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Fig.6: Confirmation of cytoplasmic expression of SUMO-VEvhh10 with the help of sodium dodecyl sulfate-polyacrylamide gel electrophoresis. The samples examined include, from right to left, 1 – sedimentation of transforming bacteria and induced with IPTG after their lysis, 2 – Transformed, untransformed and post-lysis bacterial sediments, 3 – Transformed and induced bacterial supernatants after lysis, 4 – Untransformed and induced bacterial supernatants after lysis, 5 – 35 kDa molecular weight protein as a protein marker.

2024-10-03 | | |

Fig.6: Confirmation of cytoplasmic expression of SUMO-VEvhh10 with the help of sodium dodecyl sulfate-polyacrylamide gel electrophoresis. The samples examined include, from right to left, 1 - sedimentation of transforming bacteria and induced with IPTG after their lysis, 2 - Transformed, untransformed and post-lysis bacterial sediments, 3 - Transformed and induced bacterial supernatants after lysis, 4 - Untransformed and induced bacterial supernatants after lysis, 5 - 35 kDa molecular weight protein as a protein marker.

Fig.6: Confirmation of cytoplasmic expression of SUMO-VEvhh10 with the help of sodium dodecyl sulfate-polyacrylamide gel electrophoresis. The samples examined include, from right to left, 1 – sedimentation of transforming bacteria and induced with IPTG after their lysis, 2 – Transformed, untransformed and post-lysis bacterial sediments, 3 – Transformed and induced bacterial supernatants after lysis, 4 – Untransformed and induced bacterial supernatants after lysis, 5 – 35 kDa molecular weight protein as a protein marker.

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