James M. Ervasti, PhD
Affiliations: | Biochemistry, Molecular Biology and Biophysics | University of Minnesota, Twin Cities, Minneapolis, MN |
Area:
Dystrophen-glycoprotein complexWebsite:
https://cbs.umn.edu/contacts/james-m-ervastiGoogle:
"James Marlyn Ervasti"Bio:
https://cbs.umn.edu/sites/cbs.umn.edu/files/public/downloads/Centennial-Program-for-web.pdf
https://campbell.lab.uiowa.edu/postdoctoral-fellows
Mean distance: 17.53 (cluster 11)
Cross-listing: Chemistry Tree
Parents
Sign in to add mentorCharles F. Louis | grad student | 1989 | UMN (Chemistry Tree) | |
(Skeletal muscle abnormalities in malignant hyperthermia.) | ||||
Kevin P. Campbell | post-doc | 1989-1992 | University of Iowa |
Children
Sign in to add traineeHanke Heun-Johnson | research assistant | 2005-2009 | |
Kurt J. Amann | grad student | 1999 | UW Madison (Chemistry Tree) |
Tina M. Bunnell | grad student | 2010 | UMN |
Kurt W. Prins | grad student | 2010 | UMN |
Thomas R. Cheever | grad student | 2011 | UMN |
Davin M. Henderson | grad student | 2011 | UMN |
Joseph J. Belanto | grad student | 2013 | UMN |
Dana M. Talsness | grad student | 2014 | UMN |
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Publications
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Sundby LJ, Southern WM, Sun J, et al. (2024) Deletion of exons 2 and 3 from Actb and cell immortalization lead to widespread, β-actin independent alterations in gene expression associated with cell cycle control. European Journal of Cell Biology. 103: 151397 |
Duvick L, Southern WM, Benzow K, et al. (2023) Regional vulnerability in a neurodegenerative disease: Delineating SCA1 CNS and muscle therapeutic targets using a conditional mutant ATXN1 mouse. Biorxiv : the Preprint Server For Biology |
Guhathakurta P, Carter AL, Thompson AR, et al. (2022) Enhancing interaction of actin and actin-binding domain 1 of dystrophin with modulators: toward improved gene therapy for Duchenne muscular dystrophy. The Journal of Biological Chemistry. 102675 |
Ramirez MP, Anderson MJM, Kelly MD, et al. (2022) Dystrophin missense mutations alter focal adhesion tension and mechanotransduction. Proceedings of the National Academy of Sciences of the United States of America. 119: e2205536119 |
Sundby LJ, Southern WM, Hawbaker KM, et al. (2022) Nucleotide- and Protein-Dependent Functions of . Molecular Biology of the Cell. mbcE22020054 |
Nelson DM, Fasbender EK, Jakubiak MC, et al. (2020) Rapid, redox-mediated mechanical susceptibility of the cortical microtubule lattice in skeletal muscle. Redox Biology. 37: 101730 |
Ryan TE, Schmidt CA, Tarpey MD, et al. (2020) PFKFB3 mediated glycolysis rescues myopathic outcomes in the ischemic limb. Jci Insight |
Lindsay A, Baumann CW, Rebbeck RT, et al. (2020) Mechanical factors tune the sensitivity of mdx muscle to eccentric strength loss and its protection by antioxidant and calcium modulators. Skeletal Muscle. 10: 3 |
Ramirez Lopez MP, Rajaganapathy S, Gordon WR, et al. (2020) The Mechanical Properties of a Utrophin Construct Encoding the Tandem CH Actin Binding Domain through Spectrin Repeat 3 is Altered by the Cell Expression System through Post-Translational Modifications Biophysical Journal. 118: 257a-258a |
Lindsay A, Southern WM, McCourt PM, et al. (2019) Variable cytoplasmic actin expression impacts the sensitivity of different dystrophin-deficient mdx skeletal muscles to eccentric contraction. The Febs Journal |