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Experimental Eye Research|October 26, 2018
Proteome-transcriptome analysis and proteome remodeling in mouse lens epithelium and fibersYilin Zhao, Phillip A Wilmarth, Catherine Cheng, et al.
The Journal of Neuroscience : the Official Journal of the Society for Neuroscience|December 10, 2017
ELMOD1 Stimulates ARF6-GTP Hydrolysis to Stabilize Apical Structures in Developing Vestibular Hair CellsJocelyn F Krey, Rachel A Dumont, Philip A Wilmarth, et al.
Journal of Molecular Biology|July 31, 2007
Biophysical properties of gammaC-crystallin in human and mouse eye lens: the role of molecular dipolesAndrew G Purkiss, Orval A Bateman, Keith Wyatt, et al.
Journal of Proteome Research|April 13, 2005
Identification of protein modifications using MS/MS de novo sequencing and the OpenSea alignment algorithmBrian C Searle, Surendra Dasari, Phillip A Wilmarth, et al.
Investigative Ophthalmology & Visual Science|March 11, 2008
Susceptibility of ovine lens crystallins to proteolytic cleavage during formation of hereditary cataractLucinda J G Robertson, Larry L David, Michael A Riviere, et al.
Journal of Proteomics|July 1, 2019
Identification of PKCα-dependent phosphoproteins in mouse retinaColin M Wakeham, Phillip A Wilmarth, Jennifer M Cunliffe, et al.
Scientific Data|July 18, 2018
Mass spectrometry quantitation of proteins from small pools of developing auditory and vestibular cellsJocelyn F Krey, Deborah I Scheffer, Dongseok Choi, et al.
Journal of Proteome Research|January 24, 2014
Newborn mouse lens proteome and its alteration by lysine 6 mutant ubiquitinFu Shang, Phillip A Wilmarth, Min-lee Chang, et al.
Experimental Eye Research|October 18, 2002
Altered patterns of phosphorylation in cultured mouse lenses during development of buthionine sulfoximine cataractsWenjie Li, Harold I Calvin, Larry L David, et al.
Proceedings of the National Academy of Sciences of the United States of America|February 7, 2012
Distinct energy metabolism of auditory and vestibular sensory epithelia revealed by quantitative mass spectrometry using MS2 intensityKateri J Spinelli, John E Klimek, Phillip A Wilmarth, et al.
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