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Membrane Transport Processes Analyzed by a Highly Parallel Nanopore Chip System at Single Protein Resolution
Published on: August 16, 2016
Nanopores: maltoporin channel as a sensor for maltodextrin and lambda-phage
E Berkane1, F Orlik, A Charbit
1Institut Pharmacologie & Biologie Structurale-CNRS UMR5089, 205, rte de Narbonne, F-31077 Toulouse, France. m.winterhalter@iu-bremen.de.
Abstract:
BACKGROUND: To harvest nutrition from the outside bacteria e.g. E. coli developed in the outer cell wall a number of sophisticated channels called porins. One of them, maltoporin, is a passive specific channel for the maltodextrin uptake. This channel was also named LamB as the bacterial virus phage Lambda mis-uses this channel to recognise the bacteria. The first step is a reversible binding followed after a lag phase by DNA injection. To date little is known about the binding capacity and less on the DNA injection mechanism. To elucidate the mechanism and to show the sensitivity of our method we reconstituted maltoporin in planar lipid membranes. Application of an external transmembrane electric field causes an ion current across the channel. Maltoporin channel diameter is around a few Angstroem. At this size the ion current is extremely sensitive to any modification of the channels surface. Protein conformational changes, substrate binding etc will cause fluctuations reflecting the molecular interactions with the channel wall. The recent improvement in ion current fluctuation analysis allows now studying the interaction of solutes with the channel on a single molecular level. RESULTS: We could demonstrate the asymmetry of the bacterial phage Lambda binding to its natural receptor maltoporin. CONCLUSION: We suggest that this type of measurement can be used as a new type of biosensors.
Insights
Researchers studied maltoporin, a bacterial channel, and its interaction with phage Lambda. They found asymmetric binding, suggesting potential for new biosensor development using ion current analysis.
Area of Science:
- Biophysics
- Molecular Biology
- Nanotechnology
Background:
- Bacteria utilize outer cell wall porins for nutrient uptake.
- Maltoporin (LamB) is a specific channel for maltodextrin, also used by phage Lambda for bacterial recognition.
- The binding and DNA injection mechanisms of phage Lambda via maltoporin are not well understood.
Purpose of the Study:
- To elucidate the mechanism of phage Lambda binding and DNA injection.
- To demonstrate the sensitivity of ion current fluctuation analysis for studying molecular interactions.
- To reconstitute maltoporin in planar lipid membranes for investigation.
Main Methods:
- Reconstitution of maltoporin in planar lipid membranes.
- Application of external transmembrane electric fields to induce ion current.
- Analysis of ion current fluctuations at the single-molecule level.
Main Results:
- Demonstrated the asymmetry of bacterial phage Lambda binding to its natural receptor, maltoporin.
- Observed ion current fluctuations sensitive to molecular interactions within the narrow channel.
Conclusions:
- The study provides insights into the molecular interactions between phage Lambda and maltoporin.
- Suggests that ion current fluctuation analysis of reconstituted channels can serve as a novel biosensing platform.

