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Single-Molecule Folding Mechanism of an EF-Hand Neuronal Calcium Sensor

Academic Article
Publication Date:
2013
abstract:
EF-hand calcium sensors respond structurally to changes in intracellular Ca2+ concentration, triggering diverse cellular responses and resulting in broad interactomes. Despite impressive advances in decoding their structure-function relationships, the folding mechanism of neuronal calcium sensors is still elusive. We used single-molecule optical tweezers to study the folding mechanism of the human neuronal calcium sensor 1 (NCS1). Two intermediate structures induced by Ca2+ binding to the EF-hands were observed during refolding. The complete folding of the C domain is obligatory for the folding of the N domain, showing striking interdomain dependence. Molecular dynamics results reveal the atomistic details of the unfolding process and rationalize the different domain stabilities during mechanical unfolding. Through constant-force experiments and hidden Markov model analysis, the free energy landscape of the protein was reconstructed. Our results emphasize that NCS1 has evolved a remarkable complex interdomain cooperativity and a fundamentally different folding mechanism compared to structurally related proteins.
Iris type:
01.01 Articolo in rivista
List of contributors:
Bellucci, Luca; Cecconi, Ciro; DI FELICE, Rosa; Corni, Stefano
Authors of the University:
BELLUCCI LUCA
DI FELICE ROSA
Handle:
https://iris.cnr.it/handle/20.500.14243/249484
Published in:
STRUCTURE
Journal
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