Paululat A, Goubeaud A, Damm C, Knirr S, Burchard S, Renkawitz-Pohl R
Zoologie-Entwicklungsbiologie, FB Biologie, Philipps-Universität, 35032 Marburg, FRG.
J Cell Biol. 1997 Jul 28;138(2):337-48. doi: 10.1083/jcb.138.2.337.
In homozygous rolling stone embryos, the fusion of myoblasts to syncytial myotubes is diminished. Nevertheless, the visceral mesoderm, the heart mesoderm, and few somatic muscles are properly formed. Thus, we postulate a central role of rolling stone for the fusion process within the somatic mesoderm. We have cloned the rolling stone gene, and the deduced protein sequence is in accordance with a transmembrane protein, which agrees with the enrichment of Rost in the membrane fraction of Drosophila embryos. No homologous genes have been described so far. rolling stone is expressed in the embryonic nervous system and cells of the somatic mesoderm, most notable in muscle founder cells. To elucidate the function of rolling stone for myoblast fusion, we applied a knock-out strategy. The expression of an antisense rolling stone transcript specifically within the mesoderm of wild-type embryos results in fusion defects of myoblasts, proving that the rolling stone expression in the mesoderm is responsible for the rolling stone phenotype. We suggest that rolling stone is a member of a group of genes that are necessary for the fusion process during myogenesis.
在纯合的“滚石”胚胎中,成肌细胞与多核肌管的融合减少。然而,内脏中胚层、心脏中胚层和少数体肌仍能正常形成。因此,我们推测“滚石”在体中胚层的融合过程中起核心作用。我们已经克隆了“滚石”基因,推导的蛋白质序列与跨膜蛋白一致,这与果蝇胚胎膜组分中Rost的富集情况相符。目前尚未描述同源基因。“滚石”在胚胎神经系统和体中胚层细胞中表达,在肌肉起始细胞中最为显著。为了阐明“滚石”对成肌细胞融合的功能,我们采用了基因敲除策略。在野生型胚胎的中胚层中特异性表达反义“滚石”转录本会导致成肌细胞融合缺陷,证明中胚层中“滚石”的表达是造成“滚石”表型的原因。我们认为“滚石”是一组在肌生成过程中融合所必需的基因中的一员。