Institute for Molecular Science of Medicine, Aichi Medical University, 1-1, Karimata, Yazako, Nagakute, Aichi 480-1195, Japan.
Glycobiology. 2012 Sep;22(9):1268-77. doi: 10.1093/glycob/cws095. Epub 2012 Jun 12.
Versican (Vcan)/proteoglycan (PG)-M is a large chondroitin sulfate proteoglycan which forms a proteoglycan/hyaluronan (HA) aggregate in the extracellular matrix (ECM). We tried to generate the Vcan knockout mice by a conventional method, which resulted in mutant mice Vcan(Δ3/Δ3) whose Vcan lacks the A subdomain of the G1 domain. The Vcan knockout embryos died during the early development stage due to heart defects, but some Vcan(Δ3/Δ3) embryos survived through to the neonatal period. The hearts in Vcan(Δ3/Δ3) newborn mice showed normal cardiac looping, but had ventricular septal defects. Their atrioventricular canal (AVC) cushion was much smaller than those of wild-type (WT) embryos, and the extracellular space for cardiac jelly was narrow. The Vcan deposition in the Vcan(Δ3/Δ3) AVC cushion had decreased, whereas the HA deposition was maintained and condensed. In the tip of ventricular septa, both Vcan and HA had decreased. The cell proliferation based on the number of Ki67-positive cells had remarkably increased in both the AVC cushion and ventricular septa, compared with that of WT embryos. Vcan(Δ3/Δ3) seemed to have endocardial and mesenchymal mixed characteristics. When the ex vivo explant culture of these regions was performed on the collagen gel, hardly any migration to make sufficient space for the ECM construction was apparent. Our results suggest that the proteoglycan aggregates are necessary in both the AVC cushion and ventricular septa to fuse interventricular septa, and the Vcan A subdomain plays an essential role for the interventricular septal formation by constituting the proteoglycan aggregates.
聚糖蛋白(Vcan)/蛋白聚糖(PG)-M 是一种大型的软骨素硫酸盐蛋白聚糖,它在细胞外基质(ECM)中形成蛋白聚糖/透明质酸(HA)聚集物。我们试图通过传统方法生成 Vcan 敲除小鼠,结果产生了 Vcan(Δ3/Δ3)突变小鼠,其 Vcan 缺乏 G1 结构域的 A 亚结构域。Vcan 敲除胚胎由于心脏缺陷在早期发育阶段死亡,但一些 Vcan(Δ3/Δ3)胚胎存活到新生儿期。Vcan(Δ3/Δ3)新生小鼠的心脏显示出正常的心脏环,但存在室间隔缺损。它们的房室管(AVC)垫比野生型(WT)胚胎小得多,心脏果冻的细胞外空间狭窄。Vcan(Δ3/Δ3)AVC 垫中的 Vcan 沉积减少,而 HA 沉积保持并浓缩。在室间隔的尖端,Vcan 和 HA 都减少了。与 WT 胚胎相比,基于 Ki67 阳性细胞数量的细胞增殖在 AVC 垫和室间隔中显著增加。Vcan(Δ3/Δ3)似乎具有心内膜和间质混合特征。当对这些区域进行体外 explant 培养并在胶原凝胶上进行时,几乎没有任何迁移来为 ECM 构建提供足够的空间。我们的结果表明,蛋白聚糖聚集体对于融合室间隔在 AVC 垫和室间隔中都是必需的,并且 Vcan A 亚结构域对于通过构成蛋白聚糖聚集体形成室间隔起着至关重要的作用。