Brian E. Staveley

Affiliations: 
Memorial University of Newfoundland, St. John's, Newfoundland and Labrador, Canada 
Area:
Molecular Biology
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"Brian Staveley"
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Publications

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Slade JD, Staveley BE. (2016) Extended longevity and survivorship during amino-acid starvation in a Drosophila Sir2 mutant heterozygote. Genome / National Research Council Canada = GéNome / Conseil National De Recherches Canada. 59: 311-8
Slade JD, Staveley BE. (2016) Enhanced survival of Drosophila Akt1 hypomorphs during amino-acid starvation requires foxo. Genome / National Research Council Canada = GéNome / Conseil National De Recherches Canada. 59: 87-93
Slade JD, Staveley BE. (2016) Manipulation of components that control feeding behavior in Drosophila melanogaster increases sensitivity to amino acid starvation Genetics and Molecular Research. 15
Slade JD, Staveley BE. (2015) Compensatory growth in novel Drosophila Akt1 mutants. Bmc Research Notes. 8: 77
Todd AM, Staveley BE. (2012) Expression of Pink1 with α-synuclein in the dopaminergic neurons of Drosophila leads to increases in both lifespan and healthspan. Genetics and Molecular Research : Gmr. 11: 1497-502
Todd AM, Staveley BE. (2008) Pink1 suppresses alpha-synuclein-induced phenotypes in a Drosophila model of Parkinson's disease. Genome / National Research Council Canada = GéNome / Conseil National De Recherches Canada. 51: 1040-6
Kramer JM, Slade JD, Staveley BE. (2008) foxo is required for resistance to amino acid starvation in Drosophila. Genome / National Research Council Canada = GéNome / Conseil National De Recherches Canada. 51: 668-72
Kramer JM, Staveley BE. (2003) GAL4 causes developmental defects and apoptosis when expressed in the developing eye of Drosophila melanogaster. Genetics and Molecular Research : Gmr. 2: 43-7
Kramer JM, Davidge JT, Lockyer JM, et al. (2003) Expression of Drosophila FOXO regulates growth and can phenocopy starvation. Bmc Developmental Biology. 3: 5
Staveley BE, Ruel L, Jin J, et al. (1998) Genetic analysis of protein kinase B (AKT) in Drosophila Current Biology. 8: 599-602
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