Manisastry Shyam M, Han Mingda, Linask Kersti K
University of South Florida-Children's Research Institute, Department of Pediatrics, St. Petersburg, Florida 33701, USA.
Dev Dyn. 2006 Aug;235(8):2160-74. doi: 10.1002/dvdy.20878.
Members of both Wnt and bone morphogenetic protein (BMP) families of signaling molecules are important in heart development. We previously demonstrated that beta-catenin, a key downstream intermediary of the canonical Wnt signaling pathway, delineates the dorsal boundary of the cardiac compartments in an anteroposterior progression. We hypothesized the progression involves canonical Wnt signaling and reflects development of the primary body axis of the embryo. A similar anteroposterior signaling wave leading to cardiac cell specification involves inductive signaling by BMP-2 synthesized by the underlying endoderm in anterior bilateral regions. Any molecule that disrupts the normal balance of Wnt and BMP concentrations within the heart field may be expected to affect early heart development. The canonical Wnt signaling step mimicked by lithium involves inactivation of glycogen synthase kinase-3beta (GSK-3beta; Klein and Melton [1996] Proc. Natl. Acad. Sci. U. S. A. 93:8455-8459). We show that lithium, Wnt-3A, and an inhibitor of GSK-3beta, SB415286, affect early heart development at the cardiac specification stages. We demonstrate that normal expression patterns of key signaling molecules as Notch-1 and Dkk-1 are altered in the anterior mesoderm within the heart fields by a one-time exposure to lithium, or by noggin inhibition of BMP, at Hamburger and Hamilton (HH) stage 3 during chick embryonic development. The severity of developmental defects is greatest with exposure to lithium or Wnt-3A at HH stage 3 and decreases at HH stage 4. Taken together, our results demonstrate that there are temporal-specific responses and differential sensitivities to lithium/Wnt-3A exposure during early heart development.
Wnt信号分子家族和骨形态发生蛋白(BMP)家族的成员在心脏发育中都很重要。我们之前证明,β-连环蛋白作为经典Wnt信号通路的关键下游中间体,以前后顺序划定了心脏腔室的背侧边界。我们推测这种顺序涉及经典Wnt信号传导,并反映了胚胎原初体轴的发育。一种类似的导致心脏细胞特化的前后信号波涉及由前侧双侧区域下方内胚层合成的BMP-2的诱导信号传导。任何破坏心脏场中Wnt和BMP浓度正常平衡的分子都可能影响心脏早期发育。锂模拟的经典Wnt信号传导步骤涉及糖原合酶激酶-3β(GSK-3β;Klein和Melton [1996]美国国家科学院院刊93:8455 - 8459)的失活。我们发现锂、Wnt-3A和GSK-3β抑制剂SB415286在心脏特化阶段影响心脏早期发育。我们证明,在鸡胚胎发育的汉伯格和汉密尔顿(HH)第3阶段,一次性暴露于锂或通过头蛋白抑制BMP,心脏场前侧中胚层中关键信号分子Notch-1和Dkk-1的正常表达模式会发生改变。在HH第3阶段暴露于锂或Wnt-3A时,发育缺陷的严重程度最大,而在HH第4阶段则降低。综上所述,我们的结果表明,在心脏早期发育过程中,对锂/Wnt-3A暴露存在时间特异性反应和不同的敏感性。