Predicting Rubisco-Linker Condensation from Titration in the Dilute Phase

The condensation of Rubisco holoenzymes and linker proteins into "pyrenoids," a crucial supercharger of photosynthesis in algae, is qualitatively understood in terms of "sticker-and-spacer" theory. We derive semianalytical partition sums for small Rubisco-linker aggregates, which...

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Veröffentlicht in:Physical review letters 2024-05, Vol.132 (21), p.218401-218401, Article 218401
Hauptverfasser: Payne-Dwyer, Alex, Kumar, Gaurav, Barrett, James, Gherman, Laura K, Hodgkinson, Michael, Plevin, Michael, Mackinder, Luke, Leake, Mark C, Schaefer, Charley
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Sprache:eng
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Zusammenfassung:The condensation of Rubisco holoenzymes and linker proteins into "pyrenoids," a crucial supercharger of photosynthesis in algae, is qualitatively understood in terms of "sticker-and-spacer" theory. We derive semianalytical partition sums for small Rubisco-linker aggregates, which enable the calculation of both dilute-phase titration curves and dimerization diagrams. By fitting the titration curves to surface plasmon resonance and single-molecule fluorescence microscopy data, we extract the molecular properties needed to predict dimerization diagrams. We use these to estimate typical concentrations for condensation, and successfully compare these to microscopy observations.
ISSN:0031-9007
1079-7114
DOI:10.1103/PhysRevLett.132.218401