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Bacterial Form I’ rubisco has smaller carbon isotope fractionation than its Form I counterpart

Authors :
Renée Z. Wang
Albert K. Liu
Douglas M. Banda
Woodward W. Fischer
Patrick M. Shih
Publication Year :
2023
Publisher :
Cold Spring Harbor Laboratory, 2023.

Abstract

Form I rubiscos evolved in Cyanobacteria ≥2.5 billion years ago and are enzymatically unique due to the presence of small subunits (RbcS) that cap both ends of an octameric large subunit (RbcL) rubisco assembly to form a hexadecameric (L8S8) holoenzyme. Although RbcS was previously thought to be integral to Form I rubisco stability, the recent discovery of a closely related sister clade of octameric rubiscos (Form I’; L8) demonstrates that the enzyme complex assembles without small subunits (Banda et al. 2020). Rubisco also displays a kinetic isotope effect (KIE) where the 3PG product is depleted in13C relative to12C. In Cyanobacteria only two Form I KIE measurements exist, making interpretation of bacterial carbon isotope data difficult. To aid comparison, we measuredin vitrothe KIEs of Form I’ (CandidatusPromineofilum breve) and Form I (Synechococcus elongatusPCC 6301) rubiscos and found the KIE to be smaller in the L8rubisco (16.25 ± 1.36‰ vs. 22.42 ± 2.37‰ respectively). Therefore, while small subunits may not be necessary for protein stability, they may affect the KIE. Our findings may provide insight into the function of RbcS and allow more refined interpretation of environmental carbon isotope data.

Details

Database :
OpenAIRE
Accession number :
edsair.doi...........271b9f4c987ab07d31f6663d3676b7ba
Full Text :
https://doi.org/10.1101/2023.03.01.530675