Bergsten S E, Huang T, Chatterjee S, Gavis E R
Department of Molecular Biology, Princeton University, Princeton, NJ 08544, USA.
Development. 2001 Feb;128(3):427-35. doi: 10.1242/dev.128.3.427.
Localization of nanos (nos) mRNA to the germ plasm at the posterior pole of the Drosophila embryo is essential to activate nos translation and thereby generate abdominal segments. nos RNA localization is mediated by a large cis-acting localization signal composed of multiple, partially redundant elements within the nos 3' untranslated region. We identify a protein of approximately 75 kDa (p75) that interacts specifically with the nos +2' localization signal element. We show that the function of this element can be delimited to a 41 nucleotide domain that is conserved between D. melanogaster and D. virilis, and confers near wild-type localization when present in three copies. Two small mutations within this domain eliminate both +2' element localization function and p75 binding, consistent with a role for p75 in nos RNA localization. In the intact localization signal, the +2' element collaborates with adjacent localization elements. We show that different +2' element mutations not only abolish collaboration between the +2' and adjacent +1 element but also produce long-range deleterious effects on localization signal function. Our results suggest that higher order structural interactions within the localization signal, which requires factors such as p75, are necessary for association of nos mRNA with the germ plasm.
果蝇胚胎后极的生殖质中纳米(nos)mRNA的定位对于激活nos翻译从而产生腹部体节至关重要。nos RNA定位由一个大的顺式作用定位信号介导,该信号由nos 3'非翻译区内多个部分冗余的元件组成。我们鉴定出一种约75 kDa的蛋白质(p75),它与nos +2'定位信号元件特异性相互作用。我们表明,该元件的功能可限定在一个41个核苷酸的结构域内,该结构域在黑腹果蝇和拟果蝇之间保守,当以三个拷贝存在时赋予接近野生型的定位。该结构域内的两个小突变消除了+2'元件的定位功能和p75结合,这与p75在nos RNA定位中的作用一致。在完整的定位信号中,+2'元件与相邻的定位元件协同作用。我们表明,不同的+2'元件突变不仅消除了+2'与相邻+1元件之间的协同作用,而且还对定位信号功能产生远距离有害影响。我们的结果表明,定位信号内需要诸如p75等因子的高阶结构相互作用对于nos mRNA与生殖质的结合是必要的。