Cook Heather A, Koppetsch Birgit S, Wu Jing, Theurkauf William E
Program in Molecular Medicine and the Program in Cell Dynamics, University of Massachusetts Medical School, 373 Plantation Street, Worcester, MA 01605, USA.
Cell. 2004 Mar 19;116(6):817-29. doi: 10.1016/s0092-8674(04)00250-8.
Polarization of the microtubule cytoskeleton during early oogenesis is required to specify the posterior of the Drosophila oocyte, which is essential for asymmetric mRNA localization during mid-oogenesis and for embryonic axis specification. The posterior determinant oskar mRNA is translationally silent until mid-oogenesis. We show that mutations in armitage and three components of the RNAi pathway disrupt oskar mRNA translational silencing, polarization of the microtubule cytoskeleton, and posterior localization of oskar mRNA. armitage encodes a homolog of SDE3, a presumptive RNA helicase involved in posttranscriptional gene silencing (RNAi) in Arabidopsis, and is required for RNAi in Drosophila ovaries. Armitage forms an asymmetric network associated with the polarized microtubule cytoskeleton and is concentrated with translationally silent oskar mRNA in the oocyte. We conclude that RNA silencing is essential for establishment of the cytoskeletal polarity that initiates embryonic axis specification and for translational control of oskar mRNA.
在早期卵子发生过程中,微管细胞骨架的极化对于确定果蝇卵母细胞的后部是必需的,这对于卵子发生中期不对称mRNA定位以及胚胎轴的确定至关重要。后部决定因子oskar mRNA在卵子发生中期之前处于翻译沉默状态。我们发现,armitage和RNAi途径的三个组分的突变会破坏oskar mRNA的翻译沉默、微管细胞骨架的极化以及oskar mRNA的后部定位。armitage编码SDE3的同源物,SDE3是一种推测参与拟南芥转录后基因沉默(RNAi)的RNA解旋酶,并且是果蝇卵巢中RNAi所必需的。Armitage形成一个与极化微管细胞骨架相关的不对称网络,并与卵母细胞中翻译沉默的oskar mRNA聚集在一起。我们得出结论,RNA沉默对于启动胚胎轴确定的细胞骨架极性的建立以及oskar mRNA的翻译控制至关重要。