Abstract

Variable Heavy-chain Homodimer (VHH) or Nanobody is a recombinant dromedary antibody fragment which is classified as the smallest antibody fragments with the highest binding affinity and specificity of the original whole antibody. In this study the Expression of Nanobodies in E. coli WK6 cell periplasm was performed. The protein expression and purity was and analyzed by Affinity Chromatography, SDS PAGE and Western Blot. Upon elution with Imidazole, the concentrations observed using the OD280 nm of the eluted fractions EI, E2 and E3 were observed to be 0.42 μg/ml, 0.13 μg/ml and −0.46 μg/ml respectively. This gives an Antilog of 7.88 kDa which showed the calculated molecular size of our band. The SDS-PAGE gel reading was confirmed using Western blot analysis and illustrated as the specific binding of the mouse Anti-His antibody to the Histidine tag of the Nanobody. The Nanobody protein expression was then analyzed further with western blotting showed a strong signal at the region corresponding to the 15 kDa marker indicating presence of the Nanobody gene. This was taken as further confirmation of the protein expression from the bacterial cells.

Highlights

  • Nanobodies (VHHs) represent the heavy-chain variable domain of IgG2 and IgG3 expressed in Camelidae without the CH1 domain as well as of the light chain

  • After scanning the SDS-polyacrylamide gel electrophoresis (PAGE) gel, faint bands were noted on the gel aligning to the position at which the control Nanobody marker was present

  • The results presented in this article indicate the expression of a recombinant nanobody gene in a E. coli WK6 bacterial system

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Summary

Introduction

Nanobodies (VHHs) represent the heavy-chain variable domain of IgG2 and IgG3 expressed in Camelidae without the CH1 domain as well as of the light chain. It is assumed as one of the smallest antibody fragments with 14 kDa. It is assumed as one of the smallest antibody fragments with 14 kDa It has significantly the highest binding affinity and specificity compared to the common whole antibody. It has a remarkable structural stability and easier mo-.

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