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Exploring the potential role of palladin in modulating human CAF/ECM functional units.

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Cytoskeleton (Hoboken, N.J.) 2025 Vol.82(3) p. 175-185
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Dolskii A, Alcantara Dos Santos SA, Andrake M, Franco-Barraza J, Dunbrack RL, Cukierman E

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Fibroblasts, crucial for maintaining tissue homeostasis, significantly shape the tumor microenvironment (TME).

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APA Dolskii A, Alcantara Dos Santos SA, et al. (2025). Exploring the potential role of palladin in modulating human CAF/ECM functional units.. Cytoskeleton (Hoboken, N.J.), 82(3), 175-185. https://doi.org/10.1002/cm.21926
MLA Dolskii A, et al.. "Exploring the potential role of palladin in modulating human CAF/ECM functional units.." Cytoskeleton (Hoboken, N.J.), vol. 82, no. 3, 2025, pp. 175-185.
PMID 39239855 ↗
DOI 10.1002/cm.21926

Abstract

Fibroblasts, crucial for maintaining tissue homeostasis, significantly shape the tumor microenvironment (TME). In pancreatic cancer, a highly aggressive malignancy, cancer-associated fibroblast (CAF)/extracellular matrix (ECM) units dominate the TME, influencing tumor initiation, progression, and treatment responses. Palladin, an actin-associated protein, is vital for fibroblast structural integrity and activation, playing a key role in CAF/ECM functionality. Palladin interacts with cytoskeletal proteins such as alpha-actinin (α-Act) and can therefore regulate other proteins like syndecans, modulating cytoskeletal features, cell adhesion, integrin recycling, and signaling. In this review, we propose that targeting the palladin/α-Act/syndecan interaction network could modulate CAF/ECM units, potentially shifting the TME from a tumor-promoting to a tumor-suppressive state. In silico data and reported studies to suggest that stabilizing palladin-α-Act interactions, via excess palladin, influences syndecan functions; potentially modulating integrin endocytosis via syndecan engagement with protein kinase C alpha as opposed to syndecan binding to α-Act. This mechanism can then affect the distribution of active α5β1-integrin between the plasma membrane and known intracellular vesicular compartments, thereby influencing the tumor-suppressive versus tumor-promoting functions of CAF/ECM units. Understanding these interactions offers likely future therapeutic avenues for stroma normalization in pancreatic and other cancers, aiming to inhibit tumor progression and improve future treatment outcomes.

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