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February 16, 20260 citationsOpen Access

Tankyrases and Their Binding Proteins: Origins of Their Roles in Diverse Cellular Pathways

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NHNafiseh Chalabi HagkarimRGRoger J.A. Grand

Key Points

  • This review explores the roles of tankyrases in various cellular pathways and their implications in health and disease.
  • Discussed tankyrases' interactions with diverse proteins
  • Reviewed biological pathways involving tankyrases
  • Highlighted structural basis of TNKS-protein interactions
  • Integrated findings from oncology, virology, and metabolism
  • Tankyrases regulate apoptosis and glucose metabolism
  • Observations of TNKS-mediated poly(ADP-ribosyl)ation impacting protein interactions
  • Emphasized the dysregulation of tankyrases leading to severe biological consequences

Abstract

Tankyrases (TNKS1 and TNKS2) are multifunctional enzymes of the poly(ADP-ribose) polymerase (PARP) family that regulate cellular homeostasis by catalyzing poly(ADP-ribosyl)ation and stabilizing protein–protein interactions through their ankyrin repeat clusters. By engaging with diverse sets of proteins, TNKSs act as central hubs that coordinate signaling and metabolic pathways. In this review, we discuss how TNKS –protein interactions underpin their roles across multiple biological pathways, including Wnt/β-catenin, YAP and SRC signaling, mTORC1 signaling, DNA damage repair (via PARP crosstalk and recruitment of repair factors), telomere maintenance, cell-cycle regulation, glucose metabolism, cytoskeleton rearrangement, autophagy, proteasomal degradation, and apoptosis. We highlight the structural basis of these interactions, emphasizing ankyrin repeat domain recognition motifs and the consequences of TNKS-mediated PARylation on protein stability and localization. By integrating findings from oncology, virology, and metabolism, we illustrate how TNKS functions as a nodal regulator linking genome stability, signaling fidelity, and metabolic control. The interplay between TNKS and these varied pathways is essential for the well-being of the organism, with its dysregulation having severe biological and clinical consequences, which are discussed here. Finally, we consider therapeutic implications of disrupting TNKS–protein interactions, with particular attention paid to selective small-molecule inhibitors and their translational potential in cancer, viral infections, and degenerative diseases.

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Cite This Study

Hagkarim et al. (2026) studied this question.

synapsesocial.com/papers/69926552eb1f82dc367a1219https://doi.org/10.3390/cells15040348
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