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Published on: October 13, 2015
Differential effects of yfgL mutation on Escherichia coli outer membrane proteins and lipopolysaccharide
Emily S Charlson1, John N Werner, Rajeev Misra
1School of Life Sciences, Arizona State University, Tempe, AZ 85287-4501, USA.
Abstract:
YfgL together with NlpB, YfiO, and YaeT form a protein complex to facilitate the insertion of proteins into the outer membrane of Escherichia coli. Without YfgL, the levels of OmpA, OmpF, and LamB are significantly reduced, while OmpC levels are slightly reduced. In contrast, the level of TolC significantly increases in a yfgL mutant. When cells are depleted of YaeT or YfiO, levels of all outer membrane proteins examined, including OmpC and TolC, are severely reduced. Thus, while the assembly pathways of various nonlipoprotein outer membrane proteins may vary through the step involving YfgL, all assembly pathways in Escherichia coli converge at the step involving the YaeT/YfiO complex. The negative effect of yfgL mutation on outer membrane proteins may in part be due to elevated sigma E activity, which has been shown to downregulate the synthesis of various outer membrane proteins while upregulating the synthesis of periplasmic chaperones, foldases, and lipopolysaccharide. The data presented here suggest that the yfgL effect on outer membrane proteins also stems from a defective assembly apparatus, leading to aberrant outer membrane protein assembly, except for TolC, which assembles independent of YfgL. Consistent with this view, the simultaneous absence of YfgL and the major periplasmic protease DegP confers a synthetic lethal phenotype, presumably due to the toxic accumulation of unfolded outer membrane proteins. The results support the hypothesis that TolC and major outer membrane proteins compete for the YaeT/YfiO complex, since mutations that adversely affect synthesis or assembly of major outer membrane proteins lead to elevated TolC levels.
Insights
YfgL is crucial for outer membrane protein assembly in E. coli, but TolC assembles independently. A yfgL mutation disrupts assembly, potentially due to competition for the YaeT/YfiO complex.
Area of Science:
- Molecular Biology
- Cell Biology
- Microbiology
Background:
- The outer membrane of Escherichia coli contains essential proteins for cell function.
- Protein insertion into the outer membrane requires complex assembly machinery.
- The YaeT/YfiO complex is a key component in the assembly pathway.
Purpose of the Study:
- To investigate the role of YfgL in the assembly of outer membrane proteins in Escherichia coli.
- To understand the relationship between YfgL, the YaeT/YfiO complex, and TolC assembly.
- To explore the consequences of YfgL deficiency on outer membrane protein homeostasis.
Main Methods:
- Analysis of outer membrane protein levels in wild-type and mutant Escherichia coli strains.
- Genetic manipulation to create single and double mutants for YfgL, YaeT, YfiO, and DegP.
- Assessment of protein complex formation and assembly pathways.
Main Results:
- YfgL is essential for the proper assembly of major outer membrane proteins like OmpA, OmpF, and LamB.
- TolC assembly is independent of YfgL, and its levels increase in yfgL mutants.
- All outer membrane protein assembly pathways converge at the YaeT/YfiO complex, indicating its central role.
Conclusions:
- YfgL plays a significant role in the assembly pathway of most outer membrane proteins, but not TolC.
- TolC and other major outer membrane proteins compete for the YaeT/YfiO complex.
- Defective outer membrane protein assembly in yfgL mutants can lead to toxicity, as shown by synthetic lethality with DegP absence.
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