Author | dc.contributor.author | Díaz Espinoza, Rodrigo | |
Author | dc.contributor.author | Garcés, Andrea P. | es_CL |
Author | dc.contributor.author | Arbildua, José J. | es_CL |
Author | dc.contributor.author | Montecinos, Felipe | es_CL |
Author | dc.contributor.author | Brunet, Juan E. | es_CL |
Author | dc.contributor.author | Lagos Mónaco, Rosalba | es_CL |
Author | dc.contributor.author | Monasterio Opazo, Octavio | |
Admission date | dc.date.accessioned | 2009-06-23T10:22:19Z | |
Available date | dc.date.available | 2009-06-23T10:22:19Z | |
Publication date | dc.date.issued | 2007-08 | |
Cita de ítem | dc.identifier.citation | PROTEIN SCIENCE, V.: 16, issue: 8, p.: 1543-1556, AUG 2007. | en |
Identifier | dc.identifier.issn | 0961-8368 | |
Identifier | dc.identifier.uri | https://repositorio.uchile.cl/handle/2250/118884 | |
Abstract | dc.description.abstract | FtsZ has two domains, the amino GTPase domain with a Rossmann fold, and the carboxyl domain that
resembles the chorismate mutase fold. Bioinformatics analyses suggest that the interdomain interaction
is stronger than the interaction of the protofilament longitudinal interfaces. Crystal B factor analysis of
FtsZ and detected conformational changes suggest a connection between these domains. The unfolding/
folding characteristics of each domain of FtsZ were tested by introducing tryptophans into the flexible
region of the amino (F135W) and the carboxyl (F275W and I294W) domains. As a control, the mutation
F40W was introduced in a more rigid part of the amino domain. These mutants showed a native-like
structure with denaturation and renaturation curves similar to wild type. However, the I294W mutant
showed a strong loss of functionality, both in vivo and in vitro when compared to the other mutants. The
functionality was recovered with the double mutant I294W/F275A, which showed full in vivo
complementation with a slight increment of in vitro GTPase activity with respect to the single mutant.
The formation of a stabilizing aromatic interaction involving a stacking between the tryptophan
introduced at position 294 and phenylalanine 275 could account for these results. Folding/unfolding of
these mutants induced by guanidinium chloride was compatible with a mechanism in which both
domains within the protein show the same stability during FtsZ denaturation and renaturation, probably
because of strong interface interactions. | en |
Patrocinador | dc.description.sponsorship | This work was supported by FONDECYT Grants 1050677 and 7060162. | en |
Lenguage | dc.language.iso | en | en |
Publisher | dc.publisher | COLD SPRING HARBOR LAB PRESS | en |
Keywords | dc.subject | FtsZ | en |
Título | dc.title | Domain folding and flexibility of Escherichia coli FtsZ determined by tryptophan site-directed mutagenesis | en |
Document type | dc.type | Artículo de revista | |