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Updated: Aug 6, 2026

Assessing Cellular Target Engagement by SHP2 (PTPN11) Phosphatase Inhibitors
Published on: July 17, 2020
Beyond the Poly(A) Tail: The Expanding Functional Landscape of PABPN1 and Its Dysregulation in OPMD and Cancer
1Fujian Key Laboratory of Innate Immune Biology, Biomedical Research Center of South China, College of Life Science, Fujian Normal University Qishan Campus, Fuzhou, Fujian, China.
Abstract:
Nuclear poly(A)-binding protein N1 (PABPN1) is a poly(A)-binding protein widely expressed in the nuclei of eukaryotic cells. As a key regulator of mRNA 3'-end processing, it participates not only in poly(A) tail synthesis and length regulation but also in alternative polyadenylation (APA). Recent studies have demonstrated that PABPN1 undergoes liquid-liquid phase separation (LLPS) to form dynamic membraneless compartments, such as nuclear speckles and nuclear poly(A) domains (NPADs), and contributes to its physiological functions. Emerging evidence has further implicated PABPN1 in a range of cellular processes. These include downstream consequences of APA dysregulation, such as altered stress responses and cell fate decisions, as well as APA-independent molecular functions, including its direct roles in DNA repair and cell cycle control. Dysregulation of PABPN1 LLPS, driven either by intrinsic expansion of its N-terminal alanine stretch or by altered interactions with regulatory cofactors, promotes a transition from dynamic liquid-like condensates to pathological solid-like aggregates. This phase transition is associated with the pathogenesis of oculopharyngeal muscular dystrophy (OPMD) and contributes to oncogenic APA patterns in various cancers. This review summarizes recent findings on the emerging physiological functions of PABPN1, its phase separation characteristics, and the molecular mechanisms underlying its transition into pathological aggregates.
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