Protein-protein interactions involving intrinsically disordered proteins are important for cellular function and common in all organisms. However, it is not clear how such interactions emerge and evolve on a molecular level. We performed phylogenetic reconstruction, resurrection and biophysical characterization of two interacting disordered protein domains, CID and NCBD. CID appeared after the divergence of protostomes and deuterostomes 450-600 million years ago, while NCBD was present in the protostome/deuterostome ancestor. The most ancient CID/NCBD formed a relatively weak complex (Kd∼5 µM). At the time of the first vertebrate-specific whole genome duplication, the affinity had increased (Kd∼200 nM) and was maintained in further speciation. Experiments together with molecular modeling using NMR chemical shifts suggest that new interactions involving intrinsically disordered proteins may evolve via a low-affinity complex which is optimized by modulating direct interactions as well as dynamics, while tolerating several potentially disruptive mutations.

Emergence and evolution of an interaction between intrinsically disordered proteins / G. Hultqvist, E. Åberg, C. Camilloni, G.N. Sundell, E. Andersson, J. Dogan, C.N. Chi, M. Vendruscolo, P. Jemth. - In: ELIFE. - ISSN 2050-084X. - 6(2017 Apr 11). [10.7554/eLife.16059]

Emergence and evolution of an interaction between intrinsically disordered proteins

C. Camilloni;
2017

Abstract

Protein-protein interactions involving intrinsically disordered proteins are important for cellular function and common in all organisms. However, it is not clear how such interactions emerge and evolve on a molecular level. We performed phylogenetic reconstruction, resurrection and biophysical characterization of two interacting disordered protein domains, CID and NCBD. CID appeared after the divergence of protostomes and deuterostomes 450-600 million years ago, while NCBD was present in the protostome/deuterostome ancestor. The most ancient CID/NCBD formed a relatively weak complex (Kd∼5 µM). At the time of the first vertebrate-specific whole genome duplication, the affinity had increased (Kd∼200 nM) and was maintained in further speciation. Experiments together with molecular modeling using NMR chemical shifts suggest that new interactions involving intrinsically disordered proteins may evolve via a low-affinity complex which is optimized by modulating direct interactions as well as dynamics, while tolerating several potentially disruptive mutations.
English
Affinity; Evolution; Protein-protein interaction; biophysics; computational biology; intrinsically disordered proteins; molecular dynamics; none; phylogenetic reconstruction; structural biology; systems biology
Settore FIS/07 - Fisica Applicata(Beni Culturali, Ambientali, Biol.e Medicin)
Articolo
Esperti anonimi
Pubblicazione scientifica
11-apr-2017
6
e16059
Pubblicato
Periodico con rilevanza internazionale
Aderisco
info:eu-repo/semantics/article
Emergence and evolution of an interaction between intrinsically disordered proteins / G. Hultqvist, E. Åberg, C. Camilloni, G.N. Sundell, E. Andersson, J. Dogan, C.N. Chi, M. Vendruscolo, P. Jemth. - In: ELIFE. - ISSN 2050-084X. - 6(2017 Apr 11). [10.7554/eLife.16059]
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G. Hultqvist, E. Åberg, C. Camilloni, G.N. Sundell, E. Andersson, J. Dogan, C.N. Chi, M. Vendruscolo, P. Jemth
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/494754
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