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Elife ; 72018 05 24.
Article in English | MEDLINE | ID: mdl-29792261

ABSTRACT

Sulfur, most abundantly found in the environment as sulfate (SO42-), is an essential element in metabolites required by all living cells, including amino acids, co-factors and vitamins. However, current understanding of the cellular delivery of SO42- at the molecular level is limited. CysZ has been described as a SO42- permease, but its sequence family is without known structural precedent. Based on crystallographic structure information, SO42- binding and flux experiments, we provide insight into the molecular mechanism of CysZ-mediated translocation of SO42- across membranes. CysZ structures from three different bacterial species display a hitherto unknown fold and have subunits organized with inverted transmembrane topology. CysZ from Pseudomonas denitrificans assembles as a trimer of antiparallel dimers and the CysZ structures from two other species recapitulate dimers from this assembly. Mutational studies highlight the functional relevance of conserved CysZ residues.


Subject(s)
Alteromonadaceae/enzymology , Alteromonadaceae/metabolism , Membrane Transport Proteins/chemistry , Membrane Transport Proteins/metabolism , Pseudomonas/enzymology , Pseudomonas/metabolism , Sulfates/metabolism , Computational Biology , Crystallography, X-Ray , Protein Conformation , Protein Multimerization
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