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MspA provides the main hydrophilic pathway through the cell wall of Mycobacterium smegmatis
1Lehrstuhl für Mikrobiologie, Friedrich-Alexander-Universität Erlangen-Nürnberg, Staudtstr. 5, 91058 Erlangen, Germany.
Abstract:
MspA is an extremely stable, oligomeric porin from Mycobacterium smegmatis that forms water-filled channels in vitro. Immunogold electron microscopy and an enzyme-linked immunosorbent assay demonstrated that MspA is localized in the cell wall. An mspA deletion mutant did not synthesize detectable amounts of mspA mRNA, as revealed by amplification using mspA-specific primers and reverse-transcribed RNA. Detergent extracts of the DeltamspA mutant exhibited a significantly lower porin activity in lipid bilayer experiments and contained about fourfold less porin than extracts of wild-type M. smegmatis. The chromosome of M. smegmatis encodes three proteins very similar to MspA. Sequence analysis of the purified porin revealed that mspB or mspC or both genes are expressed in the DeltamspA mutant. The properties of this porin, such as single channel conductance, extreme stability against denaturation, molecular mass and composition of 20 kDa subunits, are identical to those of MspA. Deletion of mspA reduced the cell wall permeability towards cephaloridine and glucose nine- and fourfold respectively. These results show that MspA is the main general diffusion pathway for hydrophilic molecules in M. smegmatis and was only partially replaced by fewer porins in the cell wall of the DeltamspA mutant [corrected] This is the first experimental evidence that porins are the major determinants of the exceptionally low permeability of mycobacteria to hydrophilic molecules.
Insights
Mycobacterium smegmatis porin A (MspA) is crucial for cell wall permeability. Deleting MspA significantly reduces the transport of hydrophilic molecules, highlighting its role in mycobacterial membrane function.
Area of Science:
- Microbiology
- Structural Biology
- Biochemistry
Background:
- Mycobacteria possess exceptionally low permeability to hydrophilic molecules.
- Porins are outer membrane proteins forming channels, but their role in mycobacteria is not fully understood.
Purpose of the Study:
- To investigate the role of MspA (Mycobacterium smegmatis porin A) in the cell wall permeability of Mycobacterium smegmatis.
- To determine if MspA is the primary diffusion pathway for hydrophilic molecules in M. smegmatis.
Main Methods:
- Immunogold electron microscopy and ELISA for MspA localization.
- RT-PCR to analyze mspA mRNA expression in a deletion mutant.
- Lipid bilayer experiments to assess porin activity.
- Analysis of cell wall permeability to cephaloridine and glucose.
Main Results:
- MspA is localized in the cell wall of M. smegmatis.
- An mspA deletion mutant showed significantly reduced porin activity and MspA levels.
- Deletion of mspA decreased cell wall permeability to cephaloridine and glucose by nine- and fourfold, respectively.
- MspB or MspC partially compensated for the loss of MspA.
Conclusions:
- MspA is the principal porin responsible for the general diffusion of hydrophilic molecules across the M. smegmatis cell wall.
- Porins are major determinants of the low permeability characteristic of mycobacteria.
- This study provides the first experimental evidence for the role of porins in mycobacterial permeability.