Ubiquitin-Related Modifier 1 (URM-1) Modulates Cx43 in Breast Cancer Cell Lines

Abstract

Gap-junction-forming connexins are exquisitely regulated by post-translational modifications (PTMs). In particular, the PTM of connexin 43 (Cx43), a tumor suppressor protein, regulates its turnover and activity. Here, we investigated the interaction of Cx43 with the ubiquitin-related modifier 1 (URM-1) protein and its impact on tumor progression in two breast cancer cell lines, highly metastatic triple-negative MDA-MB-231 and luminal breast cancer MCF-7 cell lines. To evaluate the subsequent modulation of Cx43 levels, URM-1 was downregulated in these cells. The transcriptional levels of epithelial-to-mesenchymal transition (EMT) markers and the metastatic phenotype were assessed. We demonstrated that Cx43 co-localizes and interacts with URM-1, and URMylated Cx43 was accentuated upon cellular stress. The significant upregulation of small ubiquitin-like modifier-1 (SUMO-1) was also observed. In cells with downregulated URM-1, Cx43 expression significantly decreased, and SUMOylation by SUMO-1 was affected. The concomitant expression of EMT markers increased, leading to increased proliferation, migration, and invasion potential. Inversely, the upregulation of URM-1 increased Cx43 expression and reversed EMT-induced processes, underpinning a role for this PTM in the observed phenotypes. This study proposes that the URMylation of Cx43 in breast cancer cells regulates its tumor suppression properties and contributes to breast cancer cell malignancy. © 2023 by the authors.

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Keywords

Breast cancer, Cx43, Epithelial-to-mesenchymal transition, Post-translational modification, Urm-1, Breast neoplasms, Cell line, tumor, Cell movement, Cell proliferation, Connexin 43, Connexins, Epithelial-mesenchymal transition, Female, Gap junctions, Humans, Mcf-7 cells, Ubiquitin, Biological marker, Messenger rna, Sumo 1 protein, Ubiquitin related modifier 1, Unclassified drug, Gap junction protein, Article, Breast cancer cell line, Breast carcinogenesis, Cell invasion, Cell migration, Cell stress, Controlled study, Down regulation, Epithelial mesenchymal transition, Genetic transcription, Human, Human cell, In vitro study, Mcf-7 cell line, Mda-mb-231 cell line, Molecular biology, Mrna expression level, Phenotype, Protein expression level, Protein function, Protein modification, Protein processing, Protein protein interaction, Regulatory mechanism, Sumoylation, Triple negative breast cancer, Tumor growth, Upregulation, Urmylation, Breast tumor, Cell motion, Gap junction, Genetics, Metabolism, Tumor cell line

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