Okkema P G, Ha E, Haun C, Chen W, Fire A
Department of Biological Sciences, University of Illinois at Chicago, 60607, USA.
Development. 1997 Oct;124(20):3965-73. doi: 10.1242/dev.124.20.3965.
Pharyngeal muscle development in the nematode Caenorhabditis elegans appears to share similarities with cardiac muscle development in other species. We have previously described CEH-22, an NK-2 class homeodomain transcription factor similar to Drosophila tinman and vertebrate Nkx2-5, which is expressed exclusively in the pharyngeal muscles. In vitro, CEH-22 binds the enhancer from myo-2, a pharyngeal muscle-specific myosin heavy chain gene. In this paper, we examine the role CEH-22 plays in pharyngeal muscle development and gene activation by (a) ectopically expressing ceh-22 in transgenic C. elegans and (b) examining the phenotype of a ceh-22 loss-of-function mutant. These experiments indicate that CEH-22 is an activator of myo-2 expression and that it is required for normal pharyngeal muscle development. However, ceh-22 is necessary for neither formation of the pharyngeal muscles, nor for myo-2 expression. Our data suggest parallel and potentially compensating pathways contribute to pharyngeal muscle differentiation. We also examine the relationship between ceh-22 and the pharyngeal organ-specific differentiation gene pha-1. Mutations in ceh-22 and pha-1 have strongly synergistic effects on pharyngeal muscle gene expression; in addition, a pha-1 mutation enhances the lethal phenotype caused by a mutation in ceh-22. Wild-type pha-1 is not required for the onset of ceh-22 expression but it appears necessary for maintained expression of ceh-22.
线虫秀丽隐杆线虫的咽肌发育似乎与其他物种的心肌发育存在相似之处。我们之前描述过CEH-22,它是一种NK-2类同源域转录因子,与果蝇的tinman和脊椎动物的Nkx2-5相似,仅在咽肌中表达。在体外,CEH-22结合咽肌特异性肌球蛋白重链基因myo-2的增强子。在本文中,我们通过以下方式研究CEH-22在咽肌发育和基因激活中所起的作用:(a) 在转基因秀丽隐杆线虫中异位表达ceh-22,以及(b) 研究ceh-22功能丧失突变体的表型。这些实验表明,CEH-22是myo-2表达的激活剂,并且是正常咽肌发育所必需的。然而,ceh-22对于咽肌的形成和myo-2的表达都不是必需的。我们的数据表明,平行且可能具有补偿作用的途径有助于咽肌分化。我们还研究了ceh-22与咽器官特异性分化基因pha-1之间的关系。ceh-22和pha-1的突变对咽肌基因表达具有强烈的协同效应;此外,pha-1突变增强了ceh-22突变导致的致死表型。野生型pha-1对于ceh-22表达的起始不是必需的,但对于ceh-22的持续表达似乎是必需的。