| Literature DB >> 22649591 |
O Nekrasova1, A Tagway, A Ignatova, A Feofanov, M Kirpichnikov.
Abstract
The effective expression of recombinant membrane proteins in E.coli depends upon the targeting and insertion of proteins into the cellular membrane, as well as on those proteins adopting the correct spatial structure. A significant technological problem involves the design of approaches for detecting the location of target proteins within a host cell. Using a hybrid potassium channel KcsA-Kv1.3 as a model, we developed a technological scheme which is suitable for the study of membrane localization in E.coli cells of recombinant proteins containing voltage-gated eukaryotic potassium channels as the functional active site. The scheme involves both biochemical and fluorescent methods for detecting target proteins in the cytoplasmic membrane of E.coli, as well as the study of the ligand-binding activity of membrane-embedded proteins.Entities:
Year: 2009 PMID: 22649591 PMCID: PMC3347507
Source DB: PubMed Journal: Acta Naturae ISSN: 2075-8251 Impact factor: 1.845
Fig. 1.Homology of amino acid sequences between the pore loop of eukaryotic voltage-gated channel Kv1.3 and the bacterial channel KcsA (a) and the schematic representation of the hybrid protein molecule KcsA-Kv1.3 (b). S5/M1 and S6/M2 - transmembrane helices; S5-P and P-S6 -linkers; P - pore helix; S - a sequence for selectivity filter (underlined).
Fig. 2.Fractioning of BL21(DE3) cells producing KcsA-Kv1.3 (a). 1 -cellular lysate; 2 - pellet I; 3 - pellet II; 4 - supernatant following high-speed centrifugation; 5 - immunoblotting of cellular lysate with anti-Hisx6 antibodies.
Extraction of pellet I with detergent solutions: 40 mM Mega 9 (b), 1% lauroylsarcosine (c); 1% Triton X-100 (d). Extraction of pellet II with detergent solutions: 40 mM Mega 9 (e), 1% Triton X-100 (f). 1 - suspension of pellet in a detergent solution; 2 - extract a
Fractioning of cells by the "carbonate wash" method (g). 1 -cellular lysate; 2 - supernatant following high-speed centrifugation; 3 - a pellet.
Analysis of KcsA-Kv1.3 tetramer formation (h). 1 - KcsA-Kv1.3 preparation preheated for 10 min at 96 °C; 2 - KcsA-Kv1.3 preparation isolated from the pellet I by extraction with 40 mM Mega 9 preheated for 10 min at 37 °C; 3 - KcsA-Kv1.3 isolated from pellet II prepared under the same conditions. M.w. - molecular weight markers. The position of a target protein (monomer or tetramer) is identified by an arrow.
Fig. 3.Binding of Rh-AgTx2 to the membrane of spheroplasts. (a, c) Typical confocal fluorescent images of Rh-AgTx2 bound to E.coli BL21(DE3) producing KcsA-Kv1.3. (b) Transparent light image of spheroplasts. Length of the bar corresponds to 5 µm.