Curtis D, Apfeld J, Lehmann R
Whitehead Institute for Biomedical Research, Massachusetts Institute of Technology, Howard Hughes Medical Institute, Cambridge 02142, USA.
Development. 1995 Jun;121(6):1899-910. doi: 10.1242/dev.121.6.1899.
In Drosophila melanogaster, nanos functions as a localized determinant of posterior pattern. Nanos RNA is localized to the posterior pole of the maturing egg cell and encodes a protein that emanates from this localized source. Nanos acts as a translational repressor and thereby establishes a gradient of the morphogen Hunchback. Here we show that the mechanism by which nanos acts in Drosophila is a common developmental strategy in Dipteran insects. We used cytoplasmic transplantation assays to demonstrate that nanos activity is found in posterior poleplasm of five diverse Dipteran species. Genes homologous to nanos were identified from Drosophila virilis, the housefly Musca domestica, and the midge Chironomus samoensis. These genes encode RNAs that are each localized, like nanos, to the embryonic posterior pole. Most importantly, we demonstrate that these homologues can functionally substitute for nanos in D. melanogaster. These results suggest that nanos acts in a similar pathway for axis determination in other insects. Comparison of the Nanos sequences reveals only 19% overall protein sequence similarity; high conservation of a novel zinc finger near the carboxy terminus of the protein defines a region critical for nanos gene function.
在黑腹果蝇中,纳米蛋白作为后部模式的定位决定因子发挥作用。纳米蛋白RNA定位于成熟卵细胞的后极,并编码一种从该定位来源产生的蛋白质。纳米蛋白作为一种翻译抑制因子,从而建立形态发生素驼背蛋白的梯度。我们在此表明,纳米蛋白在果蝇中发挥作用的机制是双翅目昆虫中一种常见的发育策略。我们使用细胞质移植试验证明,在五种不同双翅目物种的后极质中发现了纳米蛋白活性。从粗壮果蝇、家蝇和萨摩斯摇蚊中鉴定出了与纳米蛋白同源的基因。这些基因编码的RNA,如同纳米蛋白RNA一样,各自定位于胚胎后极。最重要的是,我们证明这些同源物在功能上可以替代黑腹果蝇中的纳米蛋白。这些结果表明,纳米蛋白在其他昆虫的轴决定过程中以类似途径发挥作用。纳米蛋白序列的比较显示,总体蛋白质序列相似性仅为19%;蛋白质羧基末端附近一个新的锌指结构的高度保守性定义了一个对纳米蛋白基因功能至关重要的区域。