Abstract
Mutations in the calcium-binding protein calsequestrin cause the highly lethal familial arrhythmia catecholaminergic polymorphic ventricular tachycardia (CPVT). In vivo, calsequestrin multimerizes into filaments, but there is not yet an atomic-resolution structure of a calsequestrin filament. We report a crystal structure of a human cardiac calsequestrin filament with supporting mutational analysis and in vitro filamentation assays. We identify and characterize a new disease-associated calsequestrin mutation, S173I, that is located at the filament-forming interface, and further show that a previously reported dominant disease mutation, K180R, maps to the same surface. Both mutations disrupt filamentation, suggesting that disease pathology is due to defects in multimer formation. An ytterbium-derivatized structure pinpoints multiple credible calcium sites at filament-forming interfaces, explaining the atomic basis of calsequestrin filamentation in the presence of calcium. Our study thus provides a unifying molecular mechanism through which dominant-acting calsequestrin mutations provoke lethal arrhythmias.
Publication types
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Research Support, N.I.H., Extramural
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Research Support, Non-U.S. Gov't
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Research Support, U.S. Gov't, Non-P.H.S.
MeSH terms
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Adult
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Binding Sites
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Calcium / chemistry*
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Calcium / metabolism
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Calcium-Binding Proteins / genetics
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Calcium-Binding Proteins / metabolism
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Calsequestrin / chemistry*
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Calsequestrin / genetics
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Calsequestrin / metabolism
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Cloning, Molecular
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Crystallography, X-Ray
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Escherichia coli / genetics
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Escherichia coli / metabolism
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Female
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Gene Expression
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Genes, Dominant
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Genetic Vectors / chemistry
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Genetic Vectors / metabolism
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Humans
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Kinetics
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Male
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Middle Aged
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Mitochondrial Proteins / genetics
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Mitochondrial Proteins / metabolism
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Models, Molecular
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Mutation
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Myocardium / metabolism*
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Myocardium / pathology
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Pedigree
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Protein Binding
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Protein Conformation, alpha-Helical
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Protein Conformation, beta-Strand
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Protein Interaction Domains and Motifs
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Protein Multimerization
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Recombinant Proteins / chemistry
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Recombinant Proteins / genetics
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Recombinant Proteins / metabolism
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Tachycardia, Ventricular / genetics*
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Tachycardia, Ventricular / metabolism
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Tachycardia, Ventricular / pathology
Substances
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CASQ1 protein, human
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CASQ2 protein, human
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Calcium-Binding Proteins
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Calsequestrin
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Mitochondrial Proteins
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Recombinant Proteins
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Calcium
Supplementary concepts
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Polymorphic catecholergic ventricular tachycardia