Park M, Wu X, Golden K, Axelrod J D, Bodmer R
Department of Biology, University of Michigan, Ann Arbor, Michigan, 48109-1048, USA.
Dev Biol. 1996 Jul 10;177(1):104-16. doi: 10.1006/dbio.1996.0149.
Heart development in both vertebrates and Drosophila is initiated by bilaterally symmetrical primordia that may be of equivalent embryological origin: the anterior lateral plate mesoderm in vertebrates and the dorsal-most mesoderm in arthropods. These mesodermal progenitors then merge into a heart tube at the ventral midline (vertebrates) or the dorsal midline (Drosophila). These observations suggest that there may be similarities between vertebrate and invertebrate heart development. The homeobox gene, tinman, is required for heart as well as visceral mesoderm formation in Drosophila, and at least one of several vertebrate genes with similarities in protein sequence and cardiac expression to tinman is crucial for heart development in vertebrates. Inductive signals are also required for Drosophila heart development: The secreted gene product of wingless (wg) is critical for heart development during a time period distinct from its function in segmentation and neurogenesis. Here, we show that wg is epistatic to hedgehog (hh), another secreted segmentation gene product, in its requirement for heart formation. We also provide evidence show that downstream of wg in the signal transduction cascade, dishevelled (dsh, a pioneer protein) and armadillo (arm, beta-catenin homolog) are mediating the cardiogenic Wg signal. In particular, overexpression of dsh can restore heart formation in the absence of wg function. We discuss the possibility that Wg signaling is part of a combinatorial mechanism to specify the cardiac mesoderm.
脊椎动物和果蝇的心脏发育均由双侧对称的原基起始,这些原基可能具有相同的胚胎学起源:脊椎动物中的前侧板中胚层和节肢动物中最靠背部的中胚层。然后,这些中胚层祖细胞在腹中线(脊椎动物)或背中线(果蝇)处融合形成心脏管。这些观察结果表明,脊椎动物和无脊椎动物的心脏发育可能存在相似之处。同源异型框基因tinman对于果蝇心脏以及内脏中胚层的形成是必需的,并且在蛋白质序列和心脏表达方面与tinman具有相似性的几个脊椎动物基因中,至少有一个对于脊椎动物的心脏发育至关重要。果蝇的心脏发育也需要诱导信号:无翅(wg)分泌的基因产物在与它在体节形成和神经发生中的功能不同的时间段内,对心脏发育至关重要。在这里,我们表明,在心脏形成的需求方面,wg对另一种分泌的体节基因产物刺猬(hh)具有上位性。我们还提供证据表明,在信号转导级联中wg的下游,散乱蛋白(dsh,一种先驱蛋白)和犰狳蛋白(arm,β-连环蛋白同源物)正在介导心脏发生的Wg信号。特别是,在没有wg功能的情况下,dsh的过表达可以恢复心脏形成。我们讨论了Wg信号是指定心脏中胚层的组合机制的一部分的可能性。