Biology of Non-coding RNA Group, Institute of Molecular Biology, Mainz, Germany.
International PhD Programme on Gene Regulation, Epigenetics & Genome Stability, Mainz, Germany.
EMBO J. 2023 Dec 11;42(24):e114072. doi: 10.15252/embj.2023114072. Epub 2023 Nov 20.
Piwi-interacting RNAs (piRNAs) direct PIWI proteins to transposons to silence them, thereby preserving genome integrity and fertility. The piRNA population can be expanded in the ping-pong amplification loop. Within this process, piRNA-associated PIWI proteins (piRISC) enter a membraneless organelle called nuage to cleave their target RNA, which is stimulated by Gtsf proteins. The resulting cleavage product gets loaded into an empty PIWI protein to form a new piRISC complex. However, for piRNA amplification to occur, the new RNA substrates, Gtsf-piRISC, and empty PIWI proteins have to be in physical proximity. In this study, we show that in silkworm cells, the Gtsf1 homolog BmGtsf1L binds to piRNA-loaded BmAgo3 and localizes to granules positive for BmAgo3 and BmVreteno. Biochemical assays further revealed that conserved residues within the unstructured tail of BmGtsf1L directly interact with BmVreteno. Using a combination of AlphaFold modeling, atomistic molecular dynamics simulations, and in vitro assays, we identified a novel binding interface on the BmVreteno-eTudor domain, which is required for BmGtsf1L binding. Our study reveals that a single eTudor domain within BmVreteno provides two binding interfaces and thereby interconnects piRNA-loaded BmAgo3 and BmGtsf1L.
Piwi 相互作用 RNA(piRNA)指导 PIWI 蛋白靶向转座子以使其沉默,从而维持基因组完整性和生育能力。piRNA 群体可以在乒乓扩增环中扩展。在这个过程中,piRNA 相关的 PIWI 蛋白(piRISC)进入一种无膜细胞器称为 nuage,以切割其靶 RNA,这一过程受到 Gtsf 蛋白的刺激。所得的切割产物被加载到空 PIWI 蛋白中以形成新的 piRISC 复合物。然而,为了发生 piRNA 扩增,新的 RNA 底物、Gtsf-piRISC 和空 PIWI 蛋白必须物理上接近。在这项研究中,我们表明在蚕细胞中,Gtsf1 同源物 BmGtsf1L 与负载 piRNA 的 BmAgo3 结合,并定位在颗粒阳性的 BmAgo3 和 BmVreteno 上。生化分析进一步表明,BmGtsf1L 无结构尾部的保守残基直接与 BmVreteno 相互作用。使用 AlphaFold 建模、原子分子动力学模拟和体外测定的组合,我们鉴定了 BmVreteno-eTudor 结构域上的一个新结合界面,这是 BmGtsf1L 结合所必需的。我们的研究表明,BmVreteno 中的单个 eTudor 结构域提供了两个结合界面,从而将负载 piRNA 的 BmAgo3 和 BmGtsf1L 相互连接。