Conti Nibali, Stefano ; Di Rosa, Maria Carmela ; Rauh, Oliver ; Thiel, Gerhard ; Reina, Simona ; De Pinto, Vito (2021)
Cell-free electrophysiology of human VDACs incorporated into nanodiscs : an improved method.
In: Biophysical reports, 1 (1)
doi: 10.1016/j.bpr.2021.100002
Artikel, Bibliographie
Kurzbeschreibung (Abstract)
Voltage-dependent anion-selective channel (VDAC) is one of the main proteins of the outer mitochondrial membrane of all eukaryotes, where it forms aqueous, voltage-sensitive, and ion-selective channels. Its electrophysiological properties have been thoroughly analyzed with the planar lipid bilayer technique. To date, however, available results are based on isolations of VDACs from tissue or from recombinant VDACs produced in bacterial systems. It is well known that the cytosolic overexpression of highly hydrophobic membrane proteins often results in the formation of inclusion bodies containing insoluble aggregates. Purification of properly folded proteins and restoration of their full biological activity requires several procedures that considerably lengthen experimental times. To overcome these restraints, we propose a one-step reaction that combines in vitro cell-free protein expression with nanodisc technology to obtain human VDAC isoforms directly integrated in a native-like lipid bilayer. Reconstitution assays into artificial membranes confirm the reliability of this new methodological approach and provide results comparable to those of VDACs prepared with traditional protein isolation and reconstitution protocols. The use of membrane-mimicking nanodisc systems represents a breakthrough in VDAC electrophysiology and may be adopted to further structural studies.
Typ des Eintrags: | Artikel |
---|---|
Erschienen: | 2021 |
Autor(en): | Conti Nibali, Stefano ; Di Rosa, Maria Carmela ; Rauh, Oliver ; Thiel, Gerhard ; Reina, Simona ; De Pinto, Vito |
Art des Eintrags: | Bibliographie |
Titel: | Cell-free electrophysiology of human VDACs incorporated into nanodiscs : an improved method |
Sprache: | Englisch |
Publikationsjahr: | 8 September 2021 |
Titel der Zeitschrift, Zeitung oder Schriftenreihe: | Biophysical reports |
Jahrgang/Volume einer Zeitschrift: | 1 |
(Heft-)Nummer: | 1 |
DOI: | 10.1016/j.bpr.2021.100002 |
Kurzbeschreibung (Abstract): | Voltage-dependent anion-selective channel (VDAC) is one of the main proteins of the outer mitochondrial membrane of all eukaryotes, where it forms aqueous, voltage-sensitive, and ion-selective channels. Its electrophysiological properties have been thoroughly analyzed with the planar lipid bilayer technique. To date, however, available results are based on isolations of VDACs from tissue or from recombinant VDACs produced in bacterial systems. It is well known that the cytosolic overexpression of highly hydrophobic membrane proteins often results in the formation of inclusion bodies containing insoluble aggregates. Purification of properly folded proteins and restoration of their full biological activity requires several procedures that considerably lengthen experimental times. To overcome these restraints, we propose a one-step reaction that combines in vitro cell-free protein expression with nanodisc technology to obtain human VDAC isoforms directly integrated in a native-like lipid bilayer. Reconstitution assays into artificial membranes confirm the reliability of this new methodological approach and provide results comparable to those of VDACs prepared with traditional protein isolation and reconstitution protocols. The use of membrane-mimicking nanodisc systems represents a breakthrough in VDAC electrophysiology and may be adopted to further structural studies. |
ID-Nummer: | pmid:34568862 |
Zusätzliche Informationen: | Artikel-Nr. 100002 |
Fachbereich(e)/-gebiet(e): | 10 Fachbereich Biologie 10 Fachbereich Biologie > Plant Membrane Biophyscis (am 20.12.23 umbenannt in Biologie der Algen und Protozoen) |
Hinterlegungsdatum: | 11 Okt 2021 06:39 |
Letzte Änderung: | 11 Okt 2021 06:40 |
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