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Interactions of divalent cations with calcium binding sites of BK channels reveal independent motions within the gating ring.
Miranda, Pablo; Giraldez, Teresa; Holmgren, Miguel.
Afiliación
  • Miranda P; National Institute of Neurological Disorders and Stroke, National Institutes of Health, Bethesda, MD 20892; pablo.mirandafernandez2@nih.gov.
  • Giraldez T; Departamento de Ciencias Médicas Básicas, Instituto de Tecnologías Biomédicas y Centro de Investigaciones Biomédicas de Canarias, Universidad de La Laguna, 38071 La Laguna, Spain.
  • Holmgren M; National Institute of Neurological Disorders and Stroke, National Institutes of Health, Bethesda, MD 20892.
Proc Natl Acad Sci U S A ; 113(49): 14055-14060, 2016 12 06.
Article en En | MEDLINE | ID: mdl-27872281
ABSTRACT
Large-conductance voltage- and calcium-activated K+ (BK) channels are key physiological players in muscle, nerve, and endocrine function by integrating intracellular Ca2+ and membrane voltage signals. The open probability of BK channels is regulated by the intracellular concentration of divalent cations sensed by a large structure in the BK channel called the "gating ring," which is formed by four tandems of regulator of conductance for K+ (RCK1 and RCK2) domains. In contrast to Ca2+ that binds to both RCK domains, Mg2+, Cd2+, or Ba2+ interact preferentially with either one or the other. Interaction of cations with their binding sites causes molecular rearrangements of the gating ring, but how these motions occur remains elusive. We have assessed the separate contributions of each RCK domain to the cation-induced gating-ring structural rearrangements, using patch-clamp fluorometry. Here we show that Mg2+ and Ba2+ selectively induce structural movement of the RCK2 domain, whereas Cd2+ causes motions of RCK1, in all cases substantially smaller than those elicited by Ca2+ By combining divalent species interacting with unique sites, we demonstrate that RCK1 and RCK2 domains move independently when their specific binding sites are occupied. Moreover, binding of chemically distinct cations to both RCK domains is additive, emulating the effect of fully occupied Ca2+ binding sites.
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Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Asunto principal: Cationes Bivalentes / Canales de Potasio Calcio-Activados / Canales de Potasio de Gran Conductancia Activados por el Calcio Límite: Animals Idioma: En Revista: Proc Natl Acad Sci U S A Año: 2016 Tipo del documento: Article

Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Asunto principal: Cationes Bivalentes / Canales de Potasio Calcio-Activados / Canales de Potasio de Gran Conductancia Activados por el Calcio Límite: Animals Idioma: En Revista: Proc Natl Acad Sci U S A Año: 2016 Tipo del documento: Article