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Ion Channel Function and Electrical Excitability in the Zona Glomerulosa: A Network Perspective on Aldosterone Regulation
Annual Review of Physiology ( IF 15.7 ) Pub Date : 2021-02-10 , DOI: 10.1146/annurev-physiol-030220-113038
Paula Q Barrett 1 , Nick A Guagliardo 1 , Douglas A Bayliss 1
Affiliation  

Aldosterone excess is a pathogenic factor in many hypertensive disorders. The discovery of numerous somatic and germline mutations in ion channels in primary hyperaldosteronism underscores the importance of plasma membrane conductances in determining the activation state of zona glomerulosa (zG) cells. Electrophysiological recordings describe an electrically quiescent behavior for dispersed zG cells. Yet, emerging data indicate that in native rosette structures in situ, zG cells are electrically excitable, generating slow periodic voltage spikes and coordinated bursts of Ca2+ oscillations. We revisit data to understand how a multitude of conductances may underlie voltage/Ca2+ oscillations, recognizing that zG layer self-renewal and cell heterogeneity may complicate this task. We review recent data to understand rosette architecture and apply maxims derived from computational network modeling to understand rosette function. The challenge going forward is to uncover how the rosette orchestrates the behavior of a functional network of conditional oscillators to control zG layer performance and aldosterone secretion.

中文翻译:


肾小球带的离子通道功能和电兴奋性:醛固酮调节的网络视角

醛固酮过量是许多高血压疾病的致病因素。在原发性醛固酮增多症的离子通道中发现大量体细胞和种系突变强调了质膜电导在确定肾小球 (zG) 细胞激活状态中的重要性。电生理记录描述了分散的 zG 细胞的电静止行为。然而,新出现的数据表明,在原位的天然玫瑰花结结构中,zG 细胞是可电激发的,产生缓慢的周期性电压尖峰和协调的 Ca 2+振荡爆发。我们重新审视数据以了解多种电导如何构成电压/Ca 2+振荡,认识到zG层自我更新和细胞异质性可能使这项任务复杂化。我们回顾最近的数据以了解玫瑰花结架构,并应用从计算网络建模得出的格言来理解玫瑰花结功能。未来的挑战是揭示玫瑰花结如何协调条件振荡器功能网络的行为,以控制 zG 层性能和醛固酮分泌。

更新日期:2021-02-11
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