Velia M. Fowler

Scripps Research Institute, La Jolla, La Jolla, CA, United States 
Cell Biology, General Biophysics
"Velia Fowler"
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Vann Bennett post-doc 1980-1984 Johns Hopkins (Chemistry Tree)
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Wu T, Mu Y, Bogomolovas J, et al. (2017) HSPB7 is indispensable for heart development by modulating actin filament assembly. Proceedings of the National Academy of Sciences of the United States of America
Gokhin DS, Fowler VM. (2016) Software-based measurement of thin filament lengths: an open-source GUI for Distributed Deconvolution analysis of fluorescence images. Journal of Microscopy
Cheng C, Nowak RB, Biswas SK, et al. (2016) Tropomodulin 1 Regulation of Actin Is Required for the Formation of Large Paddle Protrusions Between Mature Lens Fiber Cells. Investigative Ophthalmology & Visual Science. 57: 4084-4099
Cheng C, Gokhin DS, Nowak RB, et al. (2016) Sequential Application of Glass Coverslips to Assess the Compressive Stiffness of the Mouse Lens: Strain and Morphometric Analyses. Journal of Visualized Experiments : Jove
Gokhin DS, Fowler VM. (2016) Feisty filaments: actin dynamics in the red blood cell membrane skeleton. Current Opinion in Hematology. 23: 206-214
Cheng C, Nowak RB, Fowler VM. (2016) The lens actin filament cytoskeleton: Diverse structures for complex functions. Experimental Eye Research
Gokhin DS, Ochala J, Domenighetti AA, et al. (2015) Tropomodulin 1 directly controls thin filament length in both wild-type and tropomodulin 4-deficient skeletal muscle. Development (Cambridge, England). 142: 4351-62
Liang R, Campreciós G, Kou Y, et al. (2015) A Systems Approach Identifies Essential FOXO3 Functions at Key Steps of Terminal Erythropoiesis. Plos Genetics. 11: e1005526
Sui Z, Nowak RB, Sanada C, et al. (2015) Regulation of actin polymerization by tropomodulin3 controls megakaryocyte actin organization and platelet biogenesis. Blood
Fischer RS, Fowler VM. (2015) Thematic Minireview Series: The State of the Cytoskeleton in 2015. The Journal of Biological Chemistry. 290: 17133-6
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