Ministry of Education Key Laboratory for Membraneless Organelles & Cellular Dynamics, Hefei National Laboratory for Physical Sciences at the Microscale, School of Life Sciences, Division of Life Sciences and Medicine, University of Science and Technology of China, Hefei, PR China.
Department of Obstetrics and Gynecology, The First Affiliated Hospital of USTC, Division of Life Sciences and Medicine, University of Science and Technology of China, Hefei, PR China.
Nat Commun. 2021 Sep 22;12(1):5595. doi: 10.1038/s41467-021-25896-7.
By incorporating two mutually exclusive factors, PID-1 and TOST-1, C. elegans PICS complex plays important roles in piRNA biogenesis, chromosome segregation and cell division. We firstly map the interaction network between PICS subunits, then uncover the mechanisms underlying the interactions between PICS subunits by solving several complex structures, including those of TOFU-6/PICS-1, ERH-2/PICS-1, and ERH-2/TOST-1. Our biochemical experiment also demonstrates that PICS exists as an octamer consisting of two copies of each subunit. Combining structural analyses with mutagenesis experiments, we identify interfacial residues of PICS subunits that are critical for maintaining intact PICS complex in vitro. Furthermore, using genetics, cell biology and imaging experiments, we find that those mutants impairing the in vitro interaction network within PICS, also lead to dysfunction of PICS in vivo, including mislocalization of PICS, and reduced levels of piRNAs or aberrant chromosome segregation and cell division. Therefore, our work provides structural insights into understanding the PICS-mediated piRNA biogenesis and cell division.
通过结合两个互斥的因素,PID-1 和 TOST-1,秀丽隐杆线虫 PICS 复合物在 piRNA 生物发生、染色体分离和细胞分裂中发挥重要作用。我们首先绘制了 PICS 亚基之间的相互作用网络,然后通过解决几个复杂结构,包括 TOFU-6/PICS-1、ERH-2/PICS-1 和 ERH-2/TOST-1 的结构,揭示了 PICS 亚基相互作用的机制。我们的生化实验还表明,PICS 以由每个亚基两个拷贝组成的八聚体形式存在。通过结构分析和突变实验相结合,我们确定了 PICS 亚基的界面残基对于在体外维持完整的 PICS 复合物至关重要。此外,通过遗传学、细胞生物学和成像实验,我们发现那些破坏 PICS 中体外相互作用网络的突变体,也导致 PICS 在体内功能失调,包括 PICS 的定位错误、piRNAs 水平降低或染色体分离和细胞分裂异常。因此,我们的工作为理解 PICS 介导的 piRNA 生物发生和细胞分裂提供了结构见解。