scholarly journals Author response: Ternary structure of the outer membrane transporter FoxA with resolved signalling domain provides insights into TonB-mediated siderophore uptake

2019 ◽  
Author(s):  
Inokentijs Josts ◽  
Katharina Veith ◽  
Henning Tidow
Microbiology ◽  
2006 ◽  
Vol 152 (10) ◽  
pp. 3157-3166 ◽  
Author(s):  
Lynne H. Leach ◽  
Thomas A. Lewis

The compound pyridine-2,6-bis(thiocarboxylic acid) (PDTC) is known to be produced and excreted by three strains of Pseudomonas. Its reactivity includes the complete dechlorination of the environmental contaminant carbon tetrachloride. PDTC functions as a siderophore; however, roles as a ferric reductant and antimicrobial agent have also been proposed. PDTC function and regulation were further explored by characterizing the phenotypes of mutants in predicted membrane transporter genes. The functions of a predicted outer-membrane transporter (PdtK) and a predicted inner-membrane permease (PdtE) were examined in Pseudomonas putida DSM 3601. Uptake of iron from 55Fe(III):PDTC, and bioutilization of PDTC in a chelated medium, were dependent upon PdtK and PdtE. Another strain of P. putida (KT2440), which lacks pdt orthologues, showed growth inhibition by PDTC that could be relieved by introducing a plasmid containing pdtKCPE. Transcriptional activation in response to exogenously added PDTC (25 μM) was unaltered by the pdtK or pdtE mutations; each mutant showed activation of a pdt transcriptional reporter, indistinguishable from an isogenic PDTC utilization-proficient strain. The data demonstrate that PdtK and PdtE constitute a bipartite outer-membrane/inner-membrane transport system for iron acquisition from Fe(III):PDTC. Disruptions in this portion of the P. putida DSM 3601 pdt gene cluster do not abolish PDTC-dependent transcriptional signalling.


2019 ◽  
Vol 117 (8) ◽  
pp. 1476-1484 ◽  
Author(s):  
Thushani D. Nilaweera ◽  
David A. Nyenhuis ◽  
Robert K. Nakamoto ◽  
David S. Cafiso

2009 ◽  
Vol 96 (3) ◽  
pp. 272a
Author(s):  
James C. Gumbart ◽  
Michael C. Wiener ◽  
Emad Tajkhorshid

2012 ◽  
Vol 462 ◽  
pp. 480-484
Author(s):  
Ren Feng Li ◽  
Kun Zhao ◽  
Xue Bin Li ◽  
Jin Qing Jiang ◽  
San Hu Wang

TbpA is a highly conserved transmembrane protein that may serve as a channel for transport of iron across the outer membrane, which is required for transferrin utilization and is responsible for removing the iron from transferrin and for transporting iron across the outer membrane in a TonB-dependent manner. In the present study, a 3D homology modeling of TbpA from Actinobacillus pleuropneumoniae (App) L20 strain, based upon the Crystal structure of the hemehemoglobin outer membrane transporter ShuA from Shigella dysenteriae (PDB code: 3fhh) was performed using bioinformatics tools, as no experimental 3D structures. The program VERIFY 3D assessed the quality of the predicted structure of TbpA with acceptable scores. All the results converged to the fact that the predicted 3-Dimenrsional structure of TbpA is of good quality with acceptable scores.


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