首页> 外文期刊>The Journal of Physiology >Smooth muscle cell transient receptor potential polycystin-2 (TRPP2) channels contribute to the myogenic response in cerebral arteries
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Smooth muscle cell transient receptor potential polycystin-2 (TRPP2) channels contribute to the myogenic response in cerebral arteries

机译:平滑肌细胞瞬时受体电位多囊蛋白2(TRPP2)通道有助于脑动脉的肌源性反应

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Intravascular pressure-induced vasoconstriction is a smooth muscle cell-specific mechanism that controls systemic blood pressure and organ regional blood flow. Smooth muscle cell polycystin-1 and -2 (TRPP1 and -2) proteins modulate the myogenic response in mesenteric arteries, but involvement in other vascular beds is unclear. Here, we examined TRPP2 expression, cellular distribution, cation currents (ICat), and physiological functions in smooth muscle cells of rat and human cerebral arteries. We demonstrate that TRPP2 is the major TRPP isoform expressed in cerebral artery smooth muscle cells, with message levels higher than those of TRPP1. Arterial biotinylation and immunofluorescence indicated that TRPP2 is located primarily (~88%) in the smooth muscle cell plasma membrane. RNA interference reduced TRPP2 expression by ~55% compared to control, but did not alter levels of TRPP1, TRPC1, TRPC3, TRPC6, TRPM4, ANO1/TMEM16A, or voltage-dependent Ca2+ (CaV1.2) channels, other ion channel proteins that modulate myogenic tone. Cell swelling induced by hyposmotic (250 osmol (l solution)-1) bath solution stimulated Gd3+-sensitive ICat in smooth muscle cells that were reduced by selective TRPP2 knockdown. TRPP2 knockdown did not alter myogenic tone at 20 mmHg but reduced tone between ~28 and 39% over an intravascular pressure range between 40 and 100 mmHg. In contrast, TRPP2 knockdown did not alter depolarization-induced (60 mmol l K+) vasoconstriction. In summary, we show that TRPP2 is expressed in smooth muscle cells of resistance-size cerebral arteries, resides primarily in the plasma membrane, and contributes to the myogenic response. Data also suggest that TRPP2 differentially regulates the myogenic response in cerebral and mesenteric arteries.
机译:血管内压力引起的血管收缩是一种平滑肌细胞特异性机制,可控制全身性血压和器官局部血流。平滑肌细胞polycystin-1和-2(TRPP1和-2)蛋白调节肠系膜动脉的肌源性反应,但尚不清楚是否参与其他血管床。在这里,我们检查了大鼠和人脑动脉平滑肌细胞中TRPP2的表达,细胞分布,阳离子电流(ICat)和生理功能。我们证明TRPP2是在脑动脉平滑肌细胞中表达的主要TRPP亚型,其消息水平高于TRPP1。动脉生物素化和免疫荧光表明,TRPP2主要位于平滑肌细胞质膜中(约88%)。与对照组相比,RNA干扰使TRPP2的表达降低了约55%,但并未改变TRPP1,TRPC1,TRPC3,TRPC6,TRPM4,ANO1 / TMEM16A或电压依赖性Ca2 +(CaV1.2)通道以及其他离子通道蛋白的水平调节肌原性音调。低渗性(250 osmol(l溶液)-1)浴溶液诱导的细胞肿胀刺激了平滑肌细胞中的Gd3 +敏感ICat,该细胞被选择性TRPP2抑制降低了。 TRPP2敲低不会改变20 mmHg时的肌源性音调,但在40至100 mmHg的血管内压力范围内,音调降低约28%至39%。相反,TRPP2敲低并没有改变去极化诱导的(60 mmol l K +)血管收缩。总而言之,我们显示出TRPP2在具有抗性大小的脑动脉的平滑肌细胞中表达,主要存在于质膜中,并促进了肌源性反应。数据还表明,TRPP2差异性调节脑和肠系膜动脉的肌源性反应。

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