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Inhibiting the Keap1/Nrf2 Protein-Protein Interaction with Protein-Like Polymers.
Carrow, Kendal P; Hamilton, Haylee L; Hopps, Madeline P; Li, Yang; Qiao, Baofu; Payne, N Connor; Thompson, Matthew P; Zhang, Xiaoyu; Magassa, Assa; Fattah, Mara; Agarwal, Shivangi; Vincent, Michael P; Buyanova, Marina; Bertin, Paul A; Mazitschek, Ralph; Olvera de la Cruz, Monica; Johnson, Delinda A; Johnson, Jeffrey A; Gianneschi, Nathan C.
Affiliation
  • Carrow KP; Department of Biomedical Engineering, McCormick School of Engineering, Medical Scientist Training Program, Feinberg School of Medicine, International Institute for Nanotechnology, Northwestern University, Evanston, 60208, IL, USA.
  • Hamilton HL; School of Pharmacy, University of Wisconsin, Madison, 57305, WI, USA.
  • Hopps MP; International Institute for Nanotechnology, Department of Chemistry, Chemistry of Life Processes Institute, Northwestern University, Evanston, 60208, IL, USA.
  • Li Y; Department of Chemical and Biological Engineering, McCormick School of Engineering, Northwestern University, Evanston, 60208, IL, USA.
  • Qiao B; Department of Natural Sciences, Baruch College, City University of New York, New York, 10010, NY, USA.
  • Payne NC; Center for Systems Biology, Massachusetts General Hospital, Harvard Medical School, Boston, MA, USA.
  • Thompson MP; Department of Chemistry & Chemical Biology, Harvard University, Cambridge, 02138, MA, USA.
  • Zhang X; International Institute for Nanotechnology, Department of Chemistry, Chemistry of Life Processes Institute, Northwestern University, Evanston, 60208, IL, USA.
  • Magassa A; International Institute for Nanotechnology, Department of Chemistry, Chemistry of Life Processes Institute, Northwestern University, Evanston, 60208, IL, USA.
  • Fattah M; International Institute for Nanotechnology, Department of Chemistry, Chemistry of Life Processes Institute, Northwestern University, Evanston, 60208, IL, USA.
  • Agarwal S; International Institute for Nanotechnology, Department of Chemistry, Chemistry of Life Processes Institute, Northwestern University, Evanston, 60208, IL, USA.
  • Vincent MP; Grove Biopharma, Inc, 1375 W. Fulton St., Ste. 650, Chicago, 60558, IL, USA.
  • Buyanova M; Grove Biopharma, Inc, 1375 W. Fulton St., Ste. 650, Chicago, 60558, IL, USA.
  • Bertin PA; Grove Biopharma, Inc, 1375 W. Fulton St., Ste. 650, Chicago, 60558, IL, USA.
  • Mazitschek R; Grove Biopharma, Inc, 1375 W. Fulton St., Ste. 650, Chicago, 60558, IL, USA.
  • Olvera de la Cruz M; Center for Systems Biology, Massachusetts General Hospital, Harvard Medical School, Boston, MA, USA.
  • Johnson DA; Broad Institute of MIT and Harvard, Cambridge, 02142, MA, USA.
  • Johnson JA; Harvard T.H. Chan School of Public Health, Boston, 02115, MA, USA.
  • Gianneschi NC; Department of Materials Science & Engineering, Robert R. McCormick School of Engineering and Applied Science, Center for Computation and Theory of Soft Materials, Northwestern University, Evanston, 60208, IL, USA.
Adv Mater ; 36(21): e2311467, 2024 May.
Article de En | MEDLINE | ID: mdl-38241649
ABSTRACT
Successful and selective inhibition of the cytosolic protein-protein interaction (PPI) between nuclear factor erythroid 2-related factor 2 (Nrf2) and Kelch-like ECH-associating protein 1 (Keap1) can enhance the antioxidant response, with the potential for a therapeutic effect in a range of settings including in neurodegenerative disease (ND). Small molecule inhibitors have been developed, yet many have off-target effects, or are otherwise limited by poor cellular permeability. Peptide-based strategies have also been attempted to enhance specificity, yet face challenges due to susceptibility to degradation and lack of cellular penetration. Herein, these barriers are overcome utilizing a polymer-based proteomimetics. The protein-like polymer (PLP) consists of a synthetic, lipophilic polymer backbone displaying water soluble Keap1-binding peptides on each monomer unit forming a brush polymer architecture. The PLPs are capable of engaging Keap1 and displacing the cellular protective transcription factor Nrf2, which then translocates to the nucleus, activating the antioxidant response element (ARE). PLPs exhibit increased Keap1 binding affinity by several orders of magnitude compared to free peptides, maintain serum stability, are cell-penetrant, and selectively activate the ARE pathway in cells, including in primary cortical neuronal cultures. Keap1/Nrf2-inhibitory PLPs have the potential to impact the treatment of disease states associated with dysregulation of oxidative stress, such as NDs.
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Texte intégral: 1 Collection: 01-internacional Base de données: MEDLINE Sujet principal: Polymères / Liaison aux protéines / Facteur-2 apparenté à NF-E2 / Protéine-1 de type kelch associée à ECH Limites: Animals / Humans Langue: En Journal: Adv Mater Sujet du journal: BIOFISICA / QUIMICA Année: 2024 Type de document: Article Pays d'affiliation: États-Unis d'Amérique

Texte intégral: 1 Collection: 01-internacional Base de données: MEDLINE Sujet principal: Polymères / Liaison aux protéines / Facteur-2 apparenté à NF-E2 / Protéine-1 de type kelch associée à ECH Limites: Animals / Humans Langue: En Journal: Adv Mater Sujet du journal: BIOFISICA / QUIMICA Année: 2024 Type de document: Article Pays d'affiliation: États-Unis d'Amérique
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