ASIC3 knockout alters expression and activity of P2X3 in muscle afferent nerves of rat model of peripheral artery disease.

IF 2.5 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY FASEB bioAdvances Pub Date : 2022-05-01 DOI:10.1096/fba.2021-00156
Lu Qin, Qin Li, Jianhua Li
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Abstract

In peripheral artery disease (PAD), the metaboreceptor and mechanoreceptor in muscle afferent nerves contribute to accentuated sympathetic outflow via a neural reflex termed exercise pressor reflex (EPR). Particularly, lactic acid and adenosine triphosphate (ATP) produced in exercising muscles respectively stimulate acid sensing ion channel subtype 3 (ASIC3) and P2X3 receptors (P2X3) in muscle afferent nerves, inducing the reflex sympathetic and BP responses. Previous studies indicated that those two receptors are spatially close to each other and AISC3 may have a regulatory effect on the function of P2X3. This inspired our investigation on the P2X3-mediated EPR response following AISC3 abolished, which was anticipated to shed light on the future pharmacological and genetic treatment strategy for PAD. Thus, we tested the experimental hypothesis that the pressor response to P2X3 stimulation is greater in PAD rats with 3 days of femoral artery occlusion and the sensitizing effects of P2X3 are attenuated following ASIC3 knockout (KO) in PAD. Our data demonstrated that in wild type (WT) rats femoral occlusion exaggerated BP response to activation of P2X3 using α,β-methylene ATP injected into the arterial blood supply of the hindlimb, meanwhile the western blot analysis suggested upregulation of P2X3 expression in dorsal root ganglion supplying the afferent nerves. Using the whole cell patch-clamp method, we also showed that P2X3 stimulation enhanced the amplitude of induced currents in muscle afferent neurons of PAD rats. Of note, amplification of the P2X3 evoked-pressor response and expression and current response of P2X3 was attenuated in ASIC3 KO rats. We concluded that the exaggerated P2X3-mediated pressor response in PAD rats is blunted by ASIC3 KO due to the decreased expression and activities of P2X3 in muscle afferent neurons.

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敲除ASIC3可改变外周动脉疾病大鼠肌肉传入神经中P2X3的表达和活性。
在外周动脉疾病(PAD)中,肌肉传入神经中的代谢受体和机械受体通过称为运动加压反射(EPR)的神经反射促进交感神经流出。特别是运动肌肉产生的乳酸和三磷酸腺苷(ATP)分别刺激肌肉传入神经的酸感离子通道亚型3 (ASIC3)和P2X3受体(P2X3),诱导交感反射和BP反应。既往研究表明,这两种受体在空间上相互接近,AISC3可能对P2X3的功能有调节作用。这启发了我们对AISC3废除后p2x3介导的EPR反应的研究,预计这将为未来PAD的药理学和遗传学治疗策略提供启示。因此,我们验证了实验假设,即在股动脉闭塞3天后,PAD大鼠对P2X3刺激的升压反应更大,并且在PAD中ASIC3敲除(KO)后,P2X3的增敏作用减弱。我们的数据表明,野生型(WT)大鼠股骨闭塞后,后肢动脉供血中注射α,β-亚甲基ATP激活P2X3,从而增加了BP反应,同时western blot分析表明,供应传入神经的背根神经节中P2X3的表达上调。采用全细胞膜片钳法,我们还发现P2X3刺激增强了PAD大鼠肌肉传入神经元的诱导电流振幅。值得注意的是,P2X3的扩增引起了ASIC3 KO大鼠的应激反应,P2X3的表达和电流反应减弱。我们的结论是,由于P2X3在肌肉传入神经元中的表达和活性降低,ASIC3 KO减弱了PAD大鼠中P2X3介导的过度压力反应。
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来源期刊
FASEB bioAdvances
FASEB bioAdvances Multiple-
CiteScore
5.40
自引率
3.70%
发文量
56
审稿时长
10 weeks
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