Polyphosphate acts as an architectural regulator of carbon fixation and nucleoid structure in cyanobacteria
Claire E. Dudley, Daniel J. Foust, David F. Savage, Julie S. Biteen, Anthony G. VecchiarelliABSTRACT
Polyphosphate (polyP) is a conserved inorganic polymer traditionally viewed as a stress-induced phosphate and energy reserve. In cyanobacteria, however, polyP granules are constitutively present and are frequently observed in close proximity to carboxysomes, the bacterial microcompartments that mediate CO
2
fixation. Here, we show that polyP functions as a spatially organized regulator of the photosynthetic cytoplasm in
IMPORTANCE
Polyphosphate (polyP) is a ubiquitous storage polymer found across all three domains of life. In bacteria, polyP is involved in virulence, energy metabolism, DNA structure, and stress. Here, we investigate the physical and functional relationships between polyP and the carboxysome—a carbon-fixing organelle that encapsulates the most abundant enzyme on Earth and is responsible for a significant amount of atmospheric CO 2 sequestration. We discover that polyP is important for proper carboxysome assembly and organization in the cell and is also required for robust cell growth under ambient CO 2 conditions. As carboxysomes are one class of the broader group of bacterial microcompartments, these findings have broader implications for polyP in the function and organization of the bacterial cytoplasm.