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The ribonuclease ZC3H12A stabilizes BRCA1 mRNA in DNA damage response
Mingjun Lu1, Jiabao Hou1, Zhendong Qin1
1Cancer Research Center, Beijing Chest Hospital, Capital Medical University, Beijing Tuberculosis and Thoracic Tumor Research Institute, Beijing, 101149, China.
Abstract:
ZC3H12A is an endoribonuclease that destabilizes target transcripts by recognizing stem-loop structures containing a pyrimidine-purine-pyrimidine loop. Here, we identify ZC3H12A as a constitutive stabilizer of BRCA1 mRNA that supports DNA repair capacity. Under basal conditions, depletion of ZC3H12A shortens the half-life of BRCA1 mRNA, reduces its ribosomal loading and lowers BRCA1 protein levels, whereas overexpression has the opposite effect. ZC3H12A binds to the BRCA1 transcript via its PilT N-terminal (PIN) and CCCH-type zinc finger (ZF) domains; enhanced crosslinking and immunoprecipitation (eCLIP) narrows the bound sequence to defined intervals that lie outside the canonical stem-loop element through which ZC3H12A recognizes inflammatory transcripts. Moreover, ionizing radiation induces TBK1-dependent phosphorylation of ZC3H12A at Ser386, accompanied by the export of ZC3H12A from the nucleus and its redistribution to cytoplasmic ribosomes. Phosphorylated ZC3H12A occupies a broader region of BRCA1 transcript without promoting its degradation, thereby further prolonging its half-life and increasing its ribosomal loading. As a result, under genotoxic stress, the supply of BRCA1 increases, thereby supporting RAD51 recruitment and homologous recombination repair. These findings identify ZC3H12A as a post-transcriptional regulator of BRCA1 mRNA and show how Ser386 phosphorylation amplifies a protective function that is already present before damage.
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