Data di Pubblicazione:
2008
Abstract:
To understand the role of sequence connectivity in the folding pathway of a multi-state protein, we have analysed
the folding kinetics of an engineered circularly permuted PDZ domain. This variant has been designed with the
specific aim of posing two of the strands participating in the stabilisation of an early folding nucleus as contiguous
elements in the primary structure. Folding of the circularly permuted PDZ2 has been explored by a variety of different
experimental approaches including stopped-flow and continuous-flow kinetics, as well as ligand-induced folding
experiments. Data reveal that although circular permutation introduces a significant destabilisation of the native
state, a folding intermediate is stabilised and accumulated prior folding. Furthermore, quantitative analysis of the
observed kinetics indicates an acceleration of the early folding events by more than two orders of magnitude. The
results support the importance of sequence connectivity both in the mechanism and the speed of protein folding.
Tipologia CRIS:
01.01 Articolo in rivista
Elenco autori:
Brunori, Maurizio; Morea, Veronica; Gianni, Stefano
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