Raisch Tobias, Bhandari Dipankar, Sabath Kevin, Helms Sigrun, Valkov Eugene, Weichenrieder Oliver, Izaurralde Elisa
Department of Biochemistry, Max Planck Institute for Developmental Biology, Tübingen, Germany.
Department of Biochemistry, Max Planck Institute for Developmental Biology, Tübingen, Germany
EMBO J. 2016 May 2;35(9):974-90. doi: 10.15252/embj.201593634. Epub 2016 Mar 11.
Nanos proteins repress the expression of target mRNAs by recruiting effector complexes through non-conserved N-terminal regions. In vertebrates, Nanos proteins interact with the NOT1 subunit of the CCR4-NOT effector complex through a NOT1 interacting motif (NIM), which is absent in Nanos orthologs from several invertebrate species. Therefore, it has remained unclear whether the Nanos repressive mechanism is conserved and whether it also involves direct interactions with the CCR4-NOT deadenylase complex in invertebrates. Here, we identify an effector domain (NED) that is necessary for the Drosophila melanogaster (Dm) Nanos to repress mRNA targets. The NED recruits the CCR4-NOT complex through multiple and redundant binding sites, including a central region that interacts with the NOT module, which comprises the C-terminal domains of NOT1-3. The crystal structure of the NED central region bound to the NOT module reveals an unanticipated bipartite binding interface that contacts NOT1 and NOT3 and is distinct from the NIM of vertebrate Nanos. Thus, despite the absence of sequence conservation, the N-terminal regions of Nanos proteins recruit CCR4-NOT to assemble analogous repressive complexes.
Nanos蛋白通过非保守的N端区域募集效应复合物来抑制靶mRNA的表达。在脊椎动物中,Nanos蛋白通过一个NOT1相互作用基序(NIM)与CCR4-NOT效应复合物的NOT1亚基相互作用,而在几种无脊椎动物物种的Nanos直系同源物中不存在该基序。因此,Nanos的抑制机制是否保守以及它在无脊椎动物中是否也涉及与CCR4-NOT去腺苷酸化酶复合物的直接相互作用仍不清楚。在这里,我们鉴定出一个效应结构域(NED),它是果蝇(Dm)Nanos抑制mRNA靶标所必需的。NED通过多个冗余结合位点募集CCR4-NOT复合物,包括一个与NOT模块相互作用的中央区域,该模块由NOT1-3的C端结构域组成。与NOT模块结合的NED中央区域的晶体结构揭示了一个意外的二分结合界面,该界面与NOT1和NOT3接触,并且不同于脊椎动物Nanos的NIM。因此,尽管缺乏序列保守性,Nanos蛋白的N端区域募集CCR4-NOT以组装类似的抑制复合物。