ABSTRACT Cyanobacteria are the prokaryotic group of phytoplankton responsible for a significant fraction of global CO2 fixation. Like plants, cyanobacteria use the enzyme ribulose 1,5-bisphosphate carboxylase/oxidase (Rubisco) to fix CO2 into organic carbon molecules via the Calvin-Benson-Bassham cycle. Unlike plants, cyanobacteria evolved a carbon-concentrating organelle called the carboxysome—a proteinaceous compartment that encapsulates and concentrates Rubisco along with its CO2 substrate. In the rod-shaped cyanobacterium Synechococcus elongatus PCC 7942, we recently identified the McdAB system responsible for uniformly distributing carboxysomes along the cell length. It remains unknown what role carboxysome positioning plays with respe...
Carboxysomes are membrane-free organelles for carbon assimilation in cyanobacteria. The carboxysome ...
Carboxysomes are organelle-like polyhedral bodies found in cyanobacteria and many chemoautotrophic b...
Abstract. Cyanobacteria have developed an effective photosynthetic CO2 concentrating mechanism (CCM)...
Carboxysomes are the specific CO2-fixing microcompartments in all cyanobacteria. Although it is know...
Cyanobacterial CO2-fixation is supported by a CO2-concentrating mechanism which improves photosynthe...
The carbon dioxide (CO2)-concentrating mechanism of cyanobacteria is characterized by the occurrence...
<div><p>Cyanobacterial CO<sub>2</sub>-fixation is supported by a CO<sub>2</sub>-concentrating mechan...
Carboxysomes are the specific CO2-fixing microcompartments in all cyanobacteria. Although it is know...
Cyanobacterial CO(2)-fixation is supported by a CO(2)-concentrating mechanism which improves photosy...
Cells use compartmentalization of enzymes as a strategy to regulate metabolic pathways and increase ...
RuBisCO (ribulose 1,5-bisphosphate carboxylase/oxygenase) is one the most abundant enzymes on Earth....
Carbon fixation in cyanobacteria makes a major contribution to the global carbon cycle. The cyanobac...
Cells use compartmentalization of enzymes as a strategy to regulate metabolic pathways and increase ...
ABSTRACT Carboxysomes are central to the carbon dioxide-concentrating mechanism (CCM) and carbon fix...
Carbon fixation in cyanobacteria makes a major contribution to the global carbon cycle. The cyanobac...
Carboxysomes are membrane-free organelles for carbon assimilation in cyanobacteria. The carboxysome ...
Carboxysomes are organelle-like polyhedral bodies found in cyanobacteria and many chemoautotrophic b...
Abstract. Cyanobacteria have developed an effective photosynthetic CO2 concentrating mechanism (CCM)...
Carboxysomes are the specific CO2-fixing microcompartments in all cyanobacteria. Although it is know...
Cyanobacterial CO2-fixation is supported by a CO2-concentrating mechanism which improves photosynthe...
The carbon dioxide (CO2)-concentrating mechanism of cyanobacteria is characterized by the occurrence...
<div><p>Cyanobacterial CO<sub>2</sub>-fixation is supported by a CO<sub>2</sub>-concentrating mechan...
Carboxysomes are the specific CO2-fixing microcompartments in all cyanobacteria. Although it is know...
Cyanobacterial CO(2)-fixation is supported by a CO(2)-concentrating mechanism which improves photosy...
Cells use compartmentalization of enzymes as a strategy to regulate metabolic pathways and increase ...
RuBisCO (ribulose 1,5-bisphosphate carboxylase/oxygenase) is one the most abundant enzymes on Earth....
Carbon fixation in cyanobacteria makes a major contribution to the global carbon cycle. The cyanobac...
Cells use compartmentalization of enzymes as a strategy to regulate metabolic pathways and increase ...
ABSTRACT Carboxysomes are central to the carbon dioxide-concentrating mechanism (CCM) and carbon fix...
Carbon fixation in cyanobacteria makes a major contribution to the global carbon cycle. The cyanobac...
Carboxysomes are membrane-free organelles for carbon assimilation in cyanobacteria. The carboxysome ...
Carboxysomes are organelle-like polyhedral bodies found in cyanobacteria and many chemoautotrophic b...
Abstract. Cyanobacteria have developed an effective photosynthetic CO2 concentrating mechanism (CCM)...