机械敏感通道
离子通道
伸展激活离子通道
压电1
机械转化
细胞生物学
TRPV4型
生物物理学
通道阻滞剂
膜片钳
机械反应
化学
钾通道
电生理学
生物
神经科学
生物化学
钙
受体
有机化学
作者
Susan Z. Hua,Philip A. Gottlieb,Jinseok Heo,Frederick Sachs
出处
期刊:American Journal of Physiology-cell Physiology
[American Physiological Society]
日期:2010-05-11
卷期号:298 (6): C1424-C1430
被引量:65
标识
DOI:10.1152/ajpcell.00503.2009
摘要
Cells respond to a hyposmotic challenge by swelling and then returning toward the resting volume, a process known as the regulatory volume decrease or RVD. The sensors for this process have been proposed to include cationic mechanosensitive ion channels that are opened by membrane tension. We tested this hypothesis using a microfluidic device to measure cell volume and the peptide GsMTx4, a specific inhibitor of cationic mechanosensitive channels. GsMTx4 had no effect on RVD in primary rat astrocytes or Madin-Darby canine kidney (MDCK) cells but was able to completely inhibit RVD and the associated Ca 2+ uptake in normal rat kidney (NRK-49F) cells in a dose-dependent manner. Gadolinium (Gd 3+ ), a nonspecific blocker of many mechanosensitive channels, inhibited RVD and Ca 2+ uptake in all three cell types, demonstrating the existence of at least two types of volume sensors. Single-channel stretch-activated currents are present in outside-out patches from NRK-49F, MDCK, and astrocytes, and they are reversibly inhibited by GsMTx4. While mechanosensitive channels are involved in volume regulation, their role for volume sensing is specialized. The NRK cells form a stable platform from which to screen drugs that affect volume regulation via mechanosensory channels and as a sensitive system to clone the channel.
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