Li Ding, Sinha Tanvi, Ajima Rieko, Seo Hwa-Seon, Yamaguchi Terry P, Wang Jianbo
Department of Cell, Developmental and Integrative Biology, University of Alabama at Birmingham, Birmingham, AL 35294, USA.
Mammalian Development Laboratory, National Institute of Genetics, Yata 1111, Mishima 411-8540, Japan.
Dev Biol. 2016 Apr 1;412(1):18-31. doi: 10.1016/j.ydbio.2016.02.017. Epub 2016 Feb 23.
Wnt5a, a non-canonical Wnt ligand critical for outflow tract (OFT) morphogenesis, is expressed specifically in second heart field (SHF) progenitors in the caudal splanchnic mesoderm (SpM) near the inflow tract (IFT). Using a conditional Wnt5a gain of function (GOF) allele and Islet1-Cre, we broadly over-expressed Wnt5a throughout the SHF lineage, including the entire SpM between the IFT and OFT. Wnt5a over-expression in Wnt5a null mutants can rescue the cell polarity and actin polymerization defects as well as severe SpM shortening, but fails to rescue OFT shortening. Moreover, Wnt5a over-expression in wild-type background is able to cause OFT shortening. We find that Wnt5a over-expression does not perturb SHF cell proliferation, apoptosis or differentiation, but affects the deployment of SHF cells by causing them to accumulate into a large bulge at the rostral SpM and fail to enter the OFT. Our immunostaining analyses suggest an inverse correlation between cell cohesion and Wnt5a level in the wild-type SpM. Ectopic Wnt5a expression in the rostral SpM of Wn5a-GOF mutants diminishes the upregulation of adherens junction; whereas loss of Wnt5a in Wnt5a null mutants causes premature increase in adherens junction level in the caudal SpM. Over-expression of mouse Wnt5a in Xenopus animal cap cells also reduces C-cadherin distribution on the plasma membrane without affecting its overall protein level, suggesting that Wnt5a may play an evolutionarily conserved role in controlling the cell surface level of cadherin to modulate cell cohesion during tissue morphogenesis. Collectively, our data indicate that restricted expression of Wnt5a in the caudal SpM is essential for normal OFT morphogenesis, and uncover a novel function of spatially regulated cell cohesion by Wnt5a in driving the deployment of SHF cells from the SpM into the OFT.
Wnt5a是一种对流出道(OFT)形态发生至关重要的非经典Wnt配体,在流入道(IFT)附近尾侧脏壁中胚层(SpM)的第二心脏场(SHF)祖细胞中特异性表达。利用条件性Wnt5a功能获得(GOF)等位基因和Islet1-Cre,我们在整个SHF谱系中广泛过表达Wnt5a,包括IFT和OFT之间的整个SpM。在Wnt5a基因敲除突变体中过表达Wnt5a可以挽救细胞极性和肌动蛋白聚合缺陷以及严重的SpM缩短,但不能挽救OFT缩短。此外,在野生型背景下过表达Wnt5a能够导致OFT缩短。我们发现Wnt5a过表达不会干扰SHF细胞增殖、凋亡或分化,但会影响SHF细胞的部署,使它们在头侧SpM积聚成一个大的凸起,无法进入OFT。我们的免疫染色分析表明,在野生型SpM中,细胞黏附与Wnt5a水平呈负相关。在Wn5a-GOF突变体的头侧SpM中异位表达Wnt5a会减少黏附连接的上调;而在Wnt5a基因敲除突变体中缺失Wnt5a会导致尾侧SpM中黏附连接水平过早增加。在非洲爪蟾动物帽细胞中过表达小鼠Wnt5a也会减少C-钙黏蛋白在质膜上的分布,而不影响其总体蛋白水平,这表明Wnt5a可能在控制钙黏蛋白的细胞表面水平以调节组织形态发生过程中的细胞黏附中发挥进化保守作用。总的来说,我们的数据表明,Wnt5a在尾侧SpM中的限制性表达对于正常的OFT形态发生至关重要,并揭示了Wnt5a在驱动SHF细胞从SpM向OFT部署过程中通过空间调节细胞黏附的新功能。