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All-Atom Simulations Reveal How Single-Point Mutations Promote Serpin Misfolding

Authors :
S. a Beccara
Pietro Faccioli
Giovanni Spagnolli
Fang Wang
Simone Orioli
Anne Gershenson
Patrick L. Wintrode
Alan Ianeselli
Wang, F
Orioli, S
Ianeselli, A
Spagnolli, G
a Beccara, S
Gershenson, A
Faccioli, P
Wintrode, P
Publication Year :
2018
Publisher :
Cell Press, 2018.

Abstract

Protein misfolding is implicated in many diseases, including the serpinopathies. For the canonical inhibitory serpin {\alpha}1-antitrypsin (A1AT), mutations can result in protein deficiencies leading to lung disease, and misfolded mutants can accumulate in hepatocytes leading to liver disease. Using all-atom simulations based on the recently developed Bias Functional algorithm we elucidate how wild-type A1AT folds and how the disease-associated S (Glu264Val) and Z (Glu342Lys) mutations lead to misfolding. The deleterious Z mutation disrupts folding at an early stage, while the relatively benign S mutant shows late stage minor misfolding. A number of suppressor mutations ameliorate the effects of the Z mutation and simulations on these mutants help to elucidate the relative roles of steric clashes and electrostatic interactions in Z misfolding. These results demonstrate a striking correlation between atomistic events and disease severity and shine light on the mechanisms driving chains away from their correct folding routes.<br />Comment: Final version. Supplementary Information included

Details

Language :
English
Database :
OpenAIRE
Accession number :
edsair.doi.dedup.....cdd76a8f251eb9ae24e02a8110a61ed8