Functional Proteomics Identifies a PICS Complex Required for piRNA Maturation and Chromosome Segregation
Author(s) -
Chenming Zeng,
Chenchun Weng,
Xiaoyang Wang,
Yonghong Yan,
Wen-Jun Li,
Demin Xu,
Minjie Hong,
Shanhui Liao,
MengQiu Dong,
Xuezhu Feng,
Chao Xu,
Shouhong Guang
Publication year - 2019
Publication title -
cell reports
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 6.264
H-Index - 154
eISSN - 2639-1856
pISSN - 2211-1247
DOI - 10.1016/j.celrep.2019.05.076
Subject(s) - biology , proteomics , computational biology , chromosome , genetics , piwi interacting rna , microbiology and biotechnology , genome , transposable element , gene
piRNAs play significant roles in suppressing transposons and nonself nucleic acids, maintaining genome integrity, and defending against viral infections. In C. elegans, piRNA precursors are transcribed in the nucleus and are subjected to a number of processing and maturation steps. The biogenesis of piRNAs is not fully understood. We use functional proteomics in C. elegans and identify a piRNA biogenesis and chromosome segregation (PICS) complex. The PICS complex contains TOFU-6, PID-1, PICS-1, TOST-1, and ERH-2, which exhibit dynamic localization among different subcellular compartments. In the germlines, the PICS complex contains TOFU-6/PICS-1/ERH-2/PID-1, is largely concentrated at the perinuclear granule zone, and engages in piRNA processing. During embryogenesis, the TOFU-6/PICS-1/ERH-2/TOST-1 complex accumulates in the nucleus and plays essential roles in chromosome segregation. The functions of these factors in mediating chromosome segregation are independent of piRNA production. We speculate that differential compositions of PICS factors may help cells coordinate distinct cellular processes.
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