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SRPK1‑siRNA suppresses K562 cell growth and induces apoptosis via the PARP‑caspase3 pathway
Hailian Wang1, Wei Ge2, Wen Jiang1
1Department of Pediatrics, The Second Hospital of Shandong University, Jinan, Shandong 250033, P.R. China.
Abstract:
Serine-arginine protein kinase 1 (SRPK1) has been used as an important signal mediator, and is associated with cancer development. However, studies have yet to determine whether SRPK1 suppresses leukemia cell growth and induces apoptosis. Studies have also yet to reveal the underlying mechanisms. In the present study, the effects of downregulating SRPK1 gene expression on chronic myeloid leukemia cell lines (K562 cells) were investigated through RNA interference (RNAi) and the proliferation inhibition and apoptosis induction of SRPK1 in K562 cells were analyzed. K562 cells were transfected with two different concentrations of siRNA, and the transfection efficiency was detected via flow cytometry. The expression of SRPK1 was detected via reverse transcription‑quantitative polymerase chain reaction. K562 cell proliferation and apoptosis were analyzed using MTT and flow cytometry respectively. The roles of caspase‑3, poly (ADP‑ribose) polymerase (PARP), p53 and B-cell lymphoma (Bcl)‑2/Bcl‑2 associated X, apoptosis regulator (Bax) proteins in the apoptosis of human K562 cells were further examined through western blot analysis. The SRPK1 expression was lower in the K562 cells transfected with SRPK1‑siRNA compared with untransfected cells. The inhibition rate in the transfected groups was increased compared with the untransfected groups. Compared with control groups, the number of apoptotic cells in the SRPK1‑silenced groups increased. The number of early apoptotic cells also increased. The cleaved caspase‑3, cleaved PARP and p53 expression levels were significantly increased in the RNAi groups compared with control groups. Conversely, the Bcl‑2/Bax rate was significantly lower. In conclusion, the knockdown of the SRPK1 gene by RNAi inhibited the proliferation of K562 cells and induced their apoptosis. Apoptosis was induced by the activation of the PARP‑caspase3 pathway.
Insights
Downregulating Serine-arginine protein kinase 1 (SRPK1) gene expression inhibits chronic myeloid leukemia cell growth and induces apoptosis. This occurs through the activation of the PARP-caspase-3 pathway, offering potential therapeutic strategies.
Area of Science:
- Molecular Biology
- Cancer Research
- Cell Biology
Background:
- Serine-arginine protein kinase 1 (SRPK1) is implicated in cancer development as a signal mediator.
- The specific role of SRPK1 in suppressing leukemia cell growth and inducing apoptosis remains largely undetermined.
- Understanding the mechanisms by which SRPK1 influences leukemia is crucial for targeted therapies.
Purpose of the Study:
- To investigate the effects of downregulating SRPK1 gene expression on chronic myeloid leukemia (K562) cell lines.
- To analyze the inhibition of proliferation and induction of apoptosis caused by SRPK1 modulation in K562 cells.
- To elucidate the molecular mechanisms underlying SRPK1's role in leukemia cell fate.
Main Methods:
- RNA interference (RNAi) using small interfering RNA (siRNA) to downregulate SRPK1 expression in K562 cells.
- Quantitative assessment of cell proliferation using MTT assays and apoptosis analysis via flow cytometry.
- Western blot analysis to examine the expression levels of key apoptosis-related proteins including caspase-3, PARP, p53, Bcl-2, and Bax.
Main Results:
- SRPK1 gene expression was significantly reduced in K562 cells transfected with SRPK1-siRNA.
- Downregulation of SRPK1 led to increased inhibition rates of K562 cell proliferation and a higher number of apoptotic cells, including early apoptotic cells.
- Increased expression of cleaved caspase-3, cleaved PARP, and p53 was observed, while the Bcl-2/Bax ratio decreased significantly.
Conclusions:
- Knockdown of SRPK1 gene expression effectively inhibits proliferation and induces apoptosis in K562 chronic myeloid leukemia cells.
- The observed apoptosis is mediated by the activation of the PARP-caspase-3 signaling pathway.
- Targeting SRPK1 presents a potential therapeutic strategy for chronic myeloid leukemia treatment.
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