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Unusually Strong Temperature Dependence of P2X3 Receptor Traffic to the Plasma Membrane

机译:P2X3受体运输到质膜的异常强烈的温度依赖性

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摘要

ATP-gated P2X3 receptors are expressed by nociceptive neurons and participate in transduction of pain. Responsiveness of P2X3 receptors is strongly reduced at low temperatures, suggesting a role for these receptors in analgesic effects of cooling. Since sustained responsiveness depends on receptor trafficking to the plasma membrane, we employed total internal reflection fluorescence (TIRF) microscopy to highlight perimembrane pool of DsRed-tagged P2X3 receptors and studied the effects of temperature on perimembrane turnover of P2X3-DsRed. Patch-clamp recordings confirmed membrane expression of functional, rapidly desensitizing P2X3-DsRed receptors. By combining TIRF microscopy with the technique of fluorescence recovery after photobleaching (FRAP), we measured the rate of perimembrane turnover of P2X3-DsRed receptors expressed in hippocampal neurons. At room temperature, the P2X3-DsRed perimembrane turnover as measured by TIRF–FRAP had a time constant of ∼2 min. At 29°C, receptor turnover was strongly accelerated (0.6 min), yielding an extremely high temperature dependence coefficient Q10 ∼4.5. In comparison, AMPA receptor turnover measured with TIRF–FRAP was only moderately sensitive to temperature (Q10 ∼1.5). The traffic inhibitor Brefeldin A selectively decelerated P2X3-DsRed receptor turnover at 29°C, but had no effect at 21°C (Q10 ∼1.0). This indicates that receptor traffic to plasma membrane is the key temperature-sensitive component of P2X3 turnover. The selective inhibitor of the RhoA kinase Y27632 significantly decreased the temperature dependence of P2X3-DsRed receptor turnover (Q10 ∼2.0). In summary, the RhoA kinase-dependent membrane trafficking of P2X3 receptors to plasma membrane has an exceptionally high sensitivity to temperature. These findings suggest an important role of P2X3 receptor turnover in hypothermia-associated analgesia.
机译:ATP门控的P2X3受体由伤害感受神经元表达,并参与疼痛的传导。 P2X3受体的反应性在低温下会大大降低,表明这些受体在冷却镇痛作用中的作用。由于持续的响应性取决于受体向质膜的转运,因此我们采用全内反射荧光(TIRF)显微镜来突出显示DsRed标签的P2X3受体的膜周池,并研究了温度对P2X3-DsRed膜周转的影响。膜片钳记录证实了功能性,快速脱敏的P2X3-DsRed受体的膜表达。通过将TIRF显微镜与光漂白后的荧光恢复技术(FRAP)相结合,我们测量了海马神经元中P2X3-DsRed受体的膜周转换率。在室温下,用TIRF-FRAP测量的P2X3-DsRed膜周转时间常数约为2 min。在29°C时,受体的转换速度大大加快(0.6分钟),从而产生极高的温度依赖性系数Q10〜4.5。相比之下,用TIRF-FRAP测量的AMPA受体转换仅对温度中等敏感(Q10〜1.5)。交通抑制剂布雷菲德菌素A在29°C时选择性地降低了P2X3-DsRed受体的转换,但在21°C时没有作用(Q10〜1.0)。这表明受体向质膜的运输是P2X3周转的关键温度敏感成分。 RhoA激酶Y27632的选择性抑制剂显着降低了P2X3-DsRed受体转换的温度依赖性(Q10〜2.0)。总之,P2X3受体依赖RhoA激酶的膜转运到质膜对温度具有极高的敏感性。这些发现表明P2X3受体更新在低温相关的镇痛中具有重要作用。

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