INIMEC - CONICET   05467
INSTITUTO DE INVESTIGACION MEDICA MERCEDES Y MARTIN FERREYRA
Unidad Ejecutora - UE
congresos y reuniones científicas
Título:
Bioinformatic analyses of a putative zinc periplasmic metallochaperone in Pseudomonas aeruginosa
Autor/es:
MIHELJ, PAULA; RAIMUNDA, DANIEL
Reunión:
Jornada; Biofísica en tiempos de COVID-19 : Primeras Jornadas Virtuales SAB 2020; 2020
Resumen:
Zinc (Zn2+) is fundamental in almost all living organisms participating as enzyme cofactor and signaling pathways. Several Zn2+ transporters families allocate the metalintracellularly for proper storage and protein metalation, or extracellularly to avoidaccumulation and toxicity. In Pseudomonas aeruginosa, YiiP, a member of the CationDiffusion Facilitator (CDF) family, exports Zn2+ from the cytosol to the periplasm. Due tothe in-transit toxicity of Zn2+, we hypothesize that YiiP transport activity is assisted bycytosolic and/or periplasmic metallochaperones, giving or receiving the metalrespectively. Up-stream the yiip/PA3963 gene, the locus PA3962, is classified as ahypothetical protein with unknown function and structure. A BLAST search for bacterialhomologs, points that this protein is unique to the Pseudomonadales clade. Bioinformaticstructural analyses, using the threading tool I-TASSER, showed that PA3962 has astructural similarity with CopZ, a Cu+ metallochaperone from Bacillus subtilis. At theprimary sequence level using LipoP, we identified in PA3962 a lipobox motif conserved inlipoproteins processed by Signal Peptidase II. Zn2+ quantification by atomic absorptionspectroscopy in cellular fractions of P. aeruginosa WT and the insertional mutant strainPA3962::Tn5 indicates increased Zn2+ levels in the inner membranes of PA3962::Tn5 vs.WT, but not in other fractions. Considering all the evidences gathered, we propose aworking model where PA3962 plays a role as a periplasmic metallochaperone located atthe inner membrane coordinating in-transit Zn2+.