Institute of Neuroscience and State Key Laboratory of Neuroscience, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, Shanghai 200031, China.
Circ Res. 2010 Apr 16;106(7):1221-32. doi: 10.1161/CIRCRESAHA.109.207670. Epub 2010 Feb 25.
Wiring vascular and neural networks are known to share common molecular signaling pathways. Activation of transient receptor potential type C channels (TRPCs) has recently been shown to underlie chemotropic guidance of neural axons. It is thus of interest to examine whether TRPCs are also involved in vascular development.
To determine the role of TRPC1 in angiogenesis in vivo during zebrafish development.
Knockdown of zebrafish trpc1 by antisense morpholino oligonucleotides severely disrupted angiogenic sprouting of intersegmental vessels (ISVs) in zebrafish larvae. This angiogenic defect was prevented by overexpression of a morpholino oligonucleotide-resistant form of zebrafish trpc1 mRNA. Cell transplantation analysis showed that this requirement of Trpc1 for ISV growth was endothelial cell-autonomous. In vivo time-lapse imaging further revealed that the angiogenic defect was attributable to impairment of filopodia extension, migration, and proliferation of ISV tip cells. Furthermore, Trpc1 acted synergistically with vascular endothelial growth factor A (Vegf-a) in controlling ISV growth, and appeared to be downstream to Vegf-a in controlling angiogenesis, as evidence by the findings that Trpc1 was required for Vegf-a-induced ectopic angiogenesis of subintestinal veins and phosphorylation of extracellular signal-regulated kinase.
These results provide the first in vivo evidence that TRPC1 is essential for angiogenesis, reminiscent of the role of TRPCs in axon guidance. It implicates that TRPC1 may represent a potential target for treating pathological angiogenesis.
众所周知,血管和神经网络的连接存在共同的分子信号通路。最近的研究表明,瞬时受体电位 C 型通道(TRPCs)的激活是神经轴突趋化性导向的基础。因此,研究 TRPCs 是否也参与血管发育具有重要意义。
在斑马鱼发育过程中,确定 TRPC1 在体内血管生成中的作用。
反义寡核苷酸对斑马鱼 trpc1 的敲低严重破坏了斑马鱼幼虫节间血管(ISVs)的血管生成发芽。斑马鱼 trpc1 的一种抗形态发生寡核苷酸形式的过表达可防止这种血管生成缺陷。细胞移植分析表明,Trpc1 对 ISV 生长的这种需求是内皮细胞自主的。体内延时成像进一步表明,血管生成缺陷归因于 ISV 尖端细胞的丝状伪足延伸、迁移和增殖受损。此外,Trpc1 与血管内皮生长因子 A(Vegf-a)协同作用控制 ISV 生长,并且似乎在控制血管生成方面位于 Vegf-a 的下游,这一点可通过以下发现证明:Trpc1 是 Vegf-a 诱导的亚肠静脉异位血管生成和细胞外信号调节激酶磷酸化所必需的。
这些结果提供了 TRPC1 对血管生成至关重要的第一个体内证据,这与 TRPCs 在轴突导向中的作用相似。这表明 TRPC1 可能代表治疗病理性血管生成的潜在靶点。