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Anthony G Russell

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Advances in Experimental Medicine and Biology|April 22, 2017
Euglena Transcript ProcessingDavid C McWatters, Anthony G Russell
Molecular Genetics and Genomics : MGG|December 3, 2011
Clustered organization, polycistronic transcription, and evolution of modification-guide snoRNA genes in Euglena gracilisAshley N Moore, Anthony G Russell
RNA (New York, N.Y.)|June 23, 2004
Pseudouridine-guide RNAs and other Cbf5p-associated RNAs in Euglena gracilisAnthony G Russell, Murray N Schnare, Michael W Gray
Journal of Molecular Biology|February 25, 2006
A large collection of compact box C/D snoRNAs and their isoforms in Euglena gracilis: structural, functional and evolutionary insightsAnthony G Russell, Murray N Schnare, Michael W Gray
Nucleic Acids Research|May 17, 2005
Unusual features of fibrillarin cDNA and gene structure in Euglena gracilis: evolutionary conservation of core proteins and structural predictions for methylation-guide box C/D snoRNPs throughout the domain EucaryaAnthony G Russell, Yoh-ichi Watanabe, J Michael Charette, et al.
BMC Evolutionary Biology|August 20, 2005
An ancient spliceosomal intron in the ribosomal protein L7a gene (Rpl7a) of Giardia lambliaAnthony G Russell, Timothy E Shutt, Russell F Watkins, et al.
Nature|October 20, 2006
An early evolutionary origin for the minor spliceosomeAnthony G Russell, J Michael Charette, David F Spencer, et al.
RNA Biology|September 26, 2018
RNA-Seq employing a novel rRNA depletion strategy reveals a rich repertoire of snoRNAs in Euglena gracilis including box C/D and Ψ-guide RNAs targeting the modification of rRNA extremitiesAshley N Moore, David C McWatters, Andrew J Hudson, et al.
Molecular Biology and Evolution|April 13, 2011
Numerous fragmented spliceosomal introns, AT-AC splicing, and an unusual dynein gene expression pathway in Giardia lambliaScott W Roy, Andrew J Hudson, Joella Joseph, et al.
RNA Biology|September 25, 2015
Splicing diversity revealed by reduced spliceosomes in C. merolae and other organismsAndrew J Hudson, Martha R Stark, Naomi M Fast, et al.
Pageof 2

Showing results (1-10 of 12) with videos related to

Sort By:
Pageof 2
Advances in Experimental Medicine and Biology|April 22, 2017
Euglena Transcript ProcessingDavid C McWatters, Anthony G Russell
Molecular Genetics and Genomics : MGG|December 3, 2011
Clustered organization, polycistronic transcription, and evolution of modification-guide snoRNA genes in Euglena gracilisAshley N Moore, Anthony G Russell
RNA (New York, N.Y.)|June 23, 2004
Pseudouridine-guide RNAs and other Cbf5p-associated RNAs in Euglena gracilisAnthony G Russell, Murray N Schnare, Michael W Gray
Journal of Molecular Biology|February 25, 2006
A large collection of compact box C/D snoRNAs and their isoforms in Euglena gracilis: structural, functional and evolutionary insightsAnthony G Russell, Murray N Schnare, Michael W Gray
Nucleic Acids Research|May 17, 2005
Unusual features of fibrillarin cDNA and gene structure in Euglena gracilis: evolutionary conservation of core proteins and structural predictions for methylation-guide box C/D snoRNPs throughout the domain EucaryaAnthony G Russell, Yoh-ichi Watanabe, J Michael Charette, et al.
BMC Evolutionary Biology|August 20, 2005
An ancient spliceosomal intron in the ribosomal protein L7a gene (Rpl7a) of Giardia lambliaAnthony G Russell, Timothy E Shutt, Russell F Watkins, et al.
Nature|October 20, 2006
An early evolutionary origin for the minor spliceosomeAnthony G Russell, J Michael Charette, David F Spencer, et al.
RNA Biology|September 26, 2018
RNA-Seq employing a novel rRNA depletion strategy reveals a rich repertoire of snoRNAs in Euglena gracilis including box C/D and Ψ-guide RNAs targeting the modification of rRNA extremitiesAshley N Moore, David C McWatters, Andrew J Hudson, et al.
Molecular Biology and Evolution|April 13, 2011
Numerous fragmented spliceosomal introns, AT-AC splicing, and an unusual dynein gene expression pathway in Giardia lambliaScott W Roy, Andrew J Hudson, Joella Joseph, et al.
RNA Biology|September 25, 2015
Splicing diversity revealed by reduced spliceosomes in C. merolae and other organismsAndrew J Hudson, Martha R Stark, Naomi M Fast, et al.
Pageof 2