Javascript must be enabled to continue!
Solute channels of the outer membrane: from bacteria to chloroplasts
View through CrossRef
Abstract
Chloroplasts, unique organelles of plants, originated from endosymbiosis of an ancestor of today's cyanobacteria with a mitochondria-containing host cell. It is assumed that the outer envelope membrane, which delimits the chloroplast from the surrounding cytosol, was thus inherited from its Gram-negative bacterial ancestor. This plastid-specific membrane is thus equipped with elements of prokaryotic and eukaryotic origin. In particular, the membrane-intrinsic outer envelope proteins (OEPs) form solute channels with properties reminiscent of porins and channels in the bacterial outer membrane. OEP channels are characterised by distinct specificities for metabolites and a quite peculiar expression pattern in specialised plant organs and plastids, thus disproving the assumption that the outer envelope is a non-specific molecular sieve. The same is true for the outer membrane of Gram-negative bacteria, which functions as a permeability barrier in addition to the cytoplasmic membrane, and embeds different classes of channel pores. The channels of these prokaryotic prototype proteins, ranging from unspecific porins to specific channels to ligand-gated receptors, are exclusively built of β-barrels. Although most of the OEP channels are formed by β-strands as well, phylogeny based on sequence homology alone is not feasible. Thus, the comparison of structural and functional properties of chloroplast outer envelope and bacterial outer membrane channels is required to pinpoint the ancestral OEP ‘portrait gallery’.
Title: Solute channels of the outer membrane: from bacteria to chloroplasts
Description:
Abstract
Chloroplasts, unique organelles of plants, originated from endosymbiosis of an ancestor of today's cyanobacteria with a mitochondria-containing host cell.
It is assumed that the outer envelope membrane, which delimits the chloroplast from the surrounding cytosol, was thus inherited from its Gram-negative bacterial ancestor.
This plastid-specific membrane is thus equipped with elements of prokaryotic and eukaryotic origin.
In particular, the membrane-intrinsic outer envelope proteins (OEPs) form solute channels with properties reminiscent of porins and channels in the bacterial outer membrane.
OEP channels are characterised by distinct specificities for metabolites and a quite peculiar expression pattern in specialised plant organs and plastids, thus disproving the assumption that the outer envelope is a non-specific molecular sieve.
The same is true for the outer membrane of Gram-negative bacteria, which functions as a permeability barrier in addition to the cytoplasmic membrane, and embeds different classes of channel pores.
The channels of these prokaryotic prototype proteins, ranging from unspecific porins to specific channels to ligand-gated receptors, are exclusively built of β-barrels.
Although most of the OEP channels are formed by β-strands as well, phylogeny based on sequence homology alone is not feasible.
Thus, the comparison of structural and functional properties of chloroplast outer envelope and bacterial outer membrane channels is required to pinpoint the ancestral OEP ‘portrait gallery’.
Related Results
Procedure for Western blot v1
Procedure for Western blot v1
Goal: This document has the objective of standardizing the protocol for Western blot. This technique allows the detection of specific proteins separated on polyacrylamide gel and t...
An Investigation into Hydrophobic Membrane Fouling in Desalination Using Membrane Distillation Technology
An Investigation into Hydrophobic Membrane Fouling in Desalination Using Membrane Distillation Technology
Demand for freshwater supplies is continuously increasing globally to the extent where some parts of the world became highly water stressed. In particular, the Arabian Gulf states ...
Solution Chemistry
Solution Chemistry
A solution is a homogeneous mixture of two or more substances. It is usually made up of a solute and a solvent. Generally, Solute+Solvent = Solution A solute is any substance that ...
Use of Organic Solvent Nanofiltration (OSN) membranes for Counter-Current Chromatography (CCC) solvent recovery
Use of Organic Solvent Nanofiltration (OSN) membranes for Counter-Current Chromatography (CCC) solvent recovery
Solvent resistant membranes are a relatively new technology which has the potential to expand the possible utilities of membranes for process industries. Little is known in terms o...
Photosystem II in Symbiotic Algae
Photosystem II in Symbiotic Algae
Symbiotic brown algae (zooxanthellae), Gymnodinium microadriaticum (= Symbiodinium microadriaticum), were isolated from the coral polyp Pocillopora damicornis and from the mantle o...
From extracellular to intracellular: the establishment of mitochondria and chloroplasts
From extracellular to intracellular: the establishment of mitochondria and chloroplasts
Abstract
Paracoccus and Rhodopseudomonas are unusual among bacteria in having a majority of the biochemical features of mitochondria; blue-green algae have many o...
Molecular Dynamics Trajectory Analysis of Permeation (MDTAP): A tool to analyze permeation events across membrane proteins
Molecular Dynamics Trajectory Analysis of Permeation (MDTAP): A tool to analyze permeation events across membrane proteins
Abstract
Background and Objective
Molecular dynamics (MD) simulations are indispensable and versatile in capturing the time-dep...
Examining the Biophysical Properties of the Inner Membrane of Gram-Negative ESKAPE Pathogens
Examining the Biophysical Properties of the Inner Membrane of Gram-Negative ESKAPE Pathogens
Abstract
The World Health Organization has identified multidrug-resistant bacteria as a serious global health threat. Gram-negative bacteria are ...

