
pmid: 37552992
Nuclear pore complexes (NPCs) are the central apparatus of nucleocytoplasmic transport. Disease-specific alterations of NPCs contribute to the pathogenesis of many cancers; however, the roles of NPCs in glioblastoma (GBM) are unknown. In this study, we report genomic amplification of NUP107, a component of NPCs, in GBM and show that NUP107 is overexpressed simultaneously with MDM2, a critical E3 ligase that mediates p53 degradation. Depletion of NUP107 inhibits the growth of GBM cell lines through p53 protein stabilization. Mechanistically, NPCs establish a p53 degradation platform via an export pathway coupled with 26S proteasome tethering. NUP107 is the keystone for NPC assembly; the loss of NUP107 affects the integrity of the NPC structure, and thus the proportion of 26S proteasome in the vicinity of nuclear pores significantly decreases. Together, our findings establish roles of NPCs in transport surveillance and provide insights into p53 inactivation in GBM.
Nuclear Pore Complex Proteins, QH301-705.5, Nuclear Pore, Active Transport, Cell Nucleus, Humans, CP: Molecular biology, Biology (General), Tumor Suppressor Protein p53, Glioblastoma, CP: Cancer
Nuclear Pore Complex Proteins, QH301-705.5, Nuclear Pore, Active Transport, Cell Nucleus, Humans, CP: Molecular biology, Biology (General), Tumor Suppressor Protein p53, Glioblastoma, CP: Cancer
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