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Competition between inside-out unfolding and pathogenic aggregation in an amyloid-forming ß-propeller.
Saccuzzo, Emily G; Mebrat, Mubark D; Scelsi, Hailee F; Kim, Minjoo; Ma, Minh Thu; Su, Xinya; Hill, Shannon E; Rheaume, Elisa; Li, Renhao; Torres, Matthew P; Gumbart, James C; Van Horn, Wade D; Lieberman, Raquel L.
Affiliation
  • Saccuzzo EG; School of Chemistry & Biochemistry, Georgia Institute of Technology, Atlanta, USA.
  • Mebrat MD; Biodesign Center for Personalized Diagnostics, Arizona State University, Tempe, USA.
  • Scelsi HF; School of Molecular Sciences, Arizona State University, Tempe, USA.
  • Kim M; School of Chemistry & Biochemistry, Georgia Institute of Technology, Atlanta, USA.
  • Ma MT; Biodesign Center for Personalized Diagnostics, Arizona State University, Tempe, USA.
  • Su X; School of Molecular Sciences, Arizona State University, Tempe, USA.
  • Hill SE; School of Chemistry & Biochemistry, Georgia Institute of Technology, Atlanta, USA.
  • Rheaume E; School of Biological Sciences, Georgia Institute of Technology, Atlanta, USA.
  • Li R; School of Chemistry & Biochemistry, Georgia Institute of Technology, Atlanta, USA.
  • Torres MP; Interdisciplinary Graduate Program in Quantitative Biosciences, Georgia Institute of Technology, Atlanta, USA.
  • Gumbart JC; Aflac Cancer and Blood Disorders Center, Children's Healthcare of Atlanta and Department of Pediatrics, Emory University School of Medicine, Atlanta, USA.
  • Van Horn WD; School of Biological Sciences, Georgia Institute of Technology, Atlanta, USA.
  • Lieberman RL; School of Chemistry & Biochemistry, Georgia Institute of Technology, Atlanta, USA.
Nat Commun ; 15(1): 155, 2024 Jan 02.
Article in En | MEDLINE | ID: mdl-38168102
ABSTRACT
Studies of folded-to-misfolded transitions using model protein systems reveal a range of unfolding needed for exposure of amyloid-prone regions for subsequent fibrillization. Here, we probe the relationship between unfolding and aggregation for glaucoma-associated myocilin. Mutations within the olfactomedin domain of myocilin (OLF) cause a gain-of-function, namely cytotoxic intracellular aggregation, which hastens disease progression. Aggregation by wild-type OLF (OLFWT) competes with its chemical unfolding, but only below the threshold where OLF loses tertiary structure. Representative moderate (OLFD380A) and severe (OLFI499F) disease variants aggregate differently, with rates comparable to OLFWT in initial stages of unfolding, and variants adopt distinct partially folded structures seen along the OLFWT urea-unfolding pathway. Whether initiated with mutation or chemical perturbation, unfolding propagates outward to the propeller surface. In sum, for this large protein prone to amyloid formation, the requirement for a conformational change to promote amyloid fibrillization leads to direct competition between unfolding and aggregation.
Subject(s)

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Glaucoma / Amyloid Limits: Humans Language: En Journal: Nat Commun Journal subject: BIOLOGIA / CIENCIA Year: 2024 Document type: Article Affiliation country: Estados Unidos

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Glaucoma / Amyloid Limits: Humans Language: En Journal: Nat Commun Journal subject: BIOLOGIA / CIENCIA Year: 2024 Document type: Article Affiliation country: Estados Unidos