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J M Hancock

Showing results (11-20 of 40) with videos related to

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Molecular Phylogenetics and Evolution|March 14, 2000
How slippage-derived sequences are incorporated into rRNA variable-region secondary structure: implications for phylogeny reconstructionJ M Hancock, A P Vogler
Molecular Biology and Evolution|July 1, 1988
Molecular coevolution among cryptically simple expansion segments of eukaryotic 26S/28S rRNAsJ M Hancock, G A Dover
Nucleic Acids Research|October 25, 1990
'Compensatory slippage' in the evolution of ribosomal RNA genesJ M Hancock, G A Dover
The EMBO Journal|October 2, 1998
Trinucleotide expansion diseases in the context of micro- and minisatellite evolution, Hammersmith Hospital, April 1-3, 1998J M Hancock, M F Santibáñez-Koref
Genome Dynamics|August 30, 2008
The mouse genomeS D M Brown, J M Hancock
Molecular Biology and Evolution|July 1, 1988
Evolution of the secondary structures and compensatory mutations of the ribosomal RNAs of Drosophila melanogasterJ M Hancock, D Tautz, G A Dover
Nucleic Acids Research|November 11, 1994
Polycytosine regions contained in DNA hairpin loops interact via a four-stranded, parallel structure similar to the i-motifJ Rohozinski, J M Hancock, M A Keniry
Molecular Biology and Evolution|January 1, 1997
Phylogenetic analysis of slippage-like sequence variation in the V4 rRNA expansion segment in tiger beetles (Cicindelidae)A P Vogler, A Welsh, J M Hancock
Proceedings of the National Academy of Sciences of the United States of America|January 9, 1996
Codon repeats in genes associated with human diseases: fewer repeats in the genes of nonhuman primates and nucleotide substitutions concentrated at the sites of reiterationP Djian, J M Hancock, H S Chana
Journal of Molecular Biology|June 5, 1991
Secondary structure constraints on the evolution of Drosophila 28 S ribosomal RNA expansion segmentsA Ruiz Linares, J M Hancock, G A Dover
Pageof 4

Showing results (11-20 of 40) with videos related to

Sort By:
Pageof 4
Molecular Phylogenetics and Evolution|March 14, 2000
How slippage-derived sequences are incorporated into rRNA variable-region secondary structure: implications for phylogeny reconstructionJ M Hancock, A P Vogler
Molecular Biology and Evolution|July 1, 1988
Molecular coevolution among cryptically simple expansion segments of eukaryotic 26S/28S rRNAsJ M Hancock, G A Dover
Nucleic Acids Research|October 25, 1990
'Compensatory slippage' in the evolution of ribosomal RNA genesJ M Hancock, G A Dover
The EMBO Journal|October 2, 1998
Trinucleotide expansion diseases in the context of micro- and minisatellite evolution, Hammersmith Hospital, April 1-3, 1998J M Hancock, M F Santibáñez-Koref
Genome Dynamics|August 30, 2008
The mouse genomeS D M Brown, J M Hancock
Molecular Biology and Evolution|July 1, 1988
Evolution of the secondary structures and compensatory mutations of the ribosomal RNAs of Drosophila melanogasterJ M Hancock, D Tautz, G A Dover
Nucleic Acids Research|November 11, 1994
Polycytosine regions contained in DNA hairpin loops interact via a four-stranded, parallel structure similar to the i-motifJ Rohozinski, J M Hancock, M A Keniry
Molecular Biology and Evolution|January 1, 1997
Phylogenetic analysis of slippage-like sequence variation in the V4 rRNA expansion segment in tiger beetles (Cicindelidae)A P Vogler, A Welsh, J M Hancock
Proceedings of the National Academy of Sciences of the United States of America|January 9, 1996
Codon repeats in genes associated with human diseases: fewer repeats in the genes of nonhuman primates and nucleotide substitutions concentrated at the sites of reiterationP Djian, J M Hancock, H S Chana
Journal of Molecular Biology|June 5, 1991
Secondary structure constraints on the evolution of Drosophila 28 S ribosomal RNA expansion segmentsA Ruiz Linares, J M Hancock, G A Dover
Pageof 4