ryan J Andrews, Warren B Rouse, Collin A O'Leary, et al.
Methodsx
|
July 14, 2023
Discovery of RNA secondary structural motifs using sequence-ordered thermodynamic stability and comparative sequence analysis
Jake M Peterson, Collin A O'Leary, Evelyn C Coppenbarger, et al.
Biochemistry
|
May 10, 2024
Structure of the SARS-CoV-2 Frameshift Stimulatory Element with an Upstream Multibranch Loop
Jake M Peterson, Scott T Becker, Collin A O'Leary, et al.
Nucleic Acids Research
|
February 7, 2008
Isoenergetic penta- and hexanucleotide microarray probing and chemical mapping provide a secondary structure model for an RNA element orchestrating R2 retrotransposon protein function
Elzbieta Kierzek, Ryszard Kierzek, Walter N Moss, et al.
RNA (New York, N.Y.)
|
January 5, 2022
Nuclear magnetic resonance reveals a two hairpin equilibrium near the 3'-splice site of influenza A segment 7 mRNA that can be shifted by oligonucleotides
Andrew D Kauffmann, Scott D Kennedy, Walter N Moss, et al.
Journal of Molecular Biology
|
April 29, 2009
Secondary structures for 5' regions of R2 retrotransposon RNAs reveal a novel conserved pseudoknot and regions that evolve under different constraints
Elzbieta Kierzek, Shawn M Christensen, Thomas H Eickbush, et al.
Plos One
|
June 12, 2012
The 3' splice site of influenza A segment 7 mRNA can exist in two conformations: a pseudoknot and a hairpin
Walter N Moss, Lumbini I Dela-Moss, Elzbieta Kierzek, et al.
Plos One
|
January 18, 2024
Identification of MYC intron 2 regions that modulate expression
Van S Tompkins, Zheng Xue, Jake M Peterson, et al.
Page
of 9