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Identification of the retinoschisin-binding site on the retinal Na/K-ATPase

X-linked juvenile retinoschisis (XLRS) is a hereditary retinal dystrophy, caused by mutations in the RS1 gene which encodes the secreted protein retinoschisin. In recent years, several molecules have been proposed to interact with retinoschisin, including the retinal Na/K-ATPase, L-voltage gated Ca(...

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Autores principales: Plössl, Karolina, Straub, Kristina, Schmid, Verena, Strunz, Franziska, Wild, Jens, Merkl, Rainer, Weber, Bernhard H. F., Friedrich, Ulrike
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6497308/
https://www.ncbi.nlm.nih.gov/pubmed/31048931
http://dx.doi.org/10.1371/journal.pone.0216320
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author Plössl, Karolina
Straub, Kristina
Schmid, Verena
Strunz, Franziska
Wild, Jens
Merkl, Rainer
Weber, Bernhard H. F.
Friedrich, Ulrike
author_facet Plössl, Karolina
Straub, Kristina
Schmid, Verena
Strunz, Franziska
Wild, Jens
Merkl, Rainer
Weber, Bernhard H. F.
Friedrich, Ulrike
author_sort Plössl, Karolina
collection PubMed
description X-linked juvenile retinoschisis (XLRS) is a hereditary retinal dystrophy, caused by mutations in the RS1 gene which encodes the secreted protein retinoschisin. In recent years, several molecules have been proposed to interact with retinoschisin, including the retinal Na/K-ATPase, L-voltage gated Ca(2+) channels, and specific sugars. We recently showed that the retinal Na/K-ATPase consisting of subunits ATP1A3 and ATP1B2 is essential for anchoring retinoschisin to plasma membranes and identified the glycosylated ATP1B2 subunit as the direct interaction partner for retinoschisin. We now aimed to precisely map the retinoschisin binding domain(s) in ATP1B2. In general, retinoschisin binding was not affected after selective elimination of individual glycosylation sites via site-directed mutagenesis as well as after full enzymatic deglycosylation of ATP1B2. Applying the interface prediction tool PresCont, two putative protein-protein interaction patches (“patch I” and “patch II”) consisting each of four hydrophobic amino acid stretches on the ATP1B2 surface were identified. These were consecutively altered by site-directed mutagenesis. Functional assays with the ATP1B2 patch mutants identified patch II and, specifically, the associated amino acid at position 240 (harboring a threonine in ATP1B2) as crucial for retinoschisin binding to ATP1B2. These and previous results led us to suggest an induced-fit binding mechanism for the interaction between retinoschisin and the Na/K-ATPase, which is dependent on threonine 240 in ATP1B2 allowing the accommodation of hyperflexible retinoschisin spikes by the associated protein-protein interaction patch on ATP1B2.
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spelling pubmed-64973082019-05-17 Identification of the retinoschisin-binding site on the retinal Na/K-ATPase Plössl, Karolina Straub, Kristina Schmid, Verena Strunz, Franziska Wild, Jens Merkl, Rainer Weber, Bernhard H. F. Friedrich, Ulrike PLoS One Research Article X-linked juvenile retinoschisis (XLRS) is a hereditary retinal dystrophy, caused by mutations in the RS1 gene which encodes the secreted protein retinoschisin. In recent years, several molecules have been proposed to interact with retinoschisin, including the retinal Na/K-ATPase, L-voltage gated Ca(2+) channels, and specific sugars. We recently showed that the retinal Na/K-ATPase consisting of subunits ATP1A3 and ATP1B2 is essential for anchoring retinoschisin to plasma membranes and identified the glycosylated ATP1B2 subunit as the direct interaction partner for retinoschisin. We now aimed to precisely map the retinoschisin binding domain(s) in ATP1B2. In general, retinoschisin binding was not affected after selective elimination of individual glycosylation sites via site-directed mutagenesis as well as after full enzymatic deglycosylation of ATP1B2. Applying the interface prediction tool PresCont, two putative protein-protein interaction patches (“patch I” and “patch II”) consisting each of four hydrophobic amino acid stretches on the ATP1B2 surface were identified. These were consecutively altered by site-directed mutagenesis. Functional assays with the ATP1B2 patch mutants identified patch II and, specifically, the associated amino acid at position 240 (harboring a threonine in ATP1B2) as crucial for retinoschisin binding to ATP1B2. These and previous results led us to suggest an induced-fit binding mechanism for the interaction between retinoschisin and the Na/K-ATPase, which is dependent on threonine 240 in ATP1B2 allowing the accommodation of hyperflexible retinoschisin spikes by the associated protein-protein interaction patch on ATP1B2. Public Library of Science 2019-05-02 /pmc/articles/PMC6497308/ /pubmed/31048931 http://dx.doi.org/10.1371/journal.pone.0216320 Text en © 2019 Plössl 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
Plössl, Karolina
Straub, Kristina
Schmid, Verena
Strunz, Franziska
Wild, Jens
Merkl, Rainer
Weber, Bernhard H. F.
Friedrich, Ulrike
Identification of the retinoschisin-binding site on the retinal Na/K-ATPase
title Identification of the retinoschisin-binding site on the retinal Na/K-ATPase
title_full Identification of the retinoschisin-binding site on the retinal Na/K-ATPase
title_fullStr Identification of the retinoschisin-binding site on the retinal Na/K-ATPase
title_full_unstemmed Identification of the retinoschisin-binding site on the retinal Na/K-ATPase
title_short Identification of the retinoschisin-binding site on the retinal Na/K-ATPase
title_sort identification of the retinoschisin-binding site on the retinal na/k-atpase
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6497308/
https://www.ncbi.nlm.nih.gov/pubmed/31048931
http://dx.doi.org/10.1371/journal.pone.0216320
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