Cys mutants in functional regions of Sticholysin I clarify the participation of these residues in pore formation
Artículo
Open/ Download
Publication date
2011Metadata
Show full item record
Cómo citar
Valle, A.
Cómo citar
Cys mutants in functional regions of Sticholysin I clarify the participation of these residues in pore formation
Author
Abstract
Experimental evidence shows that the mechanism of pore formation by actinoporins is a multistep process, involving binding of the water-soluble monomer to the membrane and subsequent oligomerization on the membrane surface, leading to the formation of a functional pore. However, as for other eukaryotic pore-forming toxins, the molecular details of the mechanism of membrane insertion and oligomerization are not clear. In order to obtain further insight with regard to the structure-function relationship in sticholysins, we designed and produced three cysteine mutants of recombinant sticholysin I (rStI) in relevant functional regions for membrane interaction: StI E2C and StI F15C (in the N-terminal region) and StI R52C (in the membrane binding site). The conformational characterization derived from fluorescence and CD spectroscopic studies of StI E2C, StI F15C and StI R52C suggests that replacement of these residues by Cys in rStI did not noticeably change the conformation of the protein.
Indexation
Artículo de publicación SCOPUS
Identifier
URI: https://repositorio.uchile.cl/handle/2250/165272
DOI: 10.1016/j.toxicon.2011.04.005
ISSN: 00410101
18793150
Quote Item
Toxicon, Volumen 58, Issue 1, 2018, Pages 8-17
Collections