MassIVE MSV000083575

Partial Public PXD013099

Glycogen synthesis jump-starts photosynthesis through the G6P shunt in cyanobacteria

Description

Proteomics analysis on Synechococcus elongatus PCC 7942 wild type and glycogen mutant cells. Cells growing under the light and dark incubated cells were analyzed for their protein abundance profile. [doi:10.25345/C52G9C] [dataset license: CC0 1.0 Universal (CC0 1.0)]

Keywords: Photosynthesis ; Glycogen synthesis ; G6P shunt ; oxidative pentose phosphate pathway ; cyanobacteria

Contact

Principal Investigators:
(in alphabetical order)
XIN WANG, Miami University, United States
Submitting User: wangx98

Publications

Shinde S, Zhang X, Singapuri SP, Kalra I, Liu X, Morgan-Kiss RM, Wang X.
Glycogen Metabolism Supports Photosynthesis Start through the Oxidative Pentose Phosphate Pathway in Cyanobacteria.
Plant Physiol. 2020 Jan;182(1):507-517. Epub 2019 Oct 24.

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Identification Results
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Quantification Results
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Originally identified proteins that were automatically remapped by MassIVE to proteins in the SwissProt human reference database.

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Number of distinct protein accessions reported across all analyses (original submission and reanalyses) associated with this dataset.

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Distinct protein accessions are counted across all files submitted in the "Statistical Analysis of Quantified Analytes" category having a "Protein" column in this dataset.

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Number of distinct proteins found to be differentially abundant in at least one comparison across all analyses (original submission and reanalyses) associated with this dataset.

A protein is differentially abundant if its change in abundance across conditions is found to be statistically significant with an adjusted p-value <= 0.05 and lists no issues associated with statistical tests for differential abundance.

Distinct protein accessions are counted across all files submitted in the "Statistical Analysis of Quantified Analytes" category having a "Protein" column in this dataset.

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