bioRxiv · 10.1101/2021.12.06.471529
Decoding the absolute stoichiometric composition and structural plasticity of α-carboxysomes
Abstract
Carboxysomes are anabolic bacterial microcompartments that play an essential role in carbon fixation in cyanobacteria and some chemoautotrophs. This self-assembling organelle encapsulates the key CO2-fixing enzymes, Rubisco, and carbonic anhydrase using a polyhedral protein shell that is constructed by hundreds of shell protein paralogs. The -carboxysome from the chemoautotroph Halothiobacillus neapolitanus serves as a model system in fundamental studies and synthetic engineering of carboxysomes. Here we adopt a QconCAT-based quantitative mass spectrometry to determine the absolute stoichiometric composition of native -carboxysomes from H. neapolitanus. We further performed an in-depth comparison of the protein stoichiometry of native and recombinant -carboxysomes heterologously generated in Escherichia coli to evaluate the structural variability and remodeling of -carboxysomes. Our results provide insight into the molecular principles that mediate carboxysome assembly, which may aid in rational design and reprogramming of carboxysomes in new contexts for biotechnological applications.
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Sun, Y., Harman, V., Johnson, J., Chen, T., Dykes, G., Lin, Y., Beynon, R. J., Liu, L.. 2021-12-07. Decoding the absolute stoichiometric composition and structural plasticity of α-carboxysomes. https://doi.org/10.1101/2021.12.06.471529
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