ArticleFrontiers in oncology2026
Type I collagen promotes triple-negative breast cancer progression through a UBE2V1-ACSL5 regulatory axis.
Article in Frontiers in oncology, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.
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Abstract
Introduction: Triple-negative breast cancer (TNBC) is characterized by aggressive behavior and extensive extracellular-matrix remodeling. Type I collagen (COL I), a major stromal component, promotes tumor progression, but the downstream tumor-cell mechanisms remain incompletely defined. We investigated whether COL I regulates acyl-CoA synthetase long-chain family member 5 (ACSL5) through ubiquitin-conjugating enzyme E2 variant 1 (UBE2V1) and whether this relationship contributes to malignant behavior. Methods: We integrated public-dataset analyses, transcriptome sequencing, and in vitro functional and biochemical assays. MDA-MB-231 and BT-549 cells were exposed to COL I, with ACSL5 overexpression or UBE2V1 knockdown as indicated. ACSL5 expression and stability were assessed by qPCR, western blotting, CHX-chase analysis, CQ or MG132 treatment, ubiquitination assays, immunoprecipitation-mass spectrometry, and co-immunoprecipitation. Results: COL I enhanced proliferation, colony formation, migration, and invasion and reduced ACSL5 protein abundance in both TNBC cell lines. ACSL5 overexpression partially reversed these malignant phenotypes. COL I did not significantly alter ACSL5 mRNA expression by qPCR but accelerated ACSL5 protein loss; MG132, but not chloroquine, partially restored ACSL5, and total ACSL5 ubiquitination increased after COL I treatment. Immunoprecipitation-mass spectrometry and co-immunoprecipitation identified UBE2V1 as an ACSL5-associated protein whose expression and association with ACSL5 were enhanced by COL I. UBE2V1 knockdown partially restored ACSL5 protein expression and significantly attenuated COL I-induced migration and invasion. Public-dataset analyses further showed reduced ACSL5 expression in breast cancer and associations between ACSL5 and immune-infiltration features; these observations were exploratory and were not supported by direct immune-functional assays. Discussion: These findings identify a COL I-UBE2V1-ACSL5 regulatory relationship that contributes to TNBC malignant progression. The data support UBE2V1-associated regulation of proteasome-sensitive ACSL5 loss, while the complete ubiquitination machinery and the in vivo, clinical, and immune relevance remain to be defined.
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