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Published on: July 17, 2020
A Stable Pep2-proapoptotic Peptide Inducing Apoptosis of Acute Myeloid Leukemia Cells by Down-Regulating EZH2
Yanli Sun1, Jiaqiu Li2, Yanhua Sun3
1Department of Laboratory Medicine, Weifang Medical University, Weifang, China.
Introduction:
Proapoptotic peptide, (KLAKLAK)2, exhibits strong anti-tumor effect with the help of cell-penetrating peptides such as Pep2, targeting TLR2 with high expression in acute myeloid leukemia (AML). However, the applications are limited due to the peptide's instability and high cost of synthesis. Recombinant PP7 bacteriophage-like particles (VLPs) can protect the peptides from degradation by proteases, based on their ability to display foreign peptides.
Methods:
Here, we evaluated the feasibility of PP7 VLPs carrying Pep2 and (KLAKLAK)2 (2PP7-Pep2-KLAK VLPs) expressed in E. coli. We further investigated the characteristics including size, toxicity, thermal stability, penetrating ability, anti-tumor activity, and potential anti-tumor mechanism of 2PP7-Pep2-KLAK VLPs.
Results:
2PP7-Pep2-KLAK VLPs was expressed in E. coli BL21(DE3) successfully with high yield and thermal stability. They penetrated the AML cells THP-1 rapidly after 30 min of incubation. Moreover, 2PP7-Pep2-KLAK VLPs were non-replicative, non-infectious, and non-toxic against normal cells, but inhibited the proliferation of THP-1 cells by inducing cell apoptosis after 24 h of exposure. This effect extends through 120 h of exposure, indicating their anti-proliferation effect was superior to that of synthetic peptides. In addition to the mitochondrial apoptotic pathway, the anti-tumor activity of 2PP7-Pep2-KLAK VLPs was also correlated with down-regulation of expression of enhancer of zeste homolog 2 (EZH2) and trimethylation of histone H3K27.
Conclusions:
We identified the feasibility to prepare the stable, active Pep2-KLAK peptide by using PP7 bacteriophage as the vehicle. We revealed this peptide was an inhibitor of EZH2. 2PP7-Pep2-KLAK VLPs may have significant clinical implications in the treatment of MLL-AF9 AML as an epigenetic modulator.
Insights
Engineered bacteriophage particles effectively deliver the proapoptotic peptide (KLAKLAK)2 to acute myeloid leukemia cells, demonstrating potent anti-tumor activity and epigenetic modulation. This approach offers a stable and non-toxic therapeutic strategy for AML treatment.
Area of Science:
- Biotechnology
- Nanomedicine
- Cancer Biology
Background:
- Proapoptotic peptide (KLAKLAK)2 shows anti-tumor potential against acute myeloid leukemia (AML) by targeting TLR2.
- Limitations include peptide instability and high synthesis costs, hindering clinical application.
- Bacteriophage-like particles (VLPs), such as PP7, can protect peptides and display them for targeted delivery.
Purpose of the Study:
- To evaluate the feasibility of using PP7 VLPs to deliver Pep2 and (KLAKLAK)2 peptides (2PP7-Pep2-KLAK VLPs) for AML treatment.
- To characterize the physical, toxicological, and anti-tumor properties of these engineered VLPs.
- To elucidate the anti-tumor mechanism, including effects on cell apoptosis and epigenetic markers.
Main Methods:
- Expression of 2PP7-Pep2-KLAK VLPs in *E. coli*.
- Assessment of VLP characteristics: size, toxicity, thermal stability, and cellular penetration.
- Evaluation of anti-tumor activity in AML cells (THP-1) and analysis of apoptotic pathways and epigenetic modifications (EZH2, H3K27me3).
Main Results:
- Successful high-yield expression of stable 2PP7-Pep2-KLAK VLPs.
- Rapid penetration of AML cells and significant inhibition of proliferation via apoptosis induction.
- Non-replicative, non-infectious, and non-toxic profile against normal cells.
- Anti-tumor activity linked to mitochondrial apoptosis, EZH2 downregulation, and H3K27 trimethylation reduction.
Conclusions:
- PP7 VLPs provide a stable and effective vehicle for delivering the Pep2-KLAK peptide.
- The engineered VLPs demonstrate potent anti-AML activity through apoptosis and epigenetic modulation.
- 2PP7-Pep2-KLAK VLPs show promise as a novel epigenetic modulator for treating MLL-AF9 AML.
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