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Subtype-Selective Positive Modulation of KCa2.3 Channels Increases Cilia Length.
Nam, Young-Woo; Pala, Rajasekharreddy; El-Sayed, Naglaa Salem; Larin-Henriquez, Denisse; Amirrad, Farideh; Yang, Grace; Rahman, Mohammad Asikur; Orfali, Razan; Downey, Myles; Parang, Keykavous; Nauli, Surya M; Zhang, Miao.
Afiliação
  • Nam YW; Department of Biomedical and Pharmaceutical Sciences, Chapman University School of Pharmacy, Irvine, California 92618, USA.
  • Pala R; Department of Biomedical and Pharmaceutical Sciences, Chapman University School of Pharmacy, Irvine, California 92618, USA.
  • El-Sayed NS; Department of Biomedical and Pharmaceutical Sciences, Chapman University School of Pharmacy, Irvine, California 92618, USA.
  • Larin-Henriquez D; Department of Biomedical and Pharmaceutical Sciences, Chapman University School of Pharmacy, Irvine, California 92618, USA.
  • Amirrad F; Department of Biomedical and Pharmaceutical Sciences, Chapman University School of Pharmacy, Irvine, California 92618, USA.
  • Yang G; Department of Biomedical and Pharmaceutical Sciences, Chapman University School of Pharmacy, Irvine, California 92618, USA.
  • Rahman MA; Department of Biomedical and Pharmaceutical Sciences, Chapman University School of Pharmacy, Irvine, California 92618, USA.
  • Orfali R; Department of Biomedical and Pharmaceutical Sciences, Chapman University School of Pharmacy, Irvine, California 92618, USA.
  • Downey M; Department of Biomedical and Pharmaceutical Sciences, Chapman University School of Pharmacy, Irvine, California 92618, USA.
  • Parang K; Department of Biomedical and Pharmaceutical Sciences, Chapman University School of Pharmacy, Irvine, California 92618, USA.
  • Nauli SM; Department of Biomedical and Pharmaceutical Sciences, Chapman University School of Pharmacy, Irvine, California 92618, USA.
  • Zhang M; Department of Biomedical and Pharmaceutical Sciences, Chapman University School of Pharmacy, Irvine, California 92618, USA.
ACS Chem Biol ; 17(8): 2344-2354, 2022 08 19.
Article em En | MEDLINE | ID: mdl-35947779
ABSTRACT
Small-conductance Ca2+-activated potassium (KCa2.x) channels are gated exclusively by intracellular Ca2+. The activation of KCa2.3 channels induces hyperpolarization, which augments Ca2+ signaling in endothelial cells. Cilia are specialized Ca2+ signaling compartments. Here, we identified compound 4 that potentiates human KCa2.3 channels selectively. The subtype selectivity of compound 4 for human KCa2.3 over rat KCa2.2a channels relies on an isoleucine residue in the HA/HB helices. Positive modulation of KCa2.3 channels by compound 4 increased flow-induced Ca2+ signaling and cilia length, while negative modulation by AP14145 reduced flow-induced Ca2+ signaling and cilia length. These findings were corroborated by the increased cilia length due to the expression of Ca2+-hypersensitive KCa2.3_G351D mutant channels and the reduced cilia length resulting from the expression of Ca2+-hyposensitive KCa2.3_I438N channels. Collectively, we were able to associate functions of KCa2.3 channels and cilia, two crucial components in the flow-induced Ca2+ signaling of endothelial cells, with potential implications in vasodilation and ciliopathic hypertension.
Assuntos

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Canais de Potássio Ativados por Cálcio de Condutância Intermediária / Canais de Potássio Ativados por Cálcio de Condutância Baixa Tipo de estudo: Prognostic_studies Limite: Animals / Humans Idioma: En Revista: ACS Chem Biol Ano de publicação: 2022 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Canais de Potássio Ativados por Cálcio de Condutância Intermediária / Canais de Potássio Ativados por Cálcio de Condutância Baixa Tipo de estudo: Prognostic_studies Limite: Animals / Humans Idioma: En Revista: ACS Chem Biol Ano de publicação: 2022 Tipo de documento: Article