Correia Elizabeth, Conceição Natércia, Cancela M Leonor, Belo José A
Department of Biomedical Sciences and Medicine, University of Algarve, Faro, Portugal.
Int J Dev Biol. 2016;60(1-3):71-6. doi: 10.1387/ijdb.150365jb.
MGP (Matrix Gla Protein) is an extracellular matrix vitamin K dependent protein previously identified as a physiological inhibitor of calcification and shown to be well conserved among vertebrates during evolution. MGP is involved in other mechanisms such as TGF-β and BMP activity, and a proposed modulator of cell-matrix interactions. MGP is expressed early in vertebrate development although its role has not been clarified. Previous work in the chicken embryo found MGP localization predominantly in the aorta and aortic valve base, but no data is available earlier in development. Here we examined MGP expression pattern using whole-mount in situ hybridization and histological sectioning during the initial stages of chick development. MGP was first detected at HH10 in the head and in the forming dorsal aorta. At the moment of the onset of blood circulation, MGP was expressed additionally in the venous plexus which will remodel into the vitelline arteries. By E2.25, it is clear that the vitelline arteries are MGP positive. MGP expression progresses centrifugally throughout the area vasculosa of the yolk sac. Between stages HH17 and HH19 MGP is seen in the dorsal aorta, heart, notochord, nephric duct, roof plate, vitelline arteries and in the yolk sac, beneath main arterial branches and in the vicinity of several vessels and venules. MGP expression persists in these areas at least until E4.5. These data suggest that MGP expression could be associated with cell migration and differentiation and to the onset of angiogenesis in the developing chick embryo. This data has biomedical relevance by pointing to the potential use of chick embryo explants to study molecules involved in artery calcification.
基质Gla蛋白(MGP)是一种细胞外基质维生素K依赖性蛋白,先前被鉴定为钙化的生理抑制剂,并且在进化过程中在脊椎动物中高度保守。MGP参与其他机制,如转化生长因子-β(TGF-β)和骨形态发生蛋白(BMP)活性,并且是一种细胞-基质相互作用的假定调节剂。MGP在脊椎动物发育早期表达,但其作用尚未阐明。先前在鸡胚中的研究发现MGP主要定位于主动脉和主动脉瓣基部,但在发育早期没有相关数据。在这里,我们使用整装原位杂交和组织切片技术,研究了鸡胚发育初始阶段MGP的表达模式。MGP最早在HH10期在头部和正在形成的背主动脉中被检测到。在血液循环开始时,MGP还在将重塑为卵黄动脉的静脉丛中表达。到E2.25时,很明显卵黄动脉是MGP阳性的。MGP表达在卵黄囊的血管区域离心式进展。在HH17和HH19期之间,在背主动脉、心脏、脊索、肾管、顶板、卵黄动脉以及卵黄囊中,在主要动脉分支下方以及几条血管和小静脉附近可见MGP。MGP在这些区域的表达至少持续到E4.5。这些数据表明,MGP表达可能与发育中的鸡胚中的细胞迁移、分化以及血管生成的起始有关。这些数据具有生物医学相关性,指出了利用鸡胚外植体研究参与动脉钙化分子的潜在用途。