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Structure-based assessment of disease-related mutations in human voltage-gated sodium channels
Protein & Cell ; (12): 401-438, 2017.
Artigo em Inglês | WPRIM | ID: wpr-757322
ABSTRACT
Voltage-gated sodium (Na) channels are essential for the rapid upstroke of action potentials and the propagation of electrical signals in nerves and muscles. Defects of Na channels are associated with a variety of channelopathies. More than 1000 disease-related mutations have been identified in Na channels, with Na1.1 and Na1.5 each harboring more than 400 mutations. Na channels represent major targets for a wide array of neurotoxins and drugs. Atomic structures of Na channels are required to understand their function and disease mechanisms. The recently determined atomic structure of the rabbit voltage-gated calcium (Ca) channel Ca1.1 provides a template for homology-based structural modeling of the evolutionarily related Na channels. In this Resource article, we summarized all the reported disease-related mutations in human Na channels, generated a homologous model of human Na1.7, and structurally mapped disease-associated mutations. Before the determination of structures of human Na channels, the analysis presented here serves as the base framework for mechanistic investigation of Na channelopathies and for potential structure-based drug discovery.
Assuntos

Texto completo: DisponíveL Índice: WPRIM (Pacífico Ocidental) Assunto principal: Relação Estrutura-Atividade / Química / Canais de Cálcio Tipo L / Canalopatias / Domínios Proteicos / Genética / Metabolismo / Mutação Limite: Animais / Humanos Idioma: Inglês Revista: Protein & Cell Ano de publicação: 2017 Tipo de documento: Artigo

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Texto completo: DisponíveL Índice: WPRIM (Pacífico Ocidental) Assunto principal: Relação Estrutura-Atividade / Química / Canais de Cálcio Tipo L / Canalopatias / Domínios Proteicos / Genética / Metabolismo / Mutação Limite: Animais / Humanos Idioma: Inglês Revista: Protein & Cell Ano de publicação: 2017 Tipo de documento: Artigo