不育
核糖体
生物
蛋白质生物合成
转移RNA
遗传学
基因
核糖核酸
作者
Can Zhou,Chunyan Liu,Bin Yan,Jing Sun,Shengdong Li,Li Ji,Jia Wang,Xiahe Huang,Wei Yan,Shuying Yang,Chenjian Fu,Peng Qin,Xingxue Fu,Xinghui Zhao,Yan‐Chao Wu,Xianwei Song,Yingchun Wang,Wenfeng Qian,Yuanzhu Yang,Xiaofeng Cao
标识
DOI:10.1073/pnas.2417526122
摘要
The two-line hybrid rice system, a cutting-edge hybrid rice breeding technology, has greatly boosted global food security. In thermo-sensitive genic male sterile (TGMS) lines, the critical sterility-inducing temperature (CSIT; the temperature at which TGMS lines change from male fertile to complete male sterile) acts as a key threshold. We recently uncovered that thermo-sensitive genic male sterility 5 ( tms5 ), a sterile locus presenting in over 95% of TGMS lines, leads to the overaccumulation of 2′,3′-cyclic phosphate (cP)-ΔCCA-tRNAs and a deficiency of mature tRNAs, which underlies the molecular mechanism of tms5 -mediated TGMS. However, there are a few reports on the regulatory mechanism controlling CSIT. Here, we identified a suppressor of tms5 , an amino acid substitution (T552I) in the rice Rqc2 (ribosome-associated quality control 2), increases the CSIT in tms5 lines through its C-terminal alanine and threonine modification (CATylation) activity. This substitution alters tRNA selectivity, leading to the recruitment of different tRNAs to the A-site of ribosome and CATylation rate by OsRqc2 during ribosome-associated quality control (RQC), a process that rescues stalled ribosomes and degrades abnormal nascent chains during translational elongation. Further, the mutation restores the levels of mature tRNA-Ser/Ile to increase the CSIT of tms5 lines. Our findings reveal the origin of overaccumulated cP-ΔCCA-tRNAs in tms5 lines, further deepening our understanding of the regulatory network in governing CSIT of TGMS lines containing tms5.
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