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Cullin3 - BTB interface:A novel target for stapled peptides

Authors :
Laura Zaccaro
Ivan de Paola
Emilia Pedone
Daniela Mazza
Luciano Pirone
Gaetano Malgieri
Luciana Esposito
Lucia Di Marcotullio
Luigi Russo
Nicole Balasco
Maddalena Palmieri
Luigi Vitagliano
Sonia Di Gaetano
de Paola, I
Pirone, L
Palmieri, M
Balasco, N
Esposito, L
Russo, Luigi
Mazzà, D
Di Marcotullio, L
Di Gaetano, S
Malgieri, Gaetano
Vitagliano, L
Pedone, E
Zaccaro, L.
Source :
PLoS ONE, Vol 10, Iss 4, p e0121149 (2015), PLoS ONE
Publication Year :
2015

Abstract

Cullin3 (Cul3), a key factor of protein ubiquitination, is able to interact with dozens of different proteins containing a BTB (Bric-a-brac, Tramtrack and Broad Complex) domain. We here targeted the Cul3-BTB interface by using the intriguing approach of stabilizing the innodataalpha-helical conformation of Cul3-based peptides through the "stapling" with a hydrocarbon cross-linker. In particular, by combining theoretical and experimental techniques, we designed and characterized stapled Cul3-based peptides embedding the helix 2 of the protein (residues 49-68). Intriguingly, CD and NMR experiments demonstrate that these stapled peptides were able to adopt the helical structure that the fragment assumes in the parent protein. We also show that some of these peptides were able to bind to the BTB of the tetrameric KCTD11, a substrate adaptor involved in HDAC1 degradation, with high affinity (300-600 nM). Cul3-derived staple peptides are also able to bind the BTB of the pentameric KCTD5. Interestingly, the affinity of these peptides is of the same order of magnitude of that reported for the interaction of full-length Cul3 with some BTB containing proteins. Moreover, present data indicate that stapling endows these peptides with an increased serum stability. Altogether, these findings indicate that the designed stapled peptides can efficiently mimic protein-protein interactions and are potentially able to modulate fundamental biological processes involving Cul3.

Details

Language :
English
Database :
OpenAIRE
Journal :
PLoS ONE, Vol 10, Iss 4, p e0121149 (2015), PLoS ONE
Accession number :
edsair.doi.dedup.....57ac55fc459e4e7a487443d49d8fcb6e