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Deletion of a single helix from the transmembrane domain causes large changes in membrane insertion properties and secondary structure of the bacterial conjugation protein TrwB

Abstract: TrwB is an essential protein in the conjugative transfer of plasmid R388. The protein consists of a bulky cytosolic domain containing the catalytic site, and a small transmembrane domain (TMD). Our previous studies support the idea that the TMD plays an essential role in the activity, structure and stability of the protein. We have prepared a mutant, TrwB?N50 that lacks one of the two ?-helices in the TMD. The mutant has been studied both in detergent suspension and reconstituted in lipid vesicles. Deletion of a single helix from the TMD is enough to increase markedly the affinity of TrwB for ATP. The deletion changes the secondary structure of the cytosolic domain, whose infrared spectroscopy (IR) spectra become similar to those of the mutant TrwB?N70 lacking the whole TMD. Interestingly, when TrwB?N50 is reconstituted into lipid membranes, the cytosolic domain orients itself towards the vesicle interior, opposite to what happens for wild-type TrwB. In addition, we analyze the secondary structure of the TMD and TMD-lacking mutant TrwB?N70, and found that the sum IR spectrum of the two protein fragments is different from that of the native protein, indicating the irreversibility of changes caused in TrwB by deletion of the TMD.

 Autoría: Vecino A.J., Segura R.D.L., De La Arada I., De La Cruz F., Goñi F.M., Arrondo J.L., Alkorta I.,

 Fuente: Biochimica et Biophysica Acta - Biomembranes, 2012, 1818(12), 3158-3166

Editorial: Elsevier

 Fecha de publicación: 01/12/2012

Nº de páginas: 9

Tipo de publicación: Artículo de Revista

 DOI: 10.1016/j.bbamem.2012.08.015

ISSN: 0005-2736,1879-2642

 Proyecto español: BFU2007-62062

Url de la publicación: https://doi.org/10.1016/j.bbamem.2012.08.015

Autoría

VECINO, ANA JULIA

SEGURA, ROSA DE LIMA

ARADA, IGOR DE LA

GOÑI, FÉLIX M.

ARRONDO, JOSÉ L.

ALKORTA, ITZIAR