High-level expression and one-step purification of recombinant dengue virus type 2 envelope domain III protein in Escherichia coli

Jaiswal, Smita ; Khanna, Navin ; Swaminathan, Sathyamangalam (2004) High-level expression and one-step purification of recombinant dengue virus type 2 envelope domain III protein in Escherichia coli Protein Expression and Purification, 33 (1). pp. 80-91. ISSN 1046-5928

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Official URL: http://www.sciencedirect.com/science/article/pii/S...

Related URL: http://dx.doi.org/10.1016/j.pep.2003.09.009

Abstract

Dengue virus infection poses a serious global public health threat for which there is currently no therapy or a licensed vaccine. The domain III of the dengue virus encoded envelope protein, which carries multiple conformation-dependent neutralizing epitopes, is critical for virus infectivity. We have expressed and purified recombinant domain III of dengue virus type-2 envelope, without the aid of a carrier protein in Escherichia coli. A 6× His tag was inserted at the N terminus to facilitate its one-step purification. The protein was overexpressed in the form of insoluble inclusion bodies, which were solubilized under highly denaturing conditions and then subjected to a previously optimized arginine-mediated renaturation protocol. We purified recombinant domain III protein to near homogeneity by Ni–NTA affinity chromatography and obtained yields of ∼30 mg/L. The purified protein was recognized in Western analyses by monoclonal antibodies specific for the 6× His tag as well as the 3H5 neutralizing epitope known to reside in domain III. The authenticity of the recombinant protein was also verified in a sandwich ELISA designed to specifically and simultaneously identify the 6× His tag and the 3H5 epitope. In addition, murine and human polyclonal sera also recognized the recombinant protein. The in vitro refolded recombinant protein preparation was biologically functional. It could effectively protect cells in culture against dengue virus type-2 infection, apparently by blocking the virus from binding to host cells. This expression/purification strategy has the potential for inexpensive scale-up and may prove to be useful for dengue diagnostics and vaccine development efforts.

Item Type:Article
Source:Copyright of this article belongs to Elsevier Science.
Keywords:Dengue Virus Type 2; Envelope Protein; Domain III; Ni–NTA Chromatography; 6× His Tag; 3H5 Monoclonal Antibody
ID Code:109117
Deposited On:09 Mar 2018 12:12
Last Modified:09 Mar 2018 12:12

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