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NALCN通道复合体对电压敏感,并直接受细胞外钙的调节。

The NALCN channel complex is voltage sensitive and directly modulated by extracellular calcium.

作者信息

Chua H C, Wulf M, Weidling C, Rasmussen L P, Pless S A

机构信息

Department of Drug Design and Pharmacology, University of Copenhagen, Jagtvej 160, 2100 Copenhagen, Denmark.

出版信息

Sci Adv. 2020 Apr 24;6(17):eaaz3154. doi: 10.1126/sciadv.aaz3154. eCollection 2020 Apr.

Abstract

The sodium leak channel (NALCN) is essential for survival in mammals: NALCN mutations are life-threatening in humans and knockout is lethal in mice. However, the basic functional and pharmacological properties of NALCN have remained elusive. Here, we found that robust function of NALCN in heterologous systems requires co-expression of UNC79, UNC80, and FAM155A. The resulting NALCN channel complex is constitutively active and conducts monovalent cations but is blocked by physiological concentrations of extracellular divalent cations. Our data support the notion that NALCN is directly responsible for the increased excitability observed in a variety of neurons in reduced extracellular Ca. Despite the smaller number of voltage-sensing residues in NALCN, the constitutive activity is modulated by voltage, suggesting that voltage-sensing domains can give rise to a broader range of gating phenotypes than previously anticipated. Our work points toward formerly unknown contributions of NALCN to neuronal excitability and opens avenues for pharmacological targeting.

摘要

钠泄漏通道(NALCN)对哺乳动物的生存至关重要:NALCN突变在人类中会危及生命,而在小鼠中敲除则是致命的。然而,NALCN的基本功能和药理学特性仍然难以捉摸。在这里,我们发现NALCN在异源系统中的强大功能需要UNC79、UNC80和FAM155A共同表达。由此产生的NALCN通道复合物具有组成性活性,可传导单价阳离子,但会被生理浓度的细胞外二价阳离子阻断。我们的数据支持这样一种观点,即NALCN直接导致在细胞外钙减少的情况下多种神经元中观察到的兴奋性增加。尽管NALCN中电压感应残基的数量较少,但其组成性活性受电压调节,这表明电压感应结构域可以产生比以前预期更广泛的门控表型。我们的工作指出了NALCN对神经元兴奋性以前未知的贡献,并为药理学靶向开辟了途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3ac0/7182417/eb4006aa6e70/aaz3154-F1.jpg

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