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iTRAQ-based quantitative proteomic analysis of Gloeothece sp PCC 6909: Comparison with its sheathless mutant and adaptations to nitrate deficiency and sulfur limitation

Title
iTRAQ-based quantitative proteomic analysis of Gloeothece sp PCC 6909: Comparison with its sheathless mutant and adaptations to nitrate deficiency and sulfur limitation
Type
Article in International Scientific Journal
Year
2011
Authors
Sara B Pereira
(Author)
Other
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Saw Yen Ow
(Author)
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Martin E Barrios Llerena
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Phillip C Wright
(Author)
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Pedro Moradas Ferreira
(Author)
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Journal
Title: Journal of ProteomicsImported from Authenticus Search for Journal Publications
Vol. 75
Pages: 270-283
ISSN: 1874-3919
Publisher: Elsevier
Scientific classification
FOS: Natural sciences > Biological sciences
Other information
Authenticus ID: P-002-HRP
Abstract (EN): Gloeothece sp. PCC 6909 is a unicellular N(2)-fixing cyanobacterium with a well defined and highly developed sheath surrounding its cells. A sheathless mutant of this strain was previously obtained by chemical mutagenesis and, although lacking the sheath, it releases large amounts of polysaccharides into the culture medium. To provide a global understanding on the metabolic differences between the two phenotypes, the proteomes of the wild type and mutant were analyzed using a cross-species proteomics approach coupled with iTRAQ isobaric tagging technology, since their genome sequences are not yet available. Effects arising from the presence/absence of nitrate and sulfur are presented as two metabolically directed follow-up iTRAQ studies. These nutrients are believed to play a major role in Gloeothece's metabolism, including the production of extracellular polymeric substances - EPS. 454, 124, and 53 proteins were identified and reliably quantified using homology anchoring approaches for iTRAQ previously described. The results obtained strongly suggest that the chemical mutagenesis affected the regulation of a number of key cellular processes, as revealed by the significant fold changes observed for proteins covering a large spectrum of functional groups. Moreover, they provide new insights on the adaptations of Gloeothece cells to nitrate-deficiency and sulfur-limitation.
Language: English
Type (Professor's evaluation): Scientific
Contact: p.c.wright@sheffield.ac.uk; pmtamagn@ibmc.up.pt
No. of pages: 14
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