Gavis E R, Curtis D, Lehmann R
Whitehead Institute for Biomedical Research, Massachusetts Institute of Technology, Cambridge 02142, USA.
Dev Biol. 1996 May 25;176(1):36-50. doi: 10.1006/dbio.1996.9996.
The generation of anterior-posterior polarity during development in Drosophila requires the localization of determinant molecules to the anterior and posterior poles of the embryo. Localization of the maternally synthesized nanos RNA to the posterior pole of the embryo is essential to provide a source for a gradient of Nanos protein that directs abdomen formation. nanos RNA localization occurs during oogenesis and requires the function of at least nine genes. cis-acting sequences that direct nanos RNA localization lie within the nanos 3'UTR. In this analysis, we have used nanos 3'UTR deletion mutants to define the localization signal more precisely. Our results indicate that the nanos RNA localization signal is large and complex and that targeting of nanos RNA may be achieved by the combined effects of multiple, partially independent sequences. This idea is supported by evolutionary conservation, both in sequence and in function, of the nanos 3'UTRs of Drosophila melanogaster and Drosophila virilis.
果蝇发育过程中前后极性的产生需要决定分子定位于胚胎的前后极。母体合成的nanos RNA定位于胚胎后极对于提供指导腹部形成的Nanos蛋白梯度来源至关重要。nanos RNA定位发生在卵子发生过程中,并且需要至少九个基因的功能。指导nanos RNA定位的顺式作用序列位于nanos 3'UTR内。在本分析中,我们使用nanos 3'UTR缺失突变体来更精确地定义定位信号。我们的结果表明,nanos RNA定位信号大且复杂,并且nanos RNA的靶向可能是通过多个部分独立序列的联合作用实现的。黑腹果蝇和粗壮果蝇的nanos 3'UTR在序列和功能上的进化保守性支持了这一观点。