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G3 (Bethesda, Md.)|April 27, 2019
DPAC: A Tool for Differential Poly(A)-Cluster Usage from Poly(A)-Targeted RNAseq DataAndrew RouthPathogens (Basel, Switzerland)|January 18, 2020
Understanding Flavivirus Capsid Protein Functions: The Tip of the IcebergStephanea Sotcheff, Andrew RouthMethods in Molecular Biology (Clifton, N.J.)|December 11, 2017
ClickSeq: Replacing Fragmentation and Enzymatic Ligation with Click-Chemistry to Prevent Sequence ChimerasElizabeth Jaworski, Andrew RouthNucleic Acids Research|December 5, 2019
Mapping RNA-capsid interactions and RNA secondary structure within virus particles using next-generation sequencingYiyang Zhou, Andrew RouthPlos Pathogens|May 6, 2017
Parallel ClickSeq and Nanopore sequencing elucidates the rapid evolution of defective-interfering RNAs in Flock House virusElizabeth Jaworski, Andrew RouthCell Host & Microbe|October 12, 2018
Better Safe than Sorry: A Dual-Function Viral Protein Inhibiting Host DefenseBernhard C Lechtenberg, Andrew RouthNucleic Acids Research|October 19, 2013
Discovery of functional genomic motifs in viruses with ViReMa-a Virus Recombination Mapper-for analysis of next-generation sequencing dataAndrew Routh, John E JohnsonProceedings of the National Academy of Sciences of the United States of America|June 28, 2008
Nucleosome repeat length and linker histone stoichiometry determine chromatin fiber structureAndrew Routh, Sara Sandin, Daniela RhodesProceedings of the National Academy of Sciences of the United States of America|February 7, 2012
Host RNAs, including transposons, are encapsidated by a eukaryotic single-stranded RNA virusAndrew Routh, Tatiana Domitrovic, John E JohnsonJournal of Molecular Biology|October 17, 2012
Nucleotide-resolution profiling of RNA recombination in the encapsidated genome of a eukaryotic RNA virus by next-generation sequencingAndrew Routh, Phillip Ordoukhanian, John E JohnsonPageof 6