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星形胶质细胞容积调节阴离子通道与水通道蛋白 4 在抗利尿激素神经元活动的低渗调节中的相互作用。

Interactions between the Astrocytic Volume-Regulated Anion Channel and Aquaporin 4 in Hyposmotic Regulation of Vasopressin Neuronal Activity in the Supraoptic Nucleus.

机构信息

Department of Physiology, School of Basic Medical Sciences, Harbin Medical University, Harbin 150081, China.

Neuroscience Laboratory for Translational Medicine, School of Mental Health, Qiqihar Medical University, Qiqihar 161006, China.

出版信息

Cells. 2023 Jun 26;12(13):1723. doi: 10.3390/cells12131723.

Abstract

We assessed interactions between the astrocytic volume-regulated anion channel (VRAC) and aquaporin 4 (AQP4) in the supraoptic nucleus (SON). Acute SON slices and cultures of hypothalamic astrocytes prepared from rats received hyposmotic challenge (HOC) with/without VRAC or AQP4 blockers. In acute slices, HOC caused an early decrease with a late rebound in the neuronal firing rate of vasopressin neurons, which required activity of astrocytic AQP4 and VRAC. HOC also caused a persistent decrease in the excitatory postsynaptic current frequency, supported by VRAC and AQP4 activity in early HOC; late HOC required only VRAC activity. These events were associated with the dynamics of glial fibrillary acidic protein (GFAP) filaments, the late retraction of which was mediated by VRAC activity; this activity also mediated an HOC-evoked early increase in AQP4 expression and late subside in GFAP-AQP4 colocalization. AQP4 activity supported an early HOC-evoked increase in VRAC levels and its colocalization with GFAP. In cultured astrocytes, late HOC augmented VRAC currents, the activation of which depended on AQP4 pre-HOC/HOC activity. HOC caused an early increase in VRAC expression followed by a late rebound, requiring AQP4 and VRAC, or only AQP4 activity, respectively. Astrocytic swelling in early HOC depended on AQP4 activity, and so did the early extension of GFAP filaments. VRAC and AQP4 activity supported late regulatory volume decrease, the retraction of GFAP filaments, and subside in GFAP-VRAC colocalization. Taken together, astrocytic morphological plasticity relies on the coordinated activities of VRAC and AQP4, which are mutually regulated in the astrocytic mediation of HOC-evoked modulation of vasopressin neuronal activity.

摘要

我们评估了星形胶质细胞体积调节阴离子通道 (VRAC) 和水通道蛋白 4 (AQP4) 在视上核 (SON) 中的相互作用。接受低渗挑战 (HOC) 的急性 SON 切片和从小鼠下丘脑星形胶质细胞中培养的细胞接受了 VRAC 和 AQP4 阻滞剂的处理。在急性切片中,HOC 引起了加压素神经元放电率的早期下降和晚期反弹,这需要星形胶质细胞 AQP4 和 VRAC 的活性。HOC 还引起兴奋性突触后电流频率的持续下降,这在早期 HOC 中需要 VRAC 和 AQP4 的活性;晚期 HOC 仅需要 VRAC 活性。这些事件与胶质纤维酸性蛋白 (GFAP) 丝的动力学有关,GFAP 丝的晚期回缩是由 VRAC 活性介导的;这种活性还介导了 HOC 诱导的 AQP4 表达的早期增加和晚期 GFAP-AQP4 共定位的消退。AQP4 活性支持 HOC 早期诱导的 VRAC 水平增加及其与 GFAP 的共定位。在培养的星形胶质细胞中,晚期 HOC 增强了 VRAC 电流,其激活依赖于 AQP4 预 HOC/HOC 活性。HOC 引起了 VRAC 表达的早期增加,随后是晚期反弹,分别需要 AQP4 和 VRAC 或仅 AQP4 活性。早期 HOC 中的星形胶质细胞肿胀依赖于 AQP4 活性,GFAP 丝的早期延伸也是如此。VRAC 和 AQP4 活性支持晚期调节性体积减少、GFAP 丝的回缩以及 GFAP-VRAC 共定位的消退。总之,星形胶质细胞形态可塑性依赖于 VRAC 和 AQP4 的协调活动,这在星形胶质细胞介导的 HOC 诱导的加压素神经元活性调节中是相互调节的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7abb/10341125/ed5b69c6aa54/cells-12-01723-g001.jpg

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