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BCR/ABL mRNA targeting small interfering RNA effects on proliferation and apoptosis in chronic myeloid leukemia
Xi-Shan Zhu1, Zi-Ying Lin, Jing Du
1Clinical Research Center, Affiliated Hospital of Guangdong Medical College, Zhanjiang, China
Background:
To investigate the effects of small interference RNA (siRNA) targeting BCR/ABL mRNA on proliferation and apoptosis in the K562 human chronic myeloid leukemia (CML) cell line and to provide a theoretical rationale and experimental evidence for its potential clinical application for anti-CML treatment.
Materials And Methods:
The gene sequence for BCR/ABL mRNA was found from the GeneBank. The target gene site on the BCR/ABL mRNA were selected according to Max-Planck-Institute (MPI) and rational siRNA design rules, the secondary structure of the candidate targeted mRNA was predicted, the relevant thermodynamic parameters were analyzed, and the targeted gene sequences were compared with BLAST to eliminate any sequences with significant homology. Inhibition of proliferation was evaluated by MTT assay and colony-formation inhibiting test. Apoptosis was determined by flow cytometry (FCM) and the morphology of apoptotic cells was identified by Giemsa-Wright staining. Western blotting was used to analyze the expression of BCR/ABL fusion protein in K562 cells after siRNA treatment.
Results:
The mRNA local secondary structure calculated by RNA structure software, and the optimal design of specific siRNA were contributed by bioinformatics rules. Five sequences of BCR/ABL siRNAs were designed and synthesized in vitro. Three sequences, siRNA1384, siRNA1276 and siRNA1786, which showed the most effective inhibition of K562 cell growth, were identified among the five candidate siRNAs, with a cell proliferative inhibitory rate nearly 50% after exposure to 12.5 nmol/L~50 nmol/L siRNA1384 for 24,48 and 72 hours. The 50% inhibitory concentrations (IC50) of siRNA1384, siRNA1276 and siRNA1786 for 24 hours were 46.6 nmol/L, 59.3 nmol/L and 62.6 nmol/L, respectively, and 65.668 nmol/L, 76.6 nmol/L, 74.4 nmol/L for 72 hours. The colony-formation inhibiting test also indicated that, compared with control, cell growth of siRNA treated group was inhibited. FCM results showed that the rate of cell apoptosis increased 24 hours after transfecting siRNA. The results of annexinV/PI staining indicated that the rate of apoptosis imcreased (1.53%, 15.3%, 64.5%, 57.5% and 21.5%) following treamtne with siRNAs (siRNA34, siRNA372, siRNA1384, siRNA1276 and siRNA1786). Morphological analysis showed td typical morphologic changes of apoptosis such as shrunken, fragmentation nucleus as well as "apoptotic bodies" after K562 cell exposure to siRNA. Western blot analysis showed that BCR/ABL protein was reduced sharply after a single dose of 50 nmol/L siRNA transfection.
Conclusions:
Proliferation of K562 cells was remarkbly inhibited by siRNAs (siRNA1384, siRNA1276 and siRNA1786) in a concentration-dependent manner in vitro, with effective induction of apoptosis at a concentration of 50 nmol/L. One anti-leukemia mechanism in K562 cells appeared that BCR/ABL targeted protein was highly down-regulated. The siRNAs (siRNA1384, siRNA1276 and siRNA1786) may prove valuable in the treatment of CML.
Insights
Small interference RNA (siRNA) targeting BCR/ABL mRNA effectively inhibited proliferation and induced apoptosis in chronic myeloid leukemia (CML) cells. These findings support siRNA as a potential therapeutic strategy for CML treatment.
Area of Science:
- Molecular Biology
- Cancer Research
- RNA Therapeutics
Background:
- Chronic myeloid leukemia (CML) is characterized by the BCR/ABL fusion gene.
- Targeting BCR/ABL mRNA with small interference RNA (siRNA) offers a potential therapeutic strategy.
- Investigating siRNA's effect on K562 CML cells is crucial for clinical application.
Purpose of the Study:
- To evaluate the impact of siRNA targeting BCR/ABL mRNA on K562 cell proliferation and apoptosis.
- To provide theoretical and experimental basis for siRNA's clinical use in CML treatment.
Main Methods:
- Bioinformatic analysis and rational design of BCR/ABL-targeting siRNAs.
- In vitro synthesis and screening of five candidate siRNAs.
- Assessment of cell proliferation using MTT and colony-formation assays.
- Apoptosis analysis via flow cytometry and morphological staining.
- Western blotting to confirm BCR/ABL protein reduction.
Main Results:
- Three siRNAs (siRNA1384, siRNA1276, siRNA1786) significantly inhibited K562 cell proliferation in a dose-dependent manner.
- Effective induction of apoptosis observed, with increased rates following siRNA treatment.
- BCR/ABL protein levels were significantly reduced after siRNA transfection.
Conclusions:
- BCR/ABL-targeted siRNAs demonstrate potent anti-proliferative and apoptosis-inducing effects on K562 cells.
- Down-regulation of BCR/ABL protein is a key anti-leukemic mechanism.
- These siRNAs hold promise as a novel therapeutic approach for CML.
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