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  • Catalysis of proline isomerization and molecular chaperone activity in a tug-of-war.

Catalysis of proline isomerization and molecular chaperone activity in a tug-of-war.

Nature communications (2020-11-29)
Filippo Favretto, David Flores, Jeremy D Baker, Timo Strohäker, Loren B Andreas, Laura J Blair, Stefan Becker, Markus Zweckstetter
ABSTRACT

Catalysis of cis/trans isomerization of prolines is important for the activity and misfolding of intrinsically disordered proteins. Catalysis is achieved by peptidylprolyl isomerases, a superfamily of molecular chaperones. Here, we provide atomic insight into a tug-of-war between cis/trans isomerization and molecular chaperone activity. Catalysis of proline isomerization by cyclophilin A lowers the energy barrier for α-synuclein misfolding, while isomerase-binding to a separate, disease-associated protein region opposes aggregation. We further show that cis/trans isomerization outpowers the holding activity of cyclophilin A. Removal of the proline isomerization barrier through posttranslational truncation of α-synuclein reverses the action of the proline isomerase and turns it into a potent molecular chaperone that inhibits protein misfolding. The data reveal a conserved mechanism of dual functionality in cis/trans isomerases and define its molecular determinants acting on intrinsically disordered proteins.

MATERIALS
Product Number
Brand
Product Description

Sigma-Aldrich
4′,6-Diamidino-2-phenylindole dihydrochloride, suitable for fluorescence, BioReagent, ≥95.0% (HPLC)
Sigma-Aldrich
ANTI-FLAG® antibody, Rat monoclonal, clone 6F7, purified from hybridoma cell culture
Sigma-Aldrich
Anti-α-Synuclein antibody, Mouse monoclonal, clone Syn211, purified from hybridoma cell culture