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The putative phosphate transporter PitB (PP1373) is involved in tellurite uptake in Pseudomonas putida KT2440.
Montenegro, Rafael; Vieto, Sofía; Wicki-Emmenegger, Daniela; Vásquez-Castro, Felipe; Coronado-Ruiz, Carolina; Fuentes-Schweizer, Paola; Calderón, Paula; Pereira, Reinaldo; Chavarría, Max.
Afiliação
  • Montenegro R; Centro Nacional de Innovaciones Biotecnológicas (CENIBiot), CeNAT-CONARE, 1174-1200 San José, Costa Rica.
  • Vieto S; Centro Nacional de Innovaciones Biotecnológicas (CENIBiot), CeNAT-CONARE, 1174-1200 San José, Costa Rica.
  • Wicki-Emmenegger D; Escuela de Química, Universidad de Costa Rica, 11501-2060 San José, Costa Rica.
  • Vásquez-Castro F; Centro Nacional de Innovaciones Biotecnológicas (CENIBiot), CeNAT-CONARE, 1174-1200 San José, Costa Rica.
  • Coronado-Ruiz C; Centro de Investigaciones en Productos Naturales (CIPRONA), Universidad de Costa Rica, 11501-2060 San José, Costa Rica.
  • Fuentes-Schweizer P; Escuela de Química, Universidad de Costa Rica, 11501-2060 San José, Costa Rica.
  • Calderón P; Centro Nacional de Innovaciones Biotecnológicas (CENIBiot), CeNAT-CONARE, 1174-1200 San José, Costa Rica.
  • Pereira R; Escuela de Química, Universidad de Costa Rica, 11501-2060 San José, Costa Rica.
  • Chavarría M; Centro Nacional de Innovaciones Biotecnológicas (CENIBiot), CeNAT-CONARE, 1174-1200 San José, Costa Rica.
Microbiology (Reading) ; 167(2)2021 02.
Article em En | MEDLINE | ID: mdl-33346729
ABSTRACT
Tellurium oxyanions are chemical species of great toxicity and their presence in the environment has increased because of mining industries and photovoltaic and electronic waste. Recovery strategies for this metalloid that are based on micro-organisms are of interest, but further studies of the transport systems and enzymes responsible for implementing tellurium transformations are required because many mechanisms remain unknown. Here, we investigated the involvement in tellurite uptake of the putative phosphate transporter PitB (PP1373) in soil bacterium Pseudomonas putida KT2440. For this purpose, through a method based on the CRISPR/Cas9 system, we generated a strain deficient in the pitB gene and characterized its phenotype on exposing it to varied concentrations of tellurite. Growth curves and transmission electronic microscopy experiments for the wild-type and ΔpitB strains showed that both were able to internalize tellurite into the cytoplasm and reduce the oxyanion to black nano-sized and rod-shaped tellurium particles, although the ΔpitB strain showed an increased resistance to the tellurite toxic effects. At a concentration of 100 µM tellurite, where the biomass formation of the wild-type strain decreased by half, we observed a greater ability of ΔpitB to reduce this oxyanion with respect to the wild-type strain (~38 vs ~16 %), which is related to the greater biomass production of ΔpitB and not to a greater consumption of tellurite per cell. The phenotype of the mutant was restored on over-expressing pitB in trans. In summary, our results indicate that PitB is one of several transporters responsible for tellurite uptake in P. putida KT2440.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Telúrio / Proteínas de Bactérias / Pseudomonas putida / Proteínas de Transporte de Fosfato Idioma: En Ano de publicação: 2021 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Telúrio / Proteínas de Bactérias / Pseudomonas putida / Proteínas de Transporte de Fosfato Idioma: En Ano de publicação: 2021 Tipo de documento: Article