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Overexpression and characterization of an iron storage and DNA-binding Dps protein from Trichodesmium erythraeum.


ABSTRACT: Although the role of iron in marine productivity has received a great deal of attention, no iron storage protein has been isolated from a marine microorganism previously. We describe an Fe-binding protein belonging to the Dps family (DNA binding protein from starved cells) in the N(2)-fixing marine cyanobacterium Trichodesmium erythraeum. A dps gene encoding a protein with significant levels of identity to members of the Dps family was identified in the genome of T. erythraeum. This gene codes for a putative Dps(T. erythraeurm) protein (Dps(tery)) with 69% primary amino acid sequence similarity to Synechococcus DpsA. We expressed and purified Dps(tery), and we found that Dps(tery), like other Dps proteins, is able to bind Fe and DNA and protect DNA from degradation by DNase. We also found that Dps(tery) binds phosphate, like other ferritin family proteins. Fe K near-edge X-ray absorption of Dps(tery) indicated that it has an iron core that resembles that of horse spleen ferritin.

SUBMITTER: Castruita M 

PROVIDER: S-EPMC1449065 | biostudies-literature | 2006 Apr

REPOSITORIES: biostudies-literature

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Overexpression and characterization of an iron storage and DNA-binding Dps protein from Trichodesmium erythraeum.

Castruita M M   Saito M M   Schottel P C PC   Elmegreen L A LA   Myneni S S   Stiefel E I EI   Morel F M M FM  

Applied and environmental microbiology 20060401 4


Although the role of iron in marine productivity has received a great deal of attention, no iron storage protein has been isolated from a marine microorganism previously. We describe an Fe-binding protein belonging to the Dps family (DNA binding protein from starved cells) in the N(2)-fixing marine cyanobacterium Trichodesmium erythraeum. A dps gene encoding a protein with significant levels of identity to members of the Dps family was identified in the genome of T. erythraeum. This gene codes f  ...[more]

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