Webster Alexandre, Li Sisi, Hur Junho K, Wachsmuth Malte, Bois Justin S, Perkins Edward M, Patel Dinshaw J, Aravin Alexei A
Division of Biology and Biological Engineering, California Institute of Technology, Pasadena, CA 91125, USA.
Structural Biology Program, Memorial Sloan-Kettering Cancer Center, 1275 York Avenue, New York, NY, 10021 USA.
Mol Cell. 2015 Aug 20;59(4):564-75. doi: 10.1016/j.molcel.2015.07.017.
In Drosophila, two Piwi proteins, Aubergine (Aub) and Argonaute-3 (Ago3), localize to perinuclear "nuage" granules and use guide piRNAs to target and destroy transposable element transcripts. We find that Aub and Ago3 are recruited to nuage by two different mechanisms. Aub requires a piRNA guide for nuage recruitment, indicating that its localization depends on recognition of RNA targets. Ago3 is recruited to nuage independently of a piRNA cargo and relies on interaction with Krimper, a stable component of nuage that is able to aggregate in the absence of other nuage proteins. We show that Krimper interacts directly with Aub and Ago3 to coordinate the assembly of the ping-pong piRNA processing (4P) complex. Symmetrical dimethylated arginines are required for Aub to interact with Krimper, but they are dispensable for Ago3 to bind Krimper. Our study reveals a multi-step process responsible for the assembly and function of nuage complexes in piRNA-guided transposon repression.
在果蝇中,两种Piwi蛋白,茄子蛋白(Aub)和AGO3蛋白,定位于核周“云”颗粒,并利用引导性piRNA靶向并破坏转座元件转录本。我们发现,Aub和AGO3通过两种不同机制被招募到“云”中。Aub需要一个piRNA引导才能被招募到“云”中,这表明其定位取决于对RNA靶标的识别。AGO3被招募到“云”中独立于piRNA负载,并且依赖于与Krimper的相互作用,Krimper是“云”的一个稳定成分,在没有其他“云”蛋白的情况下能够聚集。我们表明,Krimper直接与Aub和AGO3相互作用,以协调乒乓piRNA加工(4P)复合体的组装。对称二甲基化精氨酸是Aub与Krimper相互作用所必需的,但它们对于AGO3结合Krimper是可有可无的。我们的研究揭示了一个多步骤过程,该过程负责piRNA引导的转座子抑制中“云”复合体的组装和功能。