Comparison of the molecular properties of retinitis pigmentosa P23H and N15S amino acid replacements in rhodopsin

Author:

Mitchell James,Balem Fernanda,Tirupula Kalyan,Man David,Dhiman Harpreet Kaur,Yanamala Naveena,Ollesch Julian,Planas-Iglesias Joan,Jennings Barbara J.,Gerwert Klaus,Iannaccone Alessandro,Klein-Seetharaman JudithORCID

Funder

Division of Information and Intelligent Systems

Publisher

Public Library of Science (PLoS)

Subject

Multidisciplinary

Reference48 articles.

1. Gattegna R, Jennings BJ, Klein-Seetharaman J, Iannaccone A. Comparison of Clinical findings of Retinitis Pigmentosa P23H and N15S Amino Acid Replacements in Rhodopsin, unpublished results.

2. The molecular and cellular basis of rhodopsin retinitis pigmentosa reveals potential strategies for therapy;D Athanasiou;Prog Retin Eye Res,2018

3. The Role of Rhodopsin Glycosylation in Protein Folding, Trafficking, and Light-Sensitive Retinal Degeneration;BM Tam;J Neurosci,2009

4. Proteasome overload is a common stress factor in multiple forms of inherited retinal degeneration;ES Lobanova;Proc Natl Acad Sci,2013

5. Increased proteasomal activity supports photoreceptor survival in inherited retinal degeneration;ES Lobanova;Nat Commun,2018

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