Anthony Scott Castanza, Ph.D.
Affiliations: | 2012-2019 | Pathology | University of Washington, Seattle, Seattle, WA |
2019- | Medicine | University of California, San Diego, La Jolla, CA |
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Parents
Sign in to add mentorMatt Kaeberlein | research assistant | 2009-2012 | University of Washington (Cell Biology Tree) |
Robert F. Hevner | grad student | 2013-2018 | UW Medical School |
Jill P. Mesirov | research scientist | 2019- | UCSD (Computer Science Tree) |
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Publications
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Castanza AS, Recla JM, Eby D, et al. (2023) Extending support for mouse data in the Molecular Signatures Database (MSigDB). Nature Methods |
Biel A, Castanza AS, Rutherford R, et al. (2022) AUTS2 Syndrome: Molecular Mechanisms and Model Systems. Frontiers in Molecular Neuroscience. 15: 858582 |
Castanza AS, Ramirez S, Tripathi PP, et al. (2021) AUTS2 Regulates RNA Metabolism and Dentate Gyrus Development in Mice. Cerebral Cortex (New York, N.Y. : 1991) |
Benitez JA, Finlay D, Castanza A, et al. (2021) Pten Deficiency Leads To Proteasome Addiction, A Novel Vulnerability In Glioblastoma. Neuro-Oncology |
McCormick MA, Delaney JR, Tsuchiya M, et al. (2015) A Comprehensive Analysis of Replicative Lifespan in 4,698 Single-Gene Deletion Strains Uncovers Conserved Mechanisms of Aging. Cell Metabolism |
Johnson SC, Yanos ME, Bitto A, et al. (2015) Dose-dependent effects of mTOR inhibition on weight and mitochondrial disease in mice. Frontiers in Genetics. 6: 247 |
Johnson SC, Yanos ME, Kayser EB, et al. (2013) mTOR inhibition alleviates mitochondrial disease in a mouse model of Leigh syndrome. Science (New York, N.Y.). 342: 1524-8 |
Schleit J, Johnson SC, Bennett CF, et al. (2013) Molecular mechanisms underlying genotype-dependent responses to dietary restriction. Aging Cell. 12: 1050-61 |
Delaney JR, Chou A, Olsen B, et al. (2013) End-of-life cell cycle arrest contributes to stochasticity of yeast replicative aging. Fems Yeast Research. 13: 267-76 |
Delaney JR, Murakami C, Chou A, et al. (2013) Dietary restriction and mitochondrial function link replicative and chronological aging in Saccharomyces cerevisiae. Experimental Gerontology. 48: 1006-13 |