Mount Sinai School of Medicine, Department of Molecular, Cell and Developmental Biology (currently Developmental and Regenerative Biology), Box 1020, Mount Sinai School of Medicine, New York, NY 10029, USA.
Development. 2010 Sep;137(18):3107-17. doi: 10.1242/dev.046573.
HLH54F, the Drosophila ortholog of the vertebrate basic helix-loop-helix domain-encoding genes capsulin and musculin, is expressed in the founder cells and developing muscle fibers of the longitudinal midgut muscles. These cells descend from the posterior-most portion of the mesoderm, termed the caudal visceral mesoderm (CVM), and migrate onto the trunk visceral mesoderm prior to undergoing myoblast fusion and muscle fiber formation. We show that HLH54F expression in the CVM is regulated by a combination of terminal patterning genes and snail. We generated HLH54F mutations and show that this gene is crucial for the specification, migration and survival of the CVM cells and the longitudinal midgut muscle founders. HLH54F mutant embryos, larvae, and adults lack all longitudinal midgut muscles, which causes defects in gut morphology and integrity. The function of HLH54F as a direct activator of gene expression is exemplified by our analysis of a CVM-specific enhancer from the Dorsocross locus, which requires combined inputs from HLH54F and Biniou in a feed-forward fashion. We conclude that HLH54F is the earliest specific regulator of CVM development and that it plays a pivotal role in all major aspects of development and differentiation of this largely twist-independent population of mesodermal cells.
HLH54F 是果蝇中与脊椎动物基本螺旋-环-螺旋结构域编码基因 capsulin 和 musculin 同源的基因,在纵向中肠肌肉的创始细胞和正在发育的肌肉纤维中表达。这些细胞来源于中胚层的最后部分,称为尾内脏中胚层(CVM),并在经历成肌细胞融合和肌肉纤维形成之前迁移到躯干内脏中胚层上。我们表明,HLH54F 在 CVM 中的表达受终端模式基因和 snail 的组合调控。我们生成了 HLH54F 突变体,并表明该基因对于 CVM 细胞和纵向中肠肌肉创始细胞的特化、迁移和存活至关重要。HLH54F 突变体胚胎、幼虫和成虫缺乏所有的纵向中肠肌肉,这导致肠道形态和完整性的缺陷。HLH54F 作为基因表达直接激活因子的功能通过对 Dorsocross 基因座中一个 CVM 特异性增强子的分析得到例证,该增强子需要 HLH54F 和 Biniou 的组合输入以级联方式发挥作用。我们得出结论,HLH54F 是 CVM 发育的最早特异性调节因子,它在这个主要依赖于 twist 的中胚层细胞群的发育和分化的所有主要方面都发挥着关键作用。