[No authors listed]
Ribosomal protein (RP) expression in higher eukaryotes is regulated translationally through the 5â²TOP sequence. This mechanism evolved to more rapidly produce RPs on demand in different tissues. Here we show that 40S ribosomes, in a complex with the mRNA binding protein selectively stabilize 5â²TOP mRNAs, with disruption of this complex leading to induction of the impaired ribosome biogenesis checkpoint (IRBC) and p53 stabilization. The importance of this mechanism is underscored in 5qâ syndrome, a macrocytic anemia caused by a large monoallelic deletion, which we found to also encompass the gene. Critically, depletion of Lduanyu371 alone in human adult CD34+ bone marrow precursor cells leads to a reduction in 5â²TOP mRNAs and the induction of p53. These studies identify a 40S ribosome function independent of those in translation that, with Lduanyu371, mediates the autogenous control of 5â²TOP mRNA stability, whose disruption is implicated in the pathophysiology of 5qâ syndrome.
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