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Increased catecholamine secretion contributes to hypertension in TRPM4-deficient mice

机译:儿茶酚胺分泌增加导致TRPM4缺陷小鼠高血压

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摘要

Hypertension is an underlying risk factor for cardiovascular disease. Despite this, its pathogenesis remains unknown in most cases. Recently, the transient receptor potential (TRP) channel family was associated with the development of several cardiovascular diseases linked to hypertension. The melastatin TRP channels TRPM4 and TRPM5 have distinct properties within the TRP channel family: they form nonselective cation channels activated by intracellular calcium ions. Here we report the identification of TRPM4 proteins in endothelial cells, heart, kidney, and chromaffin cells from the adrenal gland, suggesting that they have a role in the cardiovascular system. Consistent with this hypothesis, Trpm4 gene deletion in mice altered long-term regulation of blood pressure toward hypertensive levels. No changes in locomotor activity, renin-angiotensin system function, electrolyte and fluid balance, vascular contractility, and cardiac contractility under basal conditions were observed. By contrast, inhibition of ganglionic transmission with either hexamethonium or prazosin abolished the difference in blood pressure between Trpm4–/– and wild-type mice. Strikingly, plasma epinephrine concentration as well as urinary excretion of catecholamine metabolites were substantially elevated in Trpm4–/– mice. In freshly isolated chromaffin cells, lack of TRPM4 was shown to cause markedly more acetylcholine-induced exocytotic release events, while neither cytosolic calcium concentration, size, nor density of vesicles were different. We therefore conclude that TRPM4 proteins limit catecholamine release from chromaffin cells and that this contributes to increased sympathetic tone and hypertension.
机译:高血压是心血管疾病的潜在危险因素。尽管如此,在大多数情况下其发病机理仍然未知。最近,瞬时受体电位(TRP)通道家族与几种与高血压有关的心血管疾病的发展有关。褪黑素TRP通道TRPM4和TRPM5在TRP通道家族中具有不同的属性:它们形成被细胞内钙离子激活的非选择性阳离子通道。在这里,我们报告了肾上腺内皮细胞,心脏,肾脏和嗜铬细胞中TRPM4蛋白的鉴定,表明它们在心血管系统中具有作用。与该假设一致,小鼠中的Trpm4基因缺失改变了血压向高血压水平的长期调节。在基础条件下,未观察到运动功能,肾素-血管紧张素系统功能,电解质和液体平衡,血管收缩力和心脏收缩力的变化。相比之下,用六甲铵或哌唑嗪抑制神经节传递可消除Trpm4 – / – 与野生型小鼠之间的血压差异。令人惊讶的是,Trpm4 – / – 小鼠的血浆肾上腺素浓度以及儿茶酚胺代谢产物的尿排泄量显着升高。在新鲜分离的嗜铬细胞中,缺乏TRPM4会明显引起更多的乙酰胆碱诱导的胞吐释放事件,而胞质钙的浓度,大小或囊泡密度均未改变。因此,我们得出结论,TRPM4蛋白限制了儿茶酚胺从嗜铬细胞的释放,这有助于增加交感神经张力和高血压。

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