Piwi相互作用RNA
生物发生
细胞生物学
生物
分区(防火)
转座因子
线粒体
线粒体生物发生
舱室(船)
细胞器生物发生
减数分裂
基因沉默
体细胞
支架蛋白
细胞质
遗传学
阿尔戈瑙特
转运蛋白
拉西尔纳
RNA结合蛋白
作者
Xiaoyuan Yan,Chao Wei,Jeffrey M. Mann,Guanyi Shang,Qianyi Wang,Huirong Xie,Elena Y. Demireva,Liangliang Sun,Deqiang Ding,C. Chen
标识
DOI:10.1073/pnas.2533968123
摘要
Pachytene piRNAs are the least understood class of piRNAs in the mammalian male germ line. During meiosis, their biogenesis occurs near mitochondrial outer membrane in germ granules known as intermitochondrial cement (IMC). However, how mitochondrial factors regulate the trafficking of PIWI proteins into and out of the IMC remain poorly understood. Here we show that the cytoplasmic PIWI proteins MILI and MIWI are recruited for pachytene piRNA biogenesis via distinct mitochondrial membrane proteins. Loss of the mitochondrial scaffold protein ASZ1 during meiosis in mice disrupts multiple downstream biogenesis steps, leading to misregulation of MILI and MIWI, failure of IMC formation, and a near-complete loss of mature pachytene piRNAs. Strikingly, despite the drastic depletion of pachytene piRNAs, LINE1 transposon silencing remains unaffected. We identify three classes of pachytene piRNA pathway components that coordinate piRNA production and compartmentalization. Our findings reveal that chromatoid body precursors serve as a central hub for the accumulation of pachytene PIWI-piRNA complexes, thus establishing a connection between IMC-based biogenesis and downstream piRNA function.
科研通智能强力驱动
Strongly Powered by AbleSci AI