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

Mutations in the RHO gene encoding for the visual pigment protein, rhodopsin, are among the most common cause of autosomal dominant retinitis pigmentosa (ADRP). Previous studies of ADRP mutations in different domains of rhodopsin have indicated that changes that lead to more instability in rhodopsin...

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Autores principales: 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, Judith
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6524802/
https://www.ncbi.nlm.nih.gov/pubmed/31100078
http://dx.doi.org/10.1371/journal.pone.0214639
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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, Judith
author_facet 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, Judith
author_sort Mitchell, James
collection PubMed
description Mutations in the RHO gene encoding for the visual pigment protein, rhodopsin, are among the most common cause of autosomal dominant retinitis pigmentosa (ADRP). Previous studies of ADRP mutations in different domains of rhodopsin have indicated that changes that lead to more instability in rhodopsin structure are responsible for more severe disease in patients. Here, we further test this hypothesis by comparing side-by-side and therefore quantitatively two RHO mutations, N15S and P23H, both located in the N-terminal intradiscal domain. The in vitro biochemical properties of these two rhodopsin proteins, expressed in stably transfected tetracycline-inducible HEK293S cells, their UV-visible absorption, their Fourier transform infrared, circular dichroism and Metarhodopsin II fluorescence spectroscopy properties were characterized. As compared to the severely impaired P23H molecular function, N15S is only slightly defective in structure and stability. We propose that the molecular basis for these structural differences lies in the greater distance of the N15 residue as compared to P23 with respect to the predicted rhodopsin folding core. As described previously for WT rhodopsin, addition of the cytoplasmic allosteric modulator chlorin e6 stabilizes especially the P23H protein, suggesting that chlorin e6 may be generally beneficial in the rescue of those ADRP rhodopsin proteins whose stability is affected by amino acid replacement.
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spelling pubmed-65248022019-05-31 Comparison of the molecular properties of retinitis pigmentosa P23H and N15S amino acid replacements in rhodopsin 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, Judith PLoS One Research Article Mutations in the RHO gene encoding for the visual pigment protein, rhodopsin, are among the most common cause of autosomal dominant retinitis pigmentosa (ADRP). Previous studies of ADRP mutations in different domains of rhodopsin have indicated that changes that lead to more instability in rhodopsin structure are responsible for more severe disease in patients. Here, we further test this hypothesis by comparing side-by-side and therefore quantitatively two RHO mutations, N15S and P23H, both located in the N-terminal intradiscal domain. The in vitro biochemical properties of these two rhodopsin proteins, expressed in stably transfected tetracycline-inducible HEK293S cells, their UV-visible absorption, their Fourier transform infrared, circular dichroism and Metarhodopsin II fluorescence spectroscopy properties were characterized. As compared to the severely impaired P23H molecular function, N15S is only slightly defective in structure and stability. We propose that the molecular basis for these structural differences lies in the greater distance of the N15 residue as compared to P23 with respect to the predicted rhodopsin folding core. As described previously for WT rhodopsin, addition of the cytoplasmic allosteric modulator chlorin e6 stabilizes especially the P23H protein, suggesting that chlorin e6 may be generally beneficial in the rescue of those ADRP rhodopsin proteins whose stability is affected by amino acid replacement. Public Library of Science 2019-05-17 /pmc/articles/PMC6524802/ /pubmed/31100078 http://dx.doi.org/10.1371/journal.pone.0214639 Text en © 2019 Mitchell et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
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, Judith
Comparison of the molecular properties of retinitis pigmentosa P23H and N15S amino acid replacements in rhodopsin
title Comparison of the molecular properties of retinitis pigmentosa P23H and N15S amino acid replacements in rhodopsin
title_full Comparison of the molecular properties of retinitis pigmentosa P23H and N15S amino acid replacements in rhodopsin
title_fullStr Comparison of the molecular properties of retinitis pigmentosa P23H and N15S amino acid replacements in rhodopsin
title_full_unstemmed Comparison of the molecular properties of retinitis pigmentosa P23H and N15S amino acid replacements in rhodopsin
title_short Comparison of the molecular properties of retinitis pigmentosa P23H and N15S amino acid replacements in rhodopsin
title_sort comparison of the molecular properties of retinitis pigmentosa p23h and n15s amino acid replacements in rhodopsin
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6524802/
https://www.ncbi.nlm.nih.gov/pubmed/31100078
http://dx.doi.org/10.1371/journal.pone.0214639
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