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Published on: May 14, 2016
Parkin induces G2/M cell cycle arrest in TNF-α-treated HeLa cells
Min Ho Lee1, Yoonjung Cho1, Byung Chul Jung1
1Department of Biomedical Laboratory Science, College of Health Sciences, Yonsei University, Wonju, Gangwon-do, 220-710, Republic of Korea.
Abstract:
Parkin is a known tumor suppressor. However, the mechanism by which parkin acts as a tumor suppressor remains to be fully elucidated. Previously, we reported that parkin expression induces caspase-dependent apoptotic cell death in TNF-α-treated HeLa cells. However, at that time, we did not consider the involvement of parkin in cell cycle control. In the current study, we investigated whether parkin is involved in cell cycle regulation and suppression of cancer cell growth. In our cell cycle analyses, parkin expression induced G2/M cell cycle arrest in TNF-α-treated HeLa cells. To elucidate the mechanism(s) by which parkin induces this G2/M arrest, we analyzed cell cycle regulatory molecules involved in the G2/M transition. Parkin expression induced CDC2 phosphorylation which is known to inhibit CDC2 activity and cause G2/M arrest. Cyclin B1, which is degraded during the mitotic transition, accumulated in response to parkin expression, thereby indicating parkin-induced G2/M arrest. Next, we established that Myt1, which is known to phosphorylate and inhibit CDC2, increased following parkin expression. In addition, we found that parkin also induces increased Myt1 expression, G2/M arrest, and reduced cell viability in TNF-α-treated HCT15 cells. Furthermore, knockdown of parkin expression by parkin-specific siRNA decreased Myt1 expression and phosphorylation of CDC2 and resulted in recovered cell viability. These results suggest that parkin acts as a crucial molecule causing cell cycle arrest in G2/M, thereby suppressing tumor cell growth.
Insights
Parkin acts as a tumor suppressor by inducing G2/M cell cycle arrest. This mechanism involves increased Myt1 expression and CDC2 phosphorylation, ultimately suppressing cancer cell growth.
Area of Science:
- Oncology
- Molecular Biology
- Cell Biology
Background:
- Parkin is recognized as a tumor suppressor, but its precise mechanisms are not fully understood.
- Previous research indicated parkin induces apoptosis, but its role in cell cycle control was unexplored.
Purpose of the Study:
- To investigate the involvement of parkin in cell cycle regulation.
- To determine if parkin suppresses cancer cell growth through cell cycle control.
Main Methods:
- Cell cycle analysis in TNF-α-treated HeLa and HCT15 cells.
- Analysis of cell cycle regulatory molecules including CDC2, Cyclin B1, and Myt1.
- Parkin knockdown using parkin-specific siRNA.
Main Results:
- Parkin expression induced G2/M cell cycle arrest in both HeLa and HCT15 cells.
- Parkin increased CDC2 phosphorylation and Myt1 expression, leading to inhibited CDC2 activity.
- Knockdown of parkin reversed these effects, restoring cell viability.
Conclusions:
- Parkin plays a crucial role in inducing G2/M cell cycle arrest.
- This cell cycle arrest mechanism, mediated by Myt1 and CDC2, contributes to the tumor-suppressive function of parkin.
- Parkin's regulation of the cell cycle is a key factor in suppressing tumor cell growth.
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