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多巴胺受体 5 在初级纤毛中有双重化学和机械感觉作用。

Dopamine receptor type 5 in the primary cilia has dual chemo- and mechano-sensory roles.

机构信息

University of Toledo, Health Science Campus, HEB 274, 3000 Arlington Ave, MS 1015, Toledo, OH 43614, USA.

出版信息

Hypertension. 2011 Aug;58(2):325-31. doi: 10.1161/HYPERTENSIONAHA.111.172080. Epub 2011 Jun 27.

Abstract

Polycystic kidney disease is characterized by cardiovascular irregularities, including hypertension. Dopamine, a circulating hormone, is implicated in essential hypertension in humans and animal models. Vascular endothelial primary cilia are known to function as mechano-sensory organelles. Although both primary cilia and dopamine receptors play important roles in vascular hypertension, their relationship has never been explored. To determine the roles of the dopaminergic system and mechano-sensory cilia, we studied the effects of dopamine on ciliary length and function in wild-type and mechano-insensitive polycystic mutant cells (Pkd1(-/)(-) and Tg737(orpk/orpk)). We show for the first time that mouse vascular endothelia exhibit dopamine receptor-type 5 (DR5), which colocalizes to primary cilia in cultured cells and mouse arteries in vivo. DR5 activation increases cilia length in arteries and endothelial cells through cofilin and actin polymerization. DR5 activation also restores cilia function in the mutant cells. In addition, silencing DR5 completely abolishes mechano-ciliary function in WT cells. We found that DR5 plays very important roles in ciliary length and function. Furthermore, the chemo-sensory function of cilia can alter the mechano-sensory function through changes in sensitivity to fluid-shear stress. We propose that ciliary DR5 has functional chemo- and mechano-sensory roles in endothelial cells.

摘要

多囊肾病的特征是心血管异常,包括高血压。多巴胺是一种循环激素,它与人类和动物模型中的原发性高血压有关。已知血管内皮初级纤毛作为机械感觉细胞器发挥作用。尽管初级纤毛和多巴胺受体在血管高血压中都起着重要作用,但它们之间的关系尚未被探索。为了确定多巴胺能系统和机械感觉纤毛的作用,我们研究了多巴胺对野生型和机械不敏感多囊突变细胞(Pkd1(-/-)和 Tg737(orpk/orpk))中纤毛长度和功能的影响。我们首次表明,小鼠血管内皮细胞表现出多巴胺受体型 5(DR5),其在培养细胞中和体内小鼠动脉中与初级纤毛共定位。DR5 激活通过丝切蛋白和肌动蛋白聚合增加动脉和内皮细胞中的纤毛长度。DR5 激活还可恢复突变细胞中的纤毛功能。此外,沉默 DR5 可完全消除 WT 细胞中的机械纤毛功能。我们发现 DR5 在纤毛长度和功能中起着非常重要的作用。此外,纤毛的化学感觉功能可以通过改变对流体切应力的敏感性来改变机械感觉功能。我们提出,内皮细胞中的纤毛 DR5 具有化学感觉和机械感觉的功能。

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本文引用的文献

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Soluble levels of cytosolic tubulin regulate ciliary length control.细胞质微管可溶性水平调节纤毛长度控制。
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