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Biochemistry|February 19, 2009
Selectivity in the post-translational, transglutaminase-dependent acylation of lysine residuesS N Prasanna Murthy, Thomas J Lukas, Theodore S Jardetzky, et al.
Biochemistry|September 7, 2006
Activation of phospholipase Cepsilon by free fatty acids and cross talk with phospholipase D and phospholipase A2S N Prasanna Murthy, Paul H Chung, Li Lin, et al.
Journal of Structural Biology|November 29, 2011
Inroads into the structure and function of intermediate filament networksRobert D Goldman, Megan M Cleland, S N Prasanna Murthy, et al.
Proceedings of the National Academy of Sciences of the United States of America|February 28, 2002
Conserved tryptophan in the core domain of transglutaminase is essential for catalytic activityS N Prasanna Murthy, Siiri Iismaa, Gillian Begg, et al.
Journal of Tissue Engineering and Regenerative Medicine|March 12, 2010
Capturing the stem cell paracrine effect using heparin-presenting nanofibres to treat cardiovascular diseasesMatthew J Webber, Xiaoqiang Han, S N Prasanna Murthy, et al.
Biochemical and Biophysical Research Communications|July 16, 2003
Activation of transglutaminase in mu-calpain null erythrocytesGerald M O'Neill, S N Prasanna Murthy, Laszlo Lorand, et al.
The Journal of Clinical Investigation|April 16, 2013
Giant axonal neuropathy-associated gigaxonin mutations impair intermediate filament protein degradationSaleemulla Mahammad, S N Prasanna Murthy, Alessandro Didonna, et al.
Molecular Biology of the Cell|February 25, 2011
Vimentin organization modulates the formation of lamellipodiaBrian T Helfand, Melissa G Mendez, S N Prasanna Murthy, et al.
Circulation. Arrhythmia and Electrophysiology|March 23, 2011
Autonomic remodeling in the left atrium and pulmonary veins in heart failure: creation of a dynamic substrate for atrial fibrillationJason Ng, Roger Villuendas, Ivan Cokic, et al.
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