James M. Ervasti, PhD

Affiliations: 
Biochemistry, Molecular Biology and Biophysics University of Minnesota, Twin Cities, Minneapolis, MN 
Area:
Dystrophen-glycoprotein complex
Website:
https://cbs.umn.edu/contacts/james-m-ervasti
Google:
"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

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Charles 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

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Hanke 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
BETA: Related publications

Publications

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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
Razzoli M, Lindsay A, Law ML, et al. (2020) Social stress is lethal in the mdx model of Duchenne muscular dystrophy. Ebiomedicine. 102700
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
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
Rajaganapathy S, McCourt JL, Ghosal S, et al. (2019) Distinct mechanical properties in homologous spectrin-like repeats of utrophin. Scientific Reports. 9: 5210
Randazzo D, Khalique U, Belanto JJ, et al. (2019) Persistent upregulation of the β-tubulin tubb6, linked to muscle regeneration, is a source of microtubule disorganization in dystrophic muscle. Human Molecular Genetics
Lindsay A, Larson AA, Verma M, et al. (2018) Isometric resistance training increases strength and alters histopathology of dystrophin-deficient mouse skeletal muscle. Journal of Applied Physiology (Bethesda, Md. : 1985)
Randazzo D, Khalique U, Belanto JJ, et al. (2018) Persistent upregulation of the β-tubulin tubb6, linked to muscle regeneration, is a source of microtubule disorganization in dystrophic muscle. Human Molecular Genetics
Olthoff JT, Lindsay A, Abo-Zahrah R, et al. (2018) Loss of peroxiredoxin-2 exacerbates eccentric contraction-induced force loss in dystrophin-deficient muscle. Nature Communications. 9: 5104
Lindsay A, Chamberlain CM, Witthuhn BA, et al. (2018) Dystrophinopathy associated dysfunction of Krebs cycle metabolism. Human Molecular Genetics
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