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The Green Tea Polyphenol Epigallocatechin-Gallate (EGCG) Interferes with Microcin E492 Amyloid Formation
Paulina Aguilera1, Camilo Berríos-Pastén1, Marcelo Veloso1
1Grupo de Microbiología Integrativa, Laboratorio de Biología Estructural y Molecular BEM, Facultad de Ciencias, Universidad de Chile, Las Palmeras 3425 Ñuñoa, Santiago 7800003, Chile.
Abstract:
Microcin E492 (MccE492) is an antimicrobial peptide and proposed virulence factor produced by some Klebsiella pneumoniae strains, which, under certain conditions, form amyloid fibers, leading to the loss of its antibacterial activity. Although this protein has been characterized as a model functional amyloid, the secondary structure transitions behind its formation, and the possible effect of molecules that inhibit this process, have not been investigated. In this study, we examined the ability of the green tea flavonoid epigallocatechin gallate (EGCG) to interfere with MccE492 amyloid formation. Aggregation kinetics followed by thioflavin T binding were used to monitor amyloid formation in the presence or absence of EGCG. Additionally, synchrotron radiation circular dichroism (SRCD) and transmission electron microscopy (TEM) were used to study the secondary structure, thermal stability, and morphology of microcin E492 fibers. Our results showed that EGCG significantly inhibited the formation of the MccE492 amyloid, resulting in mainly amorphous aggregates and small oligomers. However, these aggregates retained part of the β-sheet SRCD signal and a high resistance to heat denaturation, suggesting that the aggregation process is sequestered or deviated at some stage but not completely prevented. Thus, EGCG is an interesting inhibitor of the amyloid formation of MccE492 and other bacterial amyloids.
Insights
Epigallocatechin gallate (EGCG) from green tea inhibits amyloid fiber formation by the antimicrobial peptide Microcin E492 (MccE492). This suggests EGCG can prevent the loss of antibacterial activity in MccE492 and potentially other bacterial amyloids.
Area of Science:
- Biochemistry
- Microbiology
- Structural Biology
Background:
- Microcin E492 (MccE492) is an antimicrobial peptide produced by *Klebsiella pneumoniae*.
- MccE492 can form amyloid fibers, leading to a loss of antibacterial activity.
- The secondary structure transitions and inhibitory molecules for MccE492 amyloid formation are not well understood.
Purpose of the Study:
- To investigate the effect of epigallocatechin gallate (EGCG) on MccE492 amyloid formation.
- To characterize the structural changes and stability of MccE492 aggregates in the presence of EGCG.
Main Methods:
- Aggregation kinetics monitored by thioflavin T binding.
- Synchrotron radiation circular dichroism (SRCD) to analyze secondary structure and thermal stability.
- Transmission electron microscopy (TEM) for morphological analysis.
Main Results:
- EGCG significantly inhibited MccE492 amyloid formation, yielding amorphous aggregates and small oligomers.
- These EGCG-induced aggregates retained some beta-sheet structure and high thermal stability.
- Amyloid formation was sequestered or deviated, but not completely prevented by EGCG.
Conclusions:
- EGCG is a potent inhibitor of MccE492 amyloid formation.
- EGCG's inhibitory effect suggests potential therapeutic applications for bacterial amyloid-related issues.
- EGCG may serve as a model inhibitor for other bacterial amyloid formations.
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