首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Laminar shear stress modulates the activity of heterologously expressed P2X(4) receptors.
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Laminar shear stress modulates the activity of heterologously expressed P2X(4) receptors.

机译:层流剪切应力调节异源表达的P2X(4)受体的活动。

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摘要

P2X(4) receptors are involved in mechanotransduction processes, but it is unknown whether or not P2X(4) receptors form mechanosensitive ion channels. This study questioned, whether laminar shear stress (LSS) can modulate P2X(4) receptor activity. Mouse P2X(4) receptor was cloned and heterologously expressed in Xenopus laevis oocytes. In two-electrode-voltage-clamp experiments the application of ATP (100muM) produced a transient inward current that was decreased by about 50% upon a second ATP application, corresponding to the desensitization behavior of P2X(4) receptors. In P2X(4) expressing oocytes LSS (shear forces of ~5.1dynes/cm(2)) did not produce any effect. However, LSS modulated the response of P2X(4) to ATP. With LSS (~5.1dynes/cm(2)) the desensitization of the current due to the second ATP application was diminished. Ivermectin (IVM), a compound which stabilizes the open state of P2X(4) receptors, mimicked the effect of LSS (~5.1dynes/cm(2)), since there was no additional effect of LSS after pre-incubation with IVM detected. This indicates that LSS like IVM stabilizes the open state of the receptor, although the particular mechanism remains unknown. These data demonstrate that LSS modulates the activity of P2X(4) receptors by eliminating the desensitization of the receptors in response to ATP probably by stabilizing the open state of the channel.
机译:P2X(4)受体参与机械转导过程,但未知P2X(4)受体是否形成机械敏感离子通道。这项研究质疑,层流剪切应力(LSS)是否可以调节P2X(4)受体活性。小鼠P2X(4)受体被克隆并在非洲爪蟾卵母细胞中异源表达。在两电极电压钳实验中,ATP(100μM)的产生产生了一个瞬时的内向电流,在第二次ATP施加后,该电流减少了约50%,这对应于P2X(4)受体的脱敏行为。在P2X(4)表达卵母细胞LSS(〜5.1dynes / cm(2)的剪切力)不会产生任何影响。但是,LSS调制P2X(4)对ATP的响应。使用LSS(〜5.1dynes / cm(2))时,由于第二次ATP施加而导致的电流脱敏减少了。伊维菌素(IVM)是一种稳定P2X(4)受体开放状态的化合物,模仿了LSS的作用(〜5.1dynes / cm(2)),因为在检测到与IVM预孵育后,LSS没有其他作用。这表明像IVM这样的LSS可以稳定受体的开放状态,尽管具体机制仍然未知。这些数据表明,LSS可能通过稳定通道的开放状态来消除受体对ATP的脱敏,从而调节P2X(4)受体的活性。

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