Wang Da-Tao, Chu Wen-Hui, Sun Hong-Mei, Ba Heng-Xing, Li Chun-Yi
Institute of Special Wild Economic Animals and Plants, Chinese Academy of Agricultural Sciences, Changchun, People's Republic of China.
State Kay Laboratory for Molecular Biology of Special Economic Animals, Changchun, People's Republic of China.
J Histochem Cytochem. 2017 Oct;65(10):579-591. doi: 10.1369/0022155417727263. Epub 2017 Aug 23.
Annual antler renewal is a stem cell-based epimorphic process driven by antler stem cells (ASCs) resident in antlerogenic periosteum (AP). Antlerogenic periosteal cells express a high level of S100A4, a metastasis-associated protein, which intrigued us to explore what role S100A4 could play in antler regeneration. The present study set out to investigate expression and effects of S100A4 in the ASCs and their progeny. The results showed that not only did cells from the AP express a high level of S100A4, but also the pedicle periosteum and the antler growth center. In the antler growth center, we found S100A4-positive cells were specifically located in blood vessel walls and in vascularized areas. In vitro, recombinant deer S100A4 protein stimulated the proliferation of the AP cells, promoted proliferation, migration and tube formation of human vascular endothelial cells, and enhanced migration of Hela cells, but not AP cells. These findings demonstrated that S100A4 in the ASCs may play a significant role in stimulating angiogenesis, proliferation, but not motility, of ASCs. Deer antlers offer a unique model to explore how rapid cell proliferation with a high level of S100A4 expression is elegantly regulated without becoming cancerous.
每年鹿角的更新是一个基于干细胞的再生过程,由位于生茸骨膜(AP)中的鹿角干细胞(ASCs)驱动。生茸骨膜细胞表达高水平的S100A4,一种与转移相关的蛋白质,这激发我们去探索S100A4在鹿角再生中可能发挥的作用。本研究旨在调查S100A4在ASCs及其子代中的表达和作用。结果表明,不仅来自AP的细胞表达高水平的S100A4,而且鹿茸蒂骨膜和鹿角生长中心也表达。在鹿角生长中心,我们发现S100A4阳性细胞特异性地位于血管壁和血管化区域。在体外,重组鹿S100A4蛋白刺激AP细胞的增殖,促进人血管内皮细胞的增殖、迁移和管形成,并增强Hela细胞的迁移,但不增强AP细胞的迁移。这些发现表明,ASCs中的S100A4可能在刺激ASCs的血管生成、增殖而非运动性方面发挥重要作用。鹿茸提供了一个独特的模型,以探索在高水平S100A4表达情况下,快速的细胞增殖如何在不发生癌变的情况下得到精确调控。