α-catenin SUMOylation increases IκBα stability and inhibits breast cancer progression

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Abstract

α-catenin has been demonstrated to suppress several different types of cancers. Here we demonstrate that α-catenin is modified by SUMO protein, which covalently binds α-catenin at the carboxy terminus at lysine 870. Substitution of lysine 870 with arginine completely abolishes α-catenin SUMOylation. This modification can be removed by SENP1. However, α-catenin SUMOylation does not affect its stability and subcellular localization. In addition, we observed that the SUMOylation-deficient α-catenin mutant has a reduced interaction with IκBα which prevents subsequent ubiquitination of IκBα, and therefore a reduced suppression of expression of the NF-κB target genes TNF-α, IL-8, VEGF, and uPA. In addition, the α-catenin SUMOylation mutant shows impaired suppression of tumor growth. These results demonstrate that SUMOylation at lysine 870 of α-catenin plays a key role in the suppression of the NF-κB pathway, which inhibits breast cancer tumor growth and migration.

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Chen, H., Xu, Z., Li, X., Yang, Y., Li, B., Li, Y., … Wu, H. (2018). α-catenin SUMOylation increases IκBα stability and inhibits breast cancer progression. Oncogenesis, 7(3). https://doi.org/10.1038/s41389-018-0037-7

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