| Literature DB >> 33539879 |
Lorenzo Visconti1, Francesca Malagrinò1, Francesca Troilo1, Livia Pagano1, Angelo Toto2, Stefano Gianni3.
Abstract
Although the vast majority of the human proteome is represented by multi-domain proteins, the study of multi-domain folding and misfolding is a relatively poorly explored field. The protein Whirlin is a multi-domain scaffolding protein expressed in the inner ear. It is characterized by the presence of tandem repeats of PDZ domains. The first two PDZ domains of Whirlin (PDZ1 and PDZ2 - namely P1P2) are structurally close and separated by a disordered short linker. We recently described the folding mechanism of the P1P2 tandem. The difference in thermodynamic stability of the two domains allowed us to selectively unfold one or both PDZ domains and to pinpoint the accumulation of a misfolded intermediate, which we demonstrated to retain physiological binding activity. In this work, we provide an extensive characterization of the folding and unfolding of P1P2. Based on the observed data, we describe an integrated kinetic analysis that satisfactorily fits the experiments and provides a valuable model to interpret multi-domain folding. The experimental and analytical approaches described in this study may be of general interest for the interpretation of complex multi-domain protein folding kinetics.Entities:
Keywords: PDZ domain; Whirlin; folding intermediate; kinetics; multidomain protein folding
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Year: 2021 PMID: 33539879 DOI: 10.1016/j.jmb.2021.166862
Source DB: PubMed Journal: J Mol Biol ISSN: 0022-2836 Impact factor: 5.469