Aaron Louis Fidler, Ph.D.

Medicine VANDERBILT UNIVERSITY MEDICAL CTR, Nashville, TN, United States 
biochemistry, biology, evolution, collagen, basement membrane
"Aaron Fidler"
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Billy G. Hudson grad student 2013-2017
 (Grad student and faculty member in his lab)


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Gautam Bhave collaborator (Neurotree)
Carl E. Darris collaborator (Cell Biology Tree)
Robert E. Steele collaborator (DevTree)
Roberto M. Vanacore collaborator
Viravuth P. Yin collaborator (FlyTree)
Antonis Rokas collaborator 2013- (Computational Biology Tree)
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Pokidysheva EN, Seeger H, Pedchenko V, et al. (2021) Collagen IV dysfunction in glomerular basement membrane diseases. I. Discovery of a COL4A3 variant in familial Goodpasture's and Alport diseases. The Journal of Biological Chemistry. 100590
Pedchenko V, Bauer R, Pokidysheva EN, et al. (2019) A chloride ring is an ancient evolutionary innovation mediating the assembly of the collagen IV scaffold of basement membranes. The Journal of Biological Chemistry
Fidler AL, Boudko SP, Rokas A, et al. (2018) The triple helix of collagens - an ancient protein structure that enabled animal multicellularity and tissue evolution. Journal of Cell Science. 131
Fidler AL, Darris CE, Chetyrkin SV, et al. (2017) Collagen IV and basement membrane at the evolutionary dawn of metazoan tissues. Elife. 6
Fidler AL, Darris CE, Chetyrkin SV, et al. (2017) Author response: Collagen IV and basement membrane at the evolutionary dawn of metazoan tissues Elife
Fidler AL, Vanacore RM, Chetyrkin SV, et al. (2014) A unique covalent bond in basement membrane is a primordial innovation for tissue evolution. Proceedings of the National Academy of Sciences of the United States of America. 111: 331-6
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