Nucleoporins in Cancer: Functional Roles and Therapeutic Opportunities

Abstract The nuclear pore complex (NPC) and its building-block proteins, nucleoporins (NUP), play fundamental roles in maintaining cellular fitness by regulating nucleocytoplasmic transport, chromatin and transcriptional activity, and genome stability. These core biological processes are critical for cancer cells, and thus, tumor-driven co-option of NUP-regulated functions has emerged as an important mechanism contributing to the pathogenesis of multiple malignancies. This review discusses how NUP dysregulation mechanistically contributes to tumor initiation and progression and how these insights open opportunities for innovative anticancer therapies, including using clinical-grade molecular glues that induce selective NUP degradation and pharmacologically inhibiting NPC-regulated epigenomic/transcriptomic signaling and nucleocytoplasmic transport. Significance: Recent studies demonstrate that NUPs play fundamental roles in cancer pathogenesis by dysregulating key NPC functions and driving tumorigenesis and disease progression. NUPs and NPC-regulated mechanisms can be pharmacologically targeted, providing a strong rationale for developing much-needed innovative therapeutic strategies to combat cancer.

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Publication Details

Journal
Cancer Discovery
Published
2026-09-09
DOI
https://doi.org/10.1158/2159-8290.cd-26-0347
Primary Topic
Nuclear Structure and Function
Type
article
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article

Nucleoporins in Cancer: Functional Roles and Therapeutic Opportunities

Vijayakumar Jawalagatti, Verónica Rodríguez-Bravo, Marc Carceles‐Cordon, Perumalraja Kirthika et al.
Cancer Discovery
Nuclear Structure and Function
article

Nucleoporins in Cancer: Functional Roles and Therapeutic Opportunities

Vijayakumar Jawalagatti, Verónica Rodríguez-Bravo, Marc Carceles‐Cordon, Perumalraja Kirthika, Josep Domingo‐Domenech
article en

Abstract

Abstract The nuclear pore complex (NPC) and its building-block proteins, nucleoporins (NUP), play fundamental roles in maintaining cellular fitness by regulating nucleocytoplasmic transport, chromatin and transcriptional activity, and genome stability. These core biological processes are critical for cancer cells, and thus, tumor-driven co-option of NUP-regulated functions has emerged as an important mechanism contributing to the pathogenesis of multiple malignancies. This review discusses how NUP dysregulation mechanistically contributes to tumor initiation and progression and how these insights open opportunities for innovative anticancer therapies, including using clinical-grade molecular glues that induce selective NUP degradation and pharmacologically inhibiting NPC-regulated epigenomic/transcriptomic signaling and nucleocytoplasmic transport. Significance: Recent studies demonstrate that NUPs play fundamental roles in cancer pathogenesis by dysregulating key NPC functions and driving tumorigenesis and disease progression. NUPs and NPC-regulated mechanisms can be pharmacologically targeted, providing a strong rationale for developing much-needed innovative therapeutic strategies to combat cancer.

Cancer Discovery
Mayo Clinic (US), Mayo Clinic in Arizona (US), Mayo Clinic in Florida (US)
Openalex Percentile: Top 18%
Nuclear Structure and Function
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Nucleoporins in Cancer: Functional Roles and Therapeutic Opportunities — Vijayakumar Jawalagatti, Verónica Rodríguez-Bravo, et al. · Cancer Discovery (2026) | TGRS Research Map | TGRS