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Published on: September 29, 2023
Expression, purification, characterization, and cytotoxic evaluation of the ML1-STxB fusion protein
Mohammad Hasan Yousefi1, Hamed Afkhami2, Atefeh Akbari3
1Department of Cellular and Molecular Biology, Faculty of Basic Science, Imam Hossein University, Tehran, Iran.
Abstract:
Targeted delivery of a toxin substance to cancer cells is one of the most recent cancer treatment options. Mistletoe Lectin-1 (ML1) in Viscum album L. is a Ribosome-inactivating proteins with anticancer properties. Therefore, it appears that a recombinant protein with selective permeability can be generated by fusing ML1 protein with Shiga toxin B, which can bind to Gb3 receptor that is abundantly expressed on cancer cells. In this study, we sought to produce and purify a fusion protein containing ML1 fused to STxB and evaluate its cytotoxic activities. The ML1-STxB fusion protein coding sequence was cloned into the pET28a plasmid, then was transformed into E. coli BL21-DE3 cells. Following induction of protein expression, Ni-NTA affinity chromatography was used to purify the protein. Using SDS-PAGE and western blotting, the expression and purification processes were validated. On the SkBr3 cell line, the cytotoxic effects of the recombinant proteins were evaluated. On SDS-PAGE and western blotting membrane, analysis of purified proteins revealed a band of approximately 41 kDa for rML1-STxB. Ultimately, statistical analysis demonstrated that rML1-STxB exerted significant cytotoxic effects on SkBr3 cells at 18.09 and 22.52 ng/L. The production, purification, and encapsulation of rML1-STxB fusion protein with potential cancer cell-specific toxicity were successful. However, additional research must be conducted on the cytotoxic effects of this fusion protein on other malignant cell lines and in vivo cancer models.
Insights
Researchers developed a novel cancer therapy by fusing Mistletoe Lectin-1 (ML1) with Shiga toxin B (STxB). This recombinant protein, rML1-STxB, demonstrated significant cancer cell-specific toxicity, offering a promising new avenue for targeted cancer treatment.
Area of Science:
- Biotechnology
- Molecular Biology
- Cancer Research
Background:
- Targeted delivery of toxins to cancer cells is an emerging therapeutic strategy.
- Mistletoe Lectin-1 (ML1) from Viscum album L. possesses inherent anticancer properties.
- Shiga toxin B subunit (STxB) binds to the Gb3 receptor, which is overexpressed on many cancer cells.
Purpose of the Study:
- To produce and purify a fusion protein combining ML1 and STxB (rML1-STxB).
- To evaluate the cytotoxic activity of the rML1-STxB fusion protein on cancer cells.
- To assess the potential of rML1-STxB as a targeted cancer therapeutic.
Main Methods:
- Cloning the ML1-STxB fusion protein sequence into the pET28a plasmid and transforming E. coli.
- Inducing protein expression and purifying the fusion protein using Ni-NTA affinity chromatography.
- Validating protein expression and purification via SDS-PAGE and Western blotting.
- Assessing cytotoxic effects on the SkBr3 cancer cell line.
Main Results:
- Successful production and purification of the rML1-STxB fusion protein, confirmed by SDS-PAGE and Western blotting (approx. 41 kDa).
- rML1-STxB exhibited significant cytotoxic effects on SkBr3 cells at concentrations of 18.09 and 22.52 ng/L.
- The study confirmed the successful production, purification, and encapsulation of rML1-STxB.
Conclusions:
- The recombinant rML1-STxB fusion protein shows potential for targeted cancer cell toxicity.
- Further in vivo studies and testing on diverse cancer cell lines are warranted to fully explore its therapeutic potential.

