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J Britten

Showing results (51-60 of 207) with videos related to

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Clinica Chimica Acta; International Journal of Clinical Chemistry|February 26, 1982
Studies on the inhibition by propranolol of some human erythrocyte membrane enzymes and plasma cholinesteraseM Whittaker, R J Wicks, J J Britten
Developmental Biology|May 1, 1994
Repeated sequence target sites for maternal DNA-binding proteins in genes activated in early sea urchin developmentR Anderson, R J Britten, E H Davidson
Chromosoma|December 6, 1976
Contrasting patterns of DNA sequence arrangement in Apis mellifera (honeybee) and Musca domestica (housefly)W R Crain, E H Davidson, R J Britten
Journal of Molecular Evolution|March 1, 1990
Rapid evolution in a fraction of the Drosophila nuclear genomeS D Werman, E H Davidson, R J Britten
Development, Growth & Differentiation|July 10, 1999
SM37, a skeletogenic gene of the sea urchin embryo linked to the SM50 geneY H Lee, R J Britten, E H Davidson
Molecular Biology of the Cell|April 1, 1992
SpCoel1: a sea urchin profilin gene expressed specifically in coelomocytes in response to injuryL C Smith, R J Britten, E H Davidson
Journal of Molecular Evolution|January 1, 1984
Insertion of a short repetitive sequence (D88I) in a sea urchin gene: a typical interspersed repeat?S A Johnson, E H Davidson, R J Britten
Ciba Foundation Symposium|January 1, 1989
In vivo competition identifies positive cis-regulatory elements required for lineage-specific gene expression in the sea urchin embryoR R Franks, R J Britten, E H Davidson
Molecular Reproduction and Development|January 1, 1989
Expression of two actin genes during larval development in the sea urchin Strongylocentrotus purpuratusR A Cameron, R J Britten, E H Davidson
Developmental Biology|July 1, 1995
Developmental utilization of SpP3A1 and SpP3A2: two proteins which recognize the same DNA target site in several sea urchin gene regulatory regionsR W Zeller, R J Britten, E H Davidson
Pageof 21

Showing results (51-60 of 207) with videos related to

Sort By:
Pageof 21
Clinica Chimica Acta; International Journal of Clinical Chemistry|February 26, 1982
Studies on the inhibition by propranolol of some human erythrocyte membrane enzymes and plasma cholinesteraseM Whittaker, R J Wicks, J J Britten
Developmental Biology|May 1, 1994
Repeated sequence target sites for maternal DNA-binding proteins in genes activated in early sea urchin developmentR Anderson, R J Britten, E H Davidson
Chromosoma|December 6, 1976
Contrasting patterns of DNA sequence arrangement in Apis mellifera (honeybee) and Musca domestica (housefly)W R Crain, E H Davidson, R J Britten
Journal of Molecular Evolution|March 1, 1990
Rapid evolution in a fraction of the Drosophila nuclear genomeS D Werman, E H Davidson, R J Britten
Development, Growth & Differentiation|July 10, 1999
SM37, a skeletogenic gene of the sea urchin embryo linked to the SM50 geneY H Lee, R J Britten, E H Davidson
Molecular Biology of the Cell|April 1, 1992
SpCoel1: a sea urchin profilin gene expressed specifically in coelomocytes in response to injuryL C Smith, R J Britten, E H Davidson
Journal of Molecular Evolution|January 1, 1984
Insertion of a short repetitive sequence (D88I) in a sea urchin gene: a typical interspersed repeat?S A Johnson, E H Davidson, R J Britten
Ciba Foundation Symposium|January 1, 1989
In vivo competition identifies positive cis-regulatory elements required for lineage-specific gene expression in the sea urchin embryoR R Franks, R J Britten, E H Davidson
Molecular Reproduction and Development|January 1, 1989
Expression of two actin genes during larval development in the sea urchin Strongylocentrotus purpuratusR A Cameron, R J Britten, E H Davidson
Developmental Biology|July 1, 1995
Developmental utilization of SpP3A1 and SpP3A2: two proteins which recognize the same DNA target site in several sea urchin gene regulatory regionsR W Zeller, R J Britten, E H Davidson
Pageof 21