The assembly of the photosynthetic apparatus utilizes component proteins that are synthesized by two genomes and then targeted into and across the thylakoid membrane. The emerging picture is one of a remarkably complex system of protein trafficking, in which at least four distinct pathways operate within the chloroplast - two for lumenal proteins and two for integral membrane proteins. Some of the pathways can be traced back to the prokaryotic ancestor of the chloroplast, whereas others appear to have arisen more recently - one in response to the transfer of genes to the plant nucleus and another, possibly, in response to the acquisition of new photosynthetic proteins. Remarkably, proteins in three of these pathways are synthesized with cle...
AbstractThe plastids of many algae are surrounded by three or four membranes, thought to be a conseq...
The chloroplast thylakoid is the most abundant membrane system in nature, and is responsible for the...
The chloroplast thylakoid is the most abundant membrane system in nature, and is responsible for the...
The assembly of the photosynthetic apparatus utilizes component proteins that are synthesized by two...
The assembly of the photosynthetic apparatus requires the translocation of numerous proteins from th...
The assembly of the photosynthetic apparatus requires the import of numerous cytosolically synthesis...
The assembly of the photosynthetic apparatus requires the import of numerous cytosolically synthesis...
The assembly of the chloroplast thylakoid membrane requires the import of numerous proteins from the...
The biogenesis of the plant thylakoid network is an enormously complex process in terms of protein t...
The biogenesis of the plant thylakoid network is an enormously complex process in terms of protein t...
The biogenesis of thylakoid proteins is a complex issue that requires the operation of at least four...
The biogenesis of the photosynthetic apparatus requires the import of numerous proteins into and acr...
Most chloroplast proteins are encoded in the nucleus and synthesized on free, cytosolic ribosomes in...
The biogenesis of the plant thylakoid network is an enormously complex process in terms of protein t...
In vitro reconstitution assays have been used in recent years to probe the mechanisms by which a var...
AbstractThe plastids of many algae are surrounded by three or four membranes, thought to be a conseq...
The chloroplast thylakoid is the most abundant membrane system in nature, and is responsible for the...
The chloroplast thylakoid is the most abundant membrane system in nature, and is responsible for the...
The assembly of the photosynthetic apparatus utilizes component proteins that are synthesized by two...
The assembly of the photosynthetic apparatus requires the translocation of numerous proteins from th...
The assembly of the photosynthetic apparatus requires the import of numerous cytosolically synthesis...
The assembly of the photosynthetic apparatus requires the import of numerous cytosolically synthesis...
The assembly of the chloroplast thylakoid membrane requires the import of numerous proteins from the...
The biogenesis of the plant thylakoid network is an enormously complex process in terms of protein t...
The biogenesis of the plant thylakoid network is an enormously complex process in terms of protein t...
The biogenesis of thylakoid proteins is a complex issue that requires the operation of at least four...
The biogenesis of the photosynthetic apparatus requires the import of numerous proteins into and acr...
Most chloroplast proteins are encoded in the nucleus and synthesized on free, cytosolic ribosomes in...
The biogenesis of the plant thylakoid network is an enormously complex process in terms of protein t...
In vitro reconstitution assays have been used in recent years to probe the mechanisms by which a var...
AbstractThe plastids of many algae are surrounded by three or four membranes, thought to be a conseq...
The chloroplast thylakoid is the most abundant membrane system in nature, and is responsible for the...
The chloroplast thylakoid is the most abundant membrane system in nature, and is responsible for the...