The tumor suppressor HNRNPK induces p53-dependent nucleolar stress to drive ribosomopathies.

肿瘤抑制因子 HNRNPK 诱导 p53 依赖性核仁应激,从而引发核糖体病

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作者:Aguilar-Garrido Pedro, Velasco-Estévez María, Navarro-Aguadero Miguel Ángel, Otero-Sobrino Álvaro, Ibáñez-Navarro Marta, Marugal Miguel Ángel, Hernández-Sánchez María, Malaney Prerna, Rodriguez Ashley, Benitez Oscar, Zhang Xiaroui, Aitken Marisa Jl, Ortiz-Ruiz Alejandra, Megías Diego, Pérez Manuel, Mata Gadea, Gomez Jesús, Lafarga Miguel, Domínguez Orlando, Graña-Castro Osvaldo, Caleiras Eduardo, Ximénez-Embun Pilar, Isasa Marta, de Andres Paloma Jimena, Rodríguez-Perales Sandra, Torres-Ruiz Raúl, Revilla Enrique, García-Martín Rosa María, Azorín Daniel, Zubicaray Josune, Sevilla Julián, Sirozh Oleksandra, Lafarga Vanesa, Martínez-López Joaquín, Post Sean M, Gallardo Miguel
The nucleolus is a membraneless organelle and an excellent stress sensor. Any changes in its architecture or composition lead to nucleolar stress, resulting in cell cycle arrest and interruption of ribosomal activity, critical factors in aging and cancer. In this study, we identified and described the pivotal role of the RNA-binding protein HNRNPK in ribosome and nucleolar dynamics. We developed an in vitro model of endogenous HNRNPK overexpression and an in vivo mouse model of ubiquitous HNRNPK overexpression. These models showed disruptions in translation as the HNRNPK overexpression caused alterations in the nucleolar structure, resulting in p53-dependent nucleolar stress, cell cycle arrest, senescence, and bone marrow failure phenotype, similar to what is observed in patients with ribosomopathies. Together, our findings identify HNRNPK as a master regulator of ribosome biogenesis and nucleolar homeostasis through p53, providing what we believe to be a new perspective on the orchestration of nucleolar integrity, ribosome function and cellular senescence.

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