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참나무겨우살이의 Cyclin D1 단백질 분해 유도를 통한 항암활성

Anti-Cancer Activity of Taxillus yadoriki by Induction of Cyclin D1 Proteasomal Degradation in Human Cancer Cells

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  • URLhttps://db.koreascholar.com/Article/Detail/352139
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한국약용작물학회 (The Korean Society of Medicinal Crop Science)
초록

Background : Although the inhibitory effect of mistletoe on cancer cell growth has been reported, the underlying mechanisms to explain its anti-proliferative activity are not fully studied. Thus, we elucidated the potential molecular mechanism of the branch from taxillus yadoriki (TY) parasitic to Neolitsea sericea (NS) (TY-NS-B) for the anti-proliferative effect.
Methods and Results : In comparison of anti-proliferative effect of TY from the host trees such as Cryptomeria japonica (CJ), Neolitsea sericea (NS), Prunus serrulata (PS), Cinnamomum camphora (CC) and Quercus acutissima (QA), TY-NS showed higher anti-cell proliferative effect than TY-CJ, TY-PS, TY-CC or TY-QA. In addition, the anti-proliferative effect of branch from TY from all host trees was better than leaves. Thus, we selected the branch from Taxillus yadoriki parasitic to Neolitsea sericea (TY-NS-B) for the further study. TY-NS-B inhibited the cell proliferation in the various cancer cells and downregulated cyclin D1 protein level. MG132 treatment attenuated cyclin D1 downregulation of cyclin D1 protein level by TY-NS-B. In addition, TY-NS-B increased threonine-286 (T286) phosphorylation of cyclin D1, and the mutation of T286 to alanine (T286A) blocked cyclin D1 proteasomal degradation by TY-NS-B. But the upstream factors related to cyclin D1 degradation such as ERK1/2, p38, JNK, GSK3β, PI3K, IκK or ROS did not affect cyclin D1 degradation by TY-NS-B. However, LMB treatment was observed to inhibit cyclin D1 degradation by TY-NS-B, and T286A blocked cyclin D1 degradation through suppressing cyclin D1 redistribution from nucleus to cytoplasm by TY-NS-B. In addition, TY-NS-B activated CRM1 expression.
Conclusion : Our results suggest that TY-NS-B may suppress cell proliferation by downregulating cyclin D1 protein level through proteasomal degradation via T286 phosphorylation-dependent cyclin D1 nuclear export. These findings will provide the evidence that TY-NS-B has potential to be a candidate for the development of chemoprevention or therapeutic agents for human cancer.

저자
  • 박수빈(안동대학교 생약자원학과) | Su Bin Park
  • 김하나(안동대학교 생약자원학과) | Ha Na Kim
  • 박광훈(국립산림과학원 산림약용자원연구소) | Gwang Hun Park
  • 손호준(국립산림과학원 산림약용자원연구소) | Ho Jun Son
  • 정형진(안동대학교 생약자원학과) | Hyung Jin Jeong
  • 정진부(안동대학교 생약자원학과) | Boo Jeong Corresponding author