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TRPV4 exhibits a functional role in cell-volume regulation

机译:TRPV4在细胞体积调节中发挥功能性作用

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Tight regulation of the cell volume is important for the maintenance of cellular homeostasis. In a hypotonic environment, cells swell owing to osmosis. With many vertebrate cells, swelling is followed by an active reduction of volume, a process called regulatory volume decrease (RVD). A possible participant in RVD is the non-selective cation channel TRPV4, a member of the TRP superfamily that has been shown to react to hypotonic stimuli with a conductance for Ca2+. As a model for cell-volume regulation, we used a human keratinocyte cell line (HaCaT) that produces TRPV4 endogenously. When HaCaT cells were exposed to a hypotonic solution (200 mOsm) maximal swelling was followed by RVD. During swelling and volume regulation, a strong Ca2+ influx was measured. Gd (3+), an inhibitor of TRPV4, blocked RVD of HaCaT cells and the accompanying rise of cytosolic Ca2+. To define the role of TRPV4 in volume regulation, a TRPV4-EGFP fusion protein was produced in CHO cells. CHO cells are unable to undergo RVD under hypotonic conditions and do not produce TRPV4 endogenously. Fluorescence imaging revealed that recombinant TRPV4 was localized to the cell membrane. Production of TRPV4 enabled CHO cells to undergo typical RVD after hypo-osmolarity-induced cell swelling. RVD of TRPV4-transfected CHO cells was significantly reduced by Gd3+ treatment or in Ca2+-free solution. Taken together, these results show a direct participation of TRPV4 in RVD.
机译:严格调节细胞体积对于维持细胞动态平衡很重要。在低渗环境中,细胞由于渗透作用而膨胀。对于许多脊椎动物细胞,肿胀后会主动减少体积,这一过程称为调节体积减少(RVD)。 RVD的可能参与者是非选择性阳离子通道TRPV4,它是TRP超家族的成员,已显示对低渗刺激具有Ca2 +电导反应。作为细胞体积调节的模型,我们使用了内源性产生TRPV4的人角质形成细胞系(HaCaT)。当HaCaT细胞暴露于低渗溶液(200 mOsm)时,最大溶胀后是RVD。在溶胀和体积调节期间,测量到强烈的Ca2 +流入。 Gd(3+)是TRPV4的抑制剂,可阻断HaCaT细胞的RVD并伴随胞质Ca2 +升高。为了定义TRPV4在体积调节中的作用,在CHO细胞中产生了TRPV4-EGFP融合蛋白。 CHO细胞在低渗条件下无法进行RVD,并且不会内源产生TRPV4。荧光成像显示重组TRPV4位于细胞膜上。低渗透压诱导的细胞肿胀后,TRPV4的产生使CHO细胞能够经历典型的RVD。通过Gd3 +处理或在无Ca2 +的溶液中,TRPV4转染的CHO细胞的RVD明显降低。在一起,这些结果表明TRPV4直接参与RVD。

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