Item talk:Q251450
From geokb
{
"USGS Publications Warehouse": { "@context": "https://schema.org", "@type": "Article", "additionalType": "Journal Article", "name": "A novel photosynthetic strategy for adaptation to low-iron aquatic environments", "identifier": [ { "@type": "PropertyValue", "propertyID": "USGS Publications Warehouse IndexID", "value": "70036783", "url": "https://pubs.usgs.gov/publication/70036783" }, { "@type": "PropertyValue", "propertyID": "USGS Publications Warehouse Internal ID", "value": 70036783 }, { "@type": "PropertyValue", "propertyID": "DOI", "value": "10.1021/bi1009425", "url": "https://doi.org/10.1021/bi1009425" }, { "@type": "PropertyValue", "propertyID": "ISSN", "value": "00062960" } ], "journal": { "@type": "Periodical", "name": "Biochemistry", "volumeNumber": "50", "issueNumber": "5" }, "inLanguage": "en", "isPartOf": [ { "@type": "CreativeWorkSeries", "name": "Biochemistry" } ], "datePublished": "2011", "dateModified": "2020-12-21", "abstract": "Iron (Fe) availability is a major limiting factor for primary production in aquatic environments. Cyanobacteria respond to Fe deficiency by derepressing the\u00a0isiAB\u00a0operon, which encodes the antenna protein IsiA and flavodoxin. At nanomolar Fe concentrations, a PSI\u2212IsiA supercomplex forms, comprising a PSI trimer encircled by two complete IsiA rings. This PSI\u2212IsiA supercomplex is the largest photosynthetic membrane protein complex yet isolated. This study presents a detailed characterization of this complex using transmission electron microscopy and ultrafast fluorescence spectroscopy. Excitation trapping and electron transfer are highly efficient, allowing cyanobacteria to avoid oxidative stress. 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