Esguerra Camila V, Nelles Luc, Vermeire Liesbeth, Ibrahimi Abdelilah, Crawford Alexander D, Derua Rita, Janssens Els, Waelkens Etienne, Carmeliet Peter, Collen Desiré, Huylebroeck Danny
Center for Transgene Technology and Gene Therapy, VIB, Herestraat 49, B-3000 Leuven, Belgium.
Development. 2007 Dec;134(24):4381-93. doi: 10.1242/dev.000026.
During vertebrate development, signaling by the TGFbeta ligand Nodal is critical for mesoderm formation, correct positioning of the anterior-posterior axis, normal anterior and midline patterning, and left-right asymmetric development of the heart and viscera. Stimulation of Alk4/EGF-CFC receptor complexes by Nodal activates Smad2/3, leading to left-sided expression of target genes that promote asymmetric placement of certain internal organs. We identified Ttrap as a novel Alk4- and Smad3-interacting protein that controls gastrulation movements and left-right axis determination in zebrafish. Morpholino-mediated Ttrap knockdown increases Smad3 activity, leading to ectopic expression of snail1a and apparent repression of e-cadherin, thereby perturbing cell movements during convergent extension, epiboly and node formation. Thus, although the role of Smad proteins in mediating Nodal signaling is well-documented, the functional characterization of Ttrap provides insight into a novel Smad partner that plays an essential role in the fine-tuning of this signal transduction cascade.
在脊椎动物发育过程中,转化生长因子β(TGFβ)配体Nodal发出的信号对于中胚层形成、前后轴的正确定位、正常的前部和中线模式以及心脏和内脏的左右不对称发育至关重要。Nodal对Alk4/表皮生长因子CFC(EGF-CFC)受体复合物的刺激会激活Smad2/3,导致促进某些内部器官不对称定位的靶基因在左侧表达。我们将Ttrap鉴定为一种新型的与Alk4和Smad3相互作用的蛋白质,它在斑马鱼中控制原肠胚形成运动和左右轴的确定。吗啉代介导的Ttrap敲低会增加Smad3的活性,导致snail1a的异位表达并明显抑制E-钙黏蛋白,从而在汇聚延伸、外包和节点形成过程中干扰细胞运动。因此,尽管Smad蛋白在介导Nodal信号传导中的作用已得到充分证明,但Ttrap的功能特性为一种新型Smad伴侣提供了深入了解,该伴侣在微调此信号转导级联反应中起着至关重要的作用。