Angiogenesis. 2014 Jan;17(1):77-91. doi: 10.1007/s10456-013-9379-0.
Arterial and venous specification is critical for establishing and maintaining a functioning vascular system, and defects in key arteriovenous signaling pathways including VEGF (vascular endothelial growth factor) lead to congenital arteriopathies. The activities of VEGF, are in part controlled by heparan sulfate (HS) proteoglycans, significant components of the endothelial glycocalyx. The level of 6-O sulfation on HS polysaccharide chains, that mediate the interaction between HS and VEGFA, is edited at the cell surface by the enzyme SULF1. We investigated the role of sulf1 in vascular development. In zebrafish sulf1 is expressed in the head and tail vasculature, corresponding spatially and temporally with vascular development. Targeted knockdown of sulf1 by antisense morpholinos resulted in severe vascular patterning and maturation defects. 93 % of sulf1 morphants show dysmorphogenesis in arterial development leading to occlusion of the distal aorta and lack of axial and cranial circulation. Co-injection of vegfa165 mRNA rescued circulatory defects. While the genes affecting haematopoiesis are unchanged, expression of several arterial markers downstream of VegfA signalling such as notch and ephrinB2 are severely reduced in the dorsal aorta, with a concomitant increase in expression of the venous markers flt4 in the dorsal aorta of the morphants. Furthermore, in vitro, lack of SULF1 expression downregulates VEGFA-mediated arterial marker expression, confirming that Sulf1 mediates arterial specification by regulating VegfA165 activity. This study provides the first in vivo evidence for the integral role of the endothelial glycocalyx in specifying arterial-venous identity, vascular patterning and arterial integrity, and will help to better understand congenital arteriopathies.
动脉和静脉的特化对于建立和维持功能正常的脉管系统至关重要,而包括 VEGF(血管内皮生长因子)在内的关键动静脉信号通路的缺陷会导致先天性血管病变。VEGF 的活性部分受到硫酸乙酰肝素(HS)蛋白聚糖的控制,HS 蛋白聚糖是内皮糖萼的重要组成部分。介导 HS 与 VEGFA 相互作用的 HS 多糖链 6-O 硫酸化水平在细胞表面由酶 SULF1 编辑。我们研究了 sulf1 在血管发育中的作用。在斑马鱼中,sulf1 在头部和尾部脉管系统中表达,与血管发育在空间和时间上相对应。通过反义莫洛尼寡核苷酸靶向敲低 sulf1 会导致严重的血管形态发生和成熟缺陷。93%的 sulf1 形态发生缺陷者表现出动脉发育异常,导致远端主动脉闭塞,缺乏轴向和颅循环。共注射 vegfa165 mRNA 可挽救循环缺陷。虽然影响造血的基因没有改变,但 VegfA 信号下游的几个动脉标记物,如 notch 和 ephrinB2 的表达在背主动脉中严重减少,同时在形态发生缺陷者的背主动脉中静脉标记物 flt4 的表达增加。此外,在体外,缺乏 SULF1 表达会下调 VEGFA 介导的动脉标记物表达,证实 Sulf1 通过调节 VegfA165 活性来介导动脉特化。这项研究提供了内皮糖萼在指定动静脉身份、血管形态发生和动脉完整性方面的完整作用的第一个体内证据,并将有助于更好地理解先天性血管病变。