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Temperature instability of a mutation at a multidomain junction in Na,K-ATPase isoform ATP1A3 (p.Arg756His) produces a fever-induced neurological syndrome

ATP1A3 encodes the α3 isoform of Na,K-ATPase. In the brain, it is expressed only in neurons. Human ATP1A3 mutations produce a wide spectrum of phenotypes, but particular syndromes are associated with unique substitutions. For arginine 756, at the junction of membrane and cytoplasmic domains, mutatio...

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Autores principales: Arystarkhova, Elena, Toustrup-Jensen, Mads S., Holm, Rikke, Ko, Jae-Kyun, Lee, Kyung Eun, Feschenko, Polina, Ozelius, Laurie J., Brashear, Allison, Vilsen, Bente, Sweadner, Kathleen J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9860391/
https://www.ncbi.nlm.nih.gov/pubmed/36462665
http://dx.doi.org/10.1016/j.jbc.2022.102758
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author Arystarkhova, Elena
Toustrup-Jensen, Mads S.
Holm, Rikke
Ko, Jae-Kyun
Lee, Kyung Eun
Feschenko, Polina
Ozelius, Laurie J.
Brashear, Allison
Vilsen, Bente
Sweadner, Kathleen J.
author_facet Arystarkhova, Elena
Toustrup-Jensen, Mads S.
Holm, Rikke
Ko, Jae-Kyun
Lee, Kyung Eun
Feschenko, Polina
Ozelius, Laurie J.
Brashear, Allison
Vilsen, Bente
Sweadner, Kathleen J.
author_sort Arystarkhova, Elena
collection PubMed
description ATP1A3 encodes the α3 isoform of Na,K-ATPase. In the brain, it is expressed only in neurons. Human ATP1A3 mutations produce a wide spectrum of phenotypes, but particular syndromes are associated with unique substitutions. For arginine 756, at the junction of membrane and cytoplasmic domains, mutations produce encephalopathy during febrile infections. Here we tested the pathogenicity of p.Arg756His (R756H) in isogenic mammalian cells. R756H protein had sufficient transport activity to support cells when endogenous ATP1A1 was inhibited. It had half the turnover rate of wildtype, reduced affinity for Na(+), and increased affinity for K(+). There was modest endoplasmic reticulum retention during biosynthesis at 37 °C but little benefit from the folding drug phenylbutyrate (4-PBA), suggesting a tolerated level of misfolding. When cells were incubated at just 39 °C, however, α3 protein level dropped without loss of β subunit, paralleled by an increase of endogenous α1. Elevated temperature resulted in internalization of α3 from the surface along with some β subunit, accompanied by cytoplasmic redistribution of a marker of lysosomes and endosomes, lysosomal-associated membrane protein 1. After return to 37 °C, α3 protein levels recovered with cycloheximide-sensitive new protein synthesis. Heating in vitro showed activity loss at a rate 20- to 30-fold faster than wildtype, indicating a temperature-dependent destabilization of protein structure. Arg756 appears to confer thermal resistance as an anchor, forming hydrogen bonds among four linearly distant parts of the Na,K-ATPase structure. Taken together, our observations are consistent with fever-induced symptoms in patients.
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spelling pubmed-98603912023-01-26 Temperature instability of a mutation at a multidomain junction in Na,K-ATPase isoform ATP1A3 (p.Arg756His) produces a fever-induced neurological syndrome Arystarkhova, Elena Toustrup-Jensen, Mads S. Holm, Rikke Ko, Jae-Kyun Lee, Kyung Eun Feschenko, Polina Ozelius, Laurie J. Brashear, Allison Vilsen, Bente Sweadner, Kathleen J. J Biol Chem Research Article ATP1A3 encodes the α3 isoform of Na,K-ATPase. In the brain, it is expressed only in neurons. Human ATP1A3 mutations produce a wide spectrum of phenotypes, but particular syndromes are associated with unique substitutions. For arginine 756, at the junction of membrane and cytoplasmic domains, mutations produce encephalopathy during febrile infections. Here we tested the pathogenicity of p.Arg756His (R756H) in isogenic mammalian cells. R756H protein had sufficient transport activity to support cells when endogenous ATP1A1 was inhibited. It had half the turnover rate of wildtype, reduced affinity for Na(+), and increased affinity for K(+). There was modest endoplasmic reticulum retention during biosynthesis at 37 °C but little benefit from the folding drug phenylbutyrate (4-PBA), suggesting a tolerated level of misfolding. When cells were incubated at just 39 °C, however, α3 protein level dropped without loss of β subunit, paralleled by an increase of endogenous α1. Elevated temperature resulted in internalization of α3 from the surface along with some β subunit, accompanied by cytoplasmic redistribution of a marker of lysosomes and endosomes, lysosomal-associated membrane protein 1. After return to 37 °C, α3 protein levels recovered with cycloheximide-sensitive new protein synthesis. Heating in vitro showed activity loss at a rate 20- to 30-fold faster than wildtype, indicating a temperature-dependent destabilization of protein structure. Arg756 appears to confer thermal resistance as an anchor, forming hydrogen bonds among four linearly distant parts of the Na,K-ATPase structure. Taken together, our observations are consistent with fever-induced symptoms in patients. American Society for Biochemistry and Molecular Biology 2022-12-01 /pmc/articles/PMC9860391/ /pubmed/36462665 http://dx.doi.org/10.1016/j.jbc.2022.102758 Text en © 2022 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Article
Arystarkhova, Elena
Toustrup-Jensen, Mads S.
Holm, Rikke
Ko, Jae-Kyun
Lee, Kyung Eun
Feschenko, Polina
Ozelius, Laurie J.
Brashear, Allison
Vilsen, Bente
Sweadner, Kathleen J.
Temperature instability of a mutation at a multidomain junction in Na,K-ATPase isoform ATP1A3 (p.Arg756His) produces a fever-induced neurological syndrome
title Temperature instability of a mutation at a multidomain junction in Na,K-ATPase isoform ATP1A3 (p.Arg756His) produces a fever-induced neurological syndrome
title_full Temperature instability of a mutation at a multidomain junction in Na,K-ATPase isoform ATP1A3 (p.Arg756His) produces a fever-induced neurological syndrome
title_fullStr Temperature instability of a mutation at a multidomain junction in Na,K-ATPase isoform ATP1A3 (p.Arg756His) produces a fever-induced neurological syndrome
title_full_unstemmed Temperature instability of a mutation at a multidomain junction in Na,K-ATPase isoform ATP1A3 (p.Arg756His) produces a fever-induced neurological syndrome
title_short Temperature instability of a mutation at a multidomain junction in Na,K-ATPase isoform ATP1A3 (p.Arg756His) produces a fever-induced neurological syndrome
title_sort temperature instability of a mutation at a multidomain junction in na,k-atpase isoform atp1a3 (p.arg756his) produces a fever-induced neurological syndrome
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9860391/
https://www.ncbi.nlm.nih.gov/pubmed/36462665
http://dx.doi.org/10.1016/j.jbc.2022.102758
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