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Absolute quantification of cellular levels of photosynthesis-related proteins in Synechocystis sp. PCC 6803

Philip J. Jackson; Andrew Hitchcock; Amanda A. Brindley; Mark J. Dickman; C. Neil Hunter
Photosynthesis Research · Vol. 155, Issue 3 · pp. 219-245 · 2023

Abstract

Quantifying cellular components is a basic and important step for understanding how a cell works, how it responds to environmental changes, and for re-engineering cells to produce valuable metabolites and increased biomass. We quantified proteins in the model cyanobacterium Synechocystis sp. PCC 6803 given the general importance of cyanobacteria for global photosynthesis, for synthetic biology and biotechnology research, and their ancestral relationship to the chloroplasts of plants. Four mass spectrometry methods were used to quantify cellular components involved in the biosynthesis of chlorophyll, carotenoid and bilin pigments, membrane assembly, the light reactions of photosynthesis, fixation of carbon dioxide and nitrogen, and hydrogen and sulfur metabolism. Components of biosynthetic pathways, such as those for chlorophyll or for photosystem II assembly, range between 1000 and 10,000 copies per cell, but can be tenfold higher for CO 2 fixation enzymes. The most abundant subunits are those for photosystem I, with around 100,000 copies per cell, approximately 2 to fivefold higher than for photosystem II and ATP synthase, and 5–20 fold more than for the cytochrome b 6 f complex. Disparities between numbers of pathway enzymes, between components of electron transfer chains, and between subunits within complexes indicate possible control points for biosynthetic processes, bioenergetic reactions and for the assembly of multisubunit complexes.

Bibliographic Information

JournalPhotosynthesis Research
PublisherSpringer
Publication Date2023-03-01
Publication Year2023
Volume155
Issue3
Pages219-245
Document TypeJournal Article
Print ISSN0166-8595
eISSN1573-5079
DOI10.1007/s11120-022-00990-z

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NARA Access Coverage1980-01-01~Current
Journal Homepagehttps://www.springer.com/journal/11120
Publisher PageOpen Publisher Page
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