In this work, we show the extraction, purification and reconstitution of the bacterial protein complex bc1 in giant lipid vesicles used as versatile micro-sized enzymatic reactors. Firstly, it is demonstrated that the bc1 shows an enzymatic activity also as micellar suspension when the proper substrates are added. Moreover, it has been possible to reconstitute, with the droplet transfer method, the bc1 complex in artificial giant lipid vesicles. The reconstitution has been proved by confocal microscopy analysis demonstrating a change of internal pH, thanks to a pH-sensitive fluorescent dye, upon the addition of a trigger substrate.
Altamura, E., Albanese, P., Milano, F., Trotta, M., Stano, P., Mavelli, F. (2020). Single Compartment Approach for Assembling Photosynthetic Protocells. In S. Piotto, S. Concilio, L. Sessa, F. Rossi (a cura di), Advances in Bionanomaterials II - Selected Papers from the 3rd International Conference on Bio and Nanomaterials, BIONAM 2019, September 29 – October 3, 2019 (pp. 223-232). Cham : Springer [10.1007/978-3-030-47705-9_19].
Single Compartment Approach for Assembling Photosynthetic Protocells
Albanese P.;
2020-01-01
Abstract
In this work, we show the extraction, purification and reconstitution of the bacterial protein complex bc1 in giant lipid vesicles used as versatile micro-sized enzymatic reactors. Firstly, it is demonstrated that the bc1 shows an enzymatic activity also as micellar suspension when the proper substrates are added. Moreover, it has been possible to reconstitute, with the droplet transfer method, the bc1 complex in artificial giant lipid vesicles. The reconstitution has been proved by confocal microscopy analysis demonstrating a change of internal pH, thanks to a pH-sensitive fluorescent dye, upon the addition of a trigger substrate.File | Dimensione | Formato | |
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https://hdl.handle.net/11365/1279562