Cell division defects in Escherichia coli deficient in the multidrug efflux transporter AcrEF-TolC
Sze Yi Lau1, Helen I Zgurskaya
1Department of Chemistry and Biochemistry, University of Oklahoma, Norman, 73019, USA.
Abstract:
The Escherichia coli chromosome contains several operons encoding confirmed and predicted multidrug transporters. Among these transporters only the inactivation of components of the AcrAB-TolC complex leads to substantial changes in susceptibility to multiple drugs. This observation prompted a conclusion that other transporters are silent or expressed at levels insufficient to contribute to multidrug resistance phenotype. We found that increased expression of AcrA, the periplasmic membrane fusion protein, is toxic only in cells lacking the multidrug efflux transporter AcrEF. AcrEF-deficient cells with increased expression of AcrA have a severe cell division defect that results in cell filamentation (>50 microm). Similar defects were obtained in cells lacking the outer membrane channel TolC, which acts with AcrEF, suggesting that cell filamentation is caused by the loss of AcrEF function. Green fluorescent protein-AcrA fusion studies showed that in normal and filamentous cells AcrA is associated with membranes in a confined manner and that this localization is not affected by the lack of AcrEF. Similarly, the structure and composition of membranes were normal in filamentous cells. Fluorescence microscopy showed that the filamentous AcrEF-deficient E. coli cells are defective in chromosome condensation and segregation. Our results suggest that the E. coli AcrEF transporter is expressed under standard laboratory conditions and plays an important role in the normal maintenance of cell division.
Insights
The Escherichia coli AcrEF transporter is expressed and crucial for cell division. Its absence causes cell filamentation due to defects in chromosome condensation and segregation.
Area of Science:
- Microbiology
- Molecular Biology
Background:
- Escherichia coli possesses numerous multidrug transporters, but only the AcrAB-TolC complex significantly impacts multidrug resistance.
- This suggests other transporters may be inactive or underexpressed.
Purpose of the Study:
- To investigate the function of other multidrug transporters in E. coli.
- To determine the role of the AcrEF transporter in cellular processes.
Main Methods:
- Genetic manipulation to create AcrEF-deficient E. coli strains.
- Overexpression of AcrA, a component of the AcrAB-TolC complex.
- Fluorescence microscopy to observe cell morphology, chromosome segregation, and protein localization.
Main Results:
- AcrA overexpression is toxic in AcrEF-deficient cells, causing severe cell filamentation.
- This filamentation phenotype is also observed in TolC-deficient cells, implicating AcrEF in TolC-mediated processes.
- AcrEF deficiency leads to defects in chromosome condensation and segregation.
- AcrA localization to membranes is unaffected by the absence of AcrEF.
Conclusions:
- The AcrEF transporter is expressed under normal conditions and is essential for proper E. coli cell division.
- AcrEF plays a significant role in maintaining chromosomal integrity during cell division.
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