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首页> 外文期刊>Circulation research: a journal of the American Heart Association >Orai1 and CRAC channel dependence of VEGF-activated Ca2+ entry and endothelial tube formation.
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Orai1 and CRAC channel dependence of VEGF-activated Ca2+ entry and endothelial tube formation.

机译:VEGF激活的Ca2 +进入和内皮管形成的Orai1和CRAC通道依赖性。

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RATIONALE: Orai1 and the associated calcium release-activated calcium (CRAC) channel were discovered in the immune system. Existence also in endothelial cells has been suggested, but the relevance to endothelial biology is mostly unknown. OBJECTIVE: The aim of this study was to investigate the relevance of Orai1 and CRAC channels to vascular endothelial growth factor (VEGF) and endothelial tube formation. METHODS AND RESULTS: In human umbilical vein endothelial cells, Orai1 disruption by short-interfering RNA or dominant-negative mutant Orai1 inhibited calcium release-activated (store-operated) calcium entry, VEGF-evoked calcium entry, cell migration, and in vitro tube formation. Expression of exogenous wild-type Orai1 rescued the tube formation. VEGF receptor-2 and Orai1 partially colocalized. Orai1 disruption also inhibited calcium entry and tube formation in endothelial progenitor cells from human blood. A known blocker of the immune cell CRAC channel (3-fluoropyridine-4-carboxylic acid (2',5'-dimethoxybiphenyl-4-yl)amide) was a strong blocker of store-operated calcium entry in endothelial cells and inhibited calcium entry evoked by VEGF in 3 types of human endothelial cell. The compound lacked effect on VEGF-evoked calcium-release, STIM1 clustering, and 2 types of transient receptor potential channels, TRPC6 and TRPV4. Without effect on cell viability, the compound inhibited human endothelial cell migration and tube formation in vitro and suppressed angiogenesis in vivo in the chick chorioallantoic membrane. The compound showed 100-fold greater potency for endothelial compared with immune cell calcium entry. CONCLUSIONS: The data suggest positive roles for Orai1 and CRAC channels in VEGF-evoked calcium entry and new opportunity for chemical modulation of angiogenesis.
机译:理由:在免疫系统中发现了Orai1和相关的钙释放激活钙(CRAC)通道。已经提出了内皮细胞中也存在,但是与内皮生物学的相关性几乎是未知的。目的:本研究旨在探讨Orai1和CRAC通道与血管内皮生长因子(VEGF)和内皮管形成的相关性。方法和结果:在人脐静脉内皮细胞中,短干扰RNA或显性阴性突变体Orai1对Orai1的破坏会抑制钙释放激活的(贮存操作的)钙进入,VEGF诱发的钙进入,细胞迁移和体外管编队。外源野生型Orai1的表达挽救了管的形成。 VEGF受体2和Orai1部分共定位。 Orai1破坏还抑制了人血内皮祖细胞中的钙进入和管形成。免疫细胞CRAC通道的已知阻滞剂(3-氟吡啶-4-羧酸(2',5'-二甲氧基联苯-4-基)酰胺)是内皮细胞中钙存储的钙离子通道的强力阻滞剂,可抑制钙离子通道VEGF在3种类型的人内皮细胞中引起的。该化合物对VEGF引起的钙释放,STIM1聚类以及两种类型的瞬时受体电位通道TRPC6和TRPV4没有作用。在不影响细胞活力的情况下,该化合物在体外抑制人内皮细胞迁移和管形成,并在鸡绒膜尿囊膜中抑制体内血管生成。与进入免疫细胞的钙相比,该化合物对内皮的效力提高了100倍。结论:数据表明Orai1和CRAC通道在VEGF引起的钙进入中具有积极作用,并为血管新生的化学调节提供了新的机会。

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