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Enzyme-Instructed Supramolecular Assemblies Occlude Extrinsic Aquaporin-4 via Multivalent Effect for Sensitized
Ruijia Zhang1,2,3, Yinhang Jia4,5,6,7, Zhibin Ren1
1State Key Laboratory of Chemical Resource Engineering, MOE Key Lab of Biomedical Materials of Natural Macromolecules, Beijing University of Chemical Technology, Beijing100029, China.
Abstract:
Aquaporin-4 (AQP4) proteins serve as a potential therapeutic target for glioma treatment while efficient small molecular inhibitors remain undiscovered. TGN-020 exhibits only transient inhibitory effects and lacks cell specificity. Stemmed from the solvent-exposed region of TGN-020, here we synthesized TGN-020/peptide conjugates which can self-assemble upon dephosphorylation. These conjugates selectively formed supramolecular nanofibers on the plasma membrane of ALP+/AQP4+ glioma cells, which bind to AQP4 in a multivalent manner. The AQP4-nanofiber interaction turned out to be a sustained inhibition and impeded the water exchange. The occlusion of AQP4 enhanced the sensitivity of glioma xenografts to temozolomide treatment in a subcutaneous mouse model. We envision that protein-assembly interactions represent a promising strategy for enabling multivalent binding to proteins of interest, which lead to the sustained regulation of protein function for potential biomedical applications.
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