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Human Small Heat Shock Protein B8 Inhibits Protein Aggregation without Affecting the Native Folding Process.
Choudhary, Dhawal; Mediani, Laura; Avellaneda, Mario J; Bjarnason, Sveinn; Alberti, Simon; Boczek, Edgar E; Heidarsson, Pétur O; Mossa, Alessandro; Carra, Serena; Tans, Sander J; Cecconi, Ciro.
Afiliação
  • Choudhary D; Department of Physics, Informatics and Mathematics, University of Modena and Reggio Emilia, 41125 Modena, Italy.
  • Mediani L; Center S3, CNR Institute Nanoscience, Via Campi 213/A, 41125 Modena, Italy.
  • Avellaneda MJ; FOM Institute AMOLF, Science Park 104, 1098 XG Amsterdam, The Netherlands.
  • Bjarnason S; Department of Biomedical, Metabolic and Neural Sciences, and Centre for Neuroscience and Neurotechnology, University of Modena and Reggio Emilia, Via G. Campi 287, 41125 Modena, Italy.
  • Alberti S; FOM Institute AMOLF, Science Park 104, 1098 XG Amsterdam, The Netherlands.
  • Boczek EE; Department of Biochemistry, Science Institute, University of Iceland, Sturlugata 7, 102 Reykjavík, Iceland.
  • Heidarsson PO; Max Planck Institute of Molecular Cell Biology and Genetics, Pfotenhauerstr. 108, D-01307 Dresden, Germany.
  • Mossa A; Max Planck Institute of Molecular Cell Biology and Genetics, Pfotenhauerstr. 108, D-01307 Dresden, Germany.
  • Carra S; Department of Biochemistry, Science Institute, University of Iceland, Sturlugata 7, 102 Reykjavík, Iceland.
  • Tans SJ; Center S3, CNR Institute Nanoscience, Via Campi 213/A, 41125 Modena, Italy.
  • Cecconi C; INFN Firenze, Via Sansone 1, 50019 Sesto Fiorentino, Italy.
J Am Chem Soc ; 145(28): 15188-15196, 2023 07 19.
Article em En | MEDLINE | ID: mdl-37411010
ABSTRACT
Small Heat Shock Proteins (sHSPs) are key components of our Protein Quality Control system and are thought to act as reservoirs that neutralize irreversible protein aggregation. Yet, sHSPs can also act as sequestrases, promoting protein sequestration into aggregates, thus challenging our understanding of their exact mechanisms of action. Here, we employ optical tweezers to explore the mechanisms of action of the human small heat shock protein HSPB8 and its pathogenic mutant K141E, which is associated with neuromuscular disease. Through single-molecule manipulation experiments, we studied how HSPB8 and its K141E mutant affect the refolding and aggregation processes of the maltose binding protein. Our data show that HSPB8 selectively suppresses protein aggregation without affecting the native folding process. This anti-aggregation mechanism is distinct from previous models that rely on the stabilization of unfolded polypeptide chains or partially folded structures, as has been reported for other chaperones. Rather, it appears that HSPB8 selectively recognizes and binds to aggregated species formed at the early stages of aggregation, preventing them from growing into larger aggregated structures. Consistently, the K141E mutation specifically targets the affinity for aggregated structures without impacting native folding, and hence impairs its anti-aggregation activity.
Assuntos

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Proteínas de Choque Térmico Pequenas / Agregados Proteicos Idioma: En Ano de publicação: 2023 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Proteínas de Choque Térmico Pequenas / Agregados Proteicos Idioma: En Ano de publicação: 2023 Tipo de documento: Article