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.

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.

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