Related Experiment Video
Updated: Nov 7, 2025

Analyzing Tumor and Tissue Distribution of Target Antigen Specific Therapeutic Antibody
Published on: May 16, 2020
Expression and purification of a recombinant ELRL-MAP30 with dual-targeting anti-tumor bioactivity
Wei-Wei Chen1, Hong-Rui Zhang1, Zhi-Guang Huang1
1College of Life Science, Zhejiang Chinese Medical University, Hangzhou, 310053, China.
Abstract:
MAP30 (Momordica antiviral protein 30kD) is a single-chain Ⅰ-type ribosome inactivating protein with a variety of biological activities, including anti-tumor ability. It was reported that MAP30 would serve as a novel and relatively safe agent for prophylaxis and treatment of liver cancer. To determine whether adding two tumor targeting peptides could improve the antitumor activities of MAP30, we genetically modified MAP30 with an RGD motif and a EGFRi motif, which is a ligand with high affinity for αvβ3 integrins and with high affinity for EGFR. The recombinant protein ELRL-MAP30 (rELRL-MAP30) containing a GST-tag was expressed in E. coli. The rELRL-MAP30 was highly expressed in the soluble fraction after induction with 0.15 mM IPTG for 20 h at 16 °C. The purified rELRL-MAP30 appeared as a band on SDS-PAGE. It was identified by western blotting. Cytotoxicity of recombinant protein to HepG2, MDA-MB-231, HUVEC and MCF-7 cells was detected by MTT analysis. Half maximal inhibitory concentration (IC50) values were 54.64 μg/mL, 70.13 μg/mL, 146 μg/mL, 466.4 μg/mL, respectively. Proliferation inhibition assays indicated that rELRL-MAP30 could inhibit the growth of Human liver cancer cell HepG2 effectively. We found that rELRL-MAP30 significantly induced apoptosis in liver cancer cells, as evidenced by nuclear staining of DAPI. In addition, rELRL-MAP30 induced apoptosis in human liver cancer HepG2 cells by up-regulation of Bax as well as down-regulation of Bcl-2. Migration of cell line were markedly inhibited by rELRL-MAP30 in a dose-dependent manner compared to the recombinant MAP30 (rMAP30). In summary, the fusion protein displaying extremely potent cytotoxicity might be highly effective for tumor therapy.
Insights
Genetically modified Momordica antiviral protein 30kD (MAP30) with tumor-targeting peptides enhanced its antitumor activity. The novel fusion protein, rELRL-MAP30, effectively inhibited liver cancer cell growth and induced apoptosis, showing promise for cancer therapy.
Area of Science:
- Biochemistry
- Molecular Biology
- Cancer Research
Background:
- Momordica antiviral protein 30kD (MAP30) is a ribosome-inactivating protein with known anti-tumor properties.
- MAP30 has shown potential as a safe agent for liver cancer treatment.
- Enhancing MAP30's tumor-targeting capabilities could improve its therapeutic efficacy.
Purpose of the Study:
- To genetically engineer MAP30 with RGD and EGFRi tumor-targeting motifs.
- To express and purify the recombinant fusion protein, rELRL-MAP30.
- To evaluate the enhanced anti-tumor activities of rELRL-MAP30 against liver cancer cells.
Main Methods:
- Genetic modification of MAP30 with RGD and EGFRi motifs.
- Expression of the recombinant protein (rELRL-MAP30) in E. coli and purification.
- Assessment of cytotoxicity using MTT assays and apoptosis induction via DAPI staining.
- Analysis of apoptosis-related protein expression (Bax and Bcl-2) and cell migration inhibition.
Main Results:
- Recombinant ELRL-MAP30 (rELRL-MAP30) was successfully expressed and purified.
- rELRL-MAP30 exhibited significant cytotoxicity against HepG2 (liver cancer) and other cancer cell lines.
- rELRL-MAP30 effectively inhibited HepG2 cell proliferation, induced apoptosis, and reduced cell migration.
- Apoptosis was mediated by the upregulation of Bax and downregulation of Bcl-2.
Conclusions:
- The engineered MAP30 fusion protein, rELRL-MAP30, demonstrates potent anti-tumor activity.
- rELRL-MAP30 shows significant potential for the treatment of liver cancer.
- The addition of tumor-targeting peptides effectively enhanced MAP30's therapeutic capabilities.
More Related Videos
11:58Initial Evaluation of Antibody-conjugates Modified with Viral-derived Peptides for Increasing Cellular Accumulation and Improving Tumor Targeting
Published on: March 8, 2018
10:46A Flow Cytometry-Based Cell Surface Protein Binding Assay for Assessing Selectivity and Specificity of an Anticancer Aptamer
Published on: September 13, 2022