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渗透压诱发大鼠视上核神经元中ΔN-TRPV1通道依赖磷脂酶Cδ1的转位。

Osmotically evoked PLCδ1-dependent translocation of ΔN-TRPV1 channels in rat supraoptic neurons.

作者信息

Haan Kirk D, Park Sung Jin, Nakamura Yoshikazu, Fukami Kiyoko, Fisher Thomas E

机构信息

Department of Anatomy, Physiology, and Pharmacology, College of Medicine, University of Saskatchewan, Saskatoon, SK, Canada.

Department of Applied Biological Science, Faculty of Science and Technology, Tokyo University of Science, Noda, Chiba, Japan.

出版信息

iScience. 2023 Feb 20;26(3):106258. doi: 10.1016/j.isci.2023.106258. eCollection 2023 Mar 17.

Abstract

Osmoregulation is an essential homeostatic process that requires constant release of vasopressin during sustained increases in plasma osmolality. The magnocellular neurosecretory cells (MNCs) respond to increases in external osmolality through increases in the activity of ΔN-TRPV1 channels, which leads to increased action potential firing and vasopressin release. We show that sustained exposure of acutely isolated rat and mouse MNCs to hypertonic solutions (90 min) causes a reversible translocation of ΔN-TRPV1 channels from internal stores to the plasma membrane that depends on the activation of phospholipase C and on SNARE-dependent exocytosis. ΔN-TRPV1 channel translocation is absent in MNCs isolated from transgenic mice lacking the PLCδ1 isoform, suggesting that PLCδ1 is essential for triggering this process. The translocation of ΔN-TRPV1 channels to the cell surface could contribute to the maintenance of MNC excitability during sustained increases in osmolality. Our data therefore have important implications for the mechanisms underlying mammalian osmoregulation.

摘要

渗透调节是一种重要的稳态过程,在血浆渗透压持续升高期间需要持续释放血管加压素。大细胞神经分泌细胞(MNCs)通过增加ΔN-TRPV1通道的活性来响应外部渗透压的升高,这会导致动作电位发放增加和血管加压素释放。我们发现,将急性分离的大鼠和小鼠MNCs持续暴露于高渗溶液中(90分钟)会导致ΔN-TRPV1通道从内部储存部位可逆地转运到质膜,这依赖于磷脂酶C的激活和SNARE依赖的胞吐作用。从缺乏PLCδ1亚型的转基因小鼠分离的MNCs中不存在ΔN-TRPV1通道易位,这表明PLCδ1对于触发这一过程至关重要。在渗透压持续升高期间,ΔN-TRPV1通道向细胞表面的易位可能有助于维持MNC的兴奋性。因此,我们的数据对哺乳动物渗透调节的潜在机制具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/438c/10011827/e76131b18b5c/fx1.jpg

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