Knirr S, Breuer S, Paululat A, Renkawitz-Pohl R
Fachbereich Biologie, Zoologie-Entwicklungsbiologie, Philipps-University Marburg, Germany.
Mech Dev. 1997 Sep;67(1):69-81. doi: 10.1016/s0925-4773(97)00109-3.
Not enough muscles (nem) mutants of Drosophila reveal defects in the development of embryonic muscles, a subset of pericardial cells, the CNS and derivatives of the PNS (Burchard, S., Paululat, A., Hinz, U. and Renkawitz-Pohl, R. (1995) The mutant not enough muscles (nem) reveals reduction of the Drosophila embryonic muscle pattern. J. Cell. Sci. 108, 1443-1454). The molecular analysis of the nem locus shows a complex genomic structure. One transcription unit was identified as inscuteable (insc). Within the first intron of insc we find another independent gene, skittles (sktl), which is not affected in nem mutants. insc transcripts are localised apically in neuroblasts and may prefigure the localisation of the protein. The skittles mRNA is ubiquitously distributed during early embryogenesis due to maternal contribution. Later, some enrichment of sktl is observed in the nervous system and the mesoderm. The muscle phenotype shows deletions as well as duplication of specific muscles which is reflected in a change of even-skipped (eve) and Krüppel (Kr) expressing cells. Our data suggest a role for insc in the specification process of a subset of muscle progenitors/founders. Furthermore, in insc mutants the eve expressing pericardial cells of the developing heart are significantly reduced in numbers.
果蝇的“肌肉不足”(nem)突变体揭示了胚胎肌肉、心包细胞亚群、中枢神经系统和外周神经系统衍生物发育中的缺陷(Burchard, S., Paululat, A., Hinz, U. 和 Renkawitz-Pohl, R. (1995) 突变体“肌肉不足”(nem)揭示果蝇胚胎肌肉模式的减少。《细胞科学杂志》108, 1443 - 1454)。对nem基因座的分子分析显示其基因组结构复杂。一个转录单位被鉴定为无定向(inscuteable,insc)。在insc的第一个内含子中,我们发现了另一个独立基因,糖果(skittles,sktl),它在nem突变体中不受影响。insc转录本定位于神经母细胞的顶端,可能预示着蛋白质的定位。由于母体的贡献,糖果mRNA在胚胎早期发育过程中普遍分布。后来,在神经系统和中胚层中观察到sktl有一些富集。肌肉表型显示特定肌肉有缺失以及重复,这反映在表达偶数跳动(even-skipped,eve)和克虏伯(Krüppel,Kr)的细胞变化上。我们的数据表明insc在一部分肌肉祖细胞/奠基细胞的特化过程中起作用。此外,在insc突变体中,发育中心脏中表达eve的心包细胞数量显著减少。