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Deregulated expression of cry1 and cry2 in human gliomas
Yong Luo1, Fan Wang, Lv-An Chen
1Department of Neurosurgery, The First People's Hospital of Jingmen, Jingmen, China.
Abstract:
Growing evidence shows that deregulation of the circadian clock plays an important role in the development of malignant tumors, including gliomas. However, the molecular mechanisms of gene chnages controlling circadian rhythm in glioma cells have not been explored. Using real time polymerase chain reaction and immunohistochemistry techniques, we examined the expression of two important clock genes, cry1 and cry2, in 69 gliomas. In this study, out of 69 gliomas, 38 were cry1-positive, and 51 were cry2-positive. The expression levels of cry1 and cry2 in glioma cells were significantly different from the surrounding non-glioma cells (P<0.01). The difference in the expression rate of cry1 and cry 2 in high-grade (grade III and IV) and low-grade (grade 1 and II) gliomas was non-significant (P>0.05) but there was a difference in the intensity of immunoactivity for cry 2 between high-grade gliomas and low-grade gliomas (r=-0.384, P=0.021). In this study, we found that the expression of cry1 and cry2 in glioma cells was much lower than in the surrounding non-glioma cells. Therefore, we suggest that disturbances in cry1 and cry2 expression may result in the disruption of the control of normal circadian rhythm, thus benefiting the survival of glioma cells. Differential expression of circadian clock genes in glioma and non-glioma cells may provide a molecular basis for the chemotherapy of gliomas.
Insights
Circadian clock genes cry1 and cry2 are downregulated in glioma cells compared to normal cells. This disruption in circadian rhythm may promote glioma survival and offer targets for cancer therapy.
Area of Science:
- Oncology
- Molecular Biology
- Chronobiology
Background:
- Circadian clock gene deregulation is linked to malignant tumor development, particularly gliomas.
- The specific molecular mechanisms governing circadian rhythm gene changes in glioma cells remain largely unexplored.
Purpose of the Study:
- To investigate the expression patterns of two key circadian clock genes, cry1 and cry2, in glioma tissues.
- To determine the relationship between cry1 and cry2 expression and glioma grade.
Main Methods:
- Real-time polymerase chain reaction (PCR) and immunohistochemistry were employed.
- Expression levels of cry1 and cry2 were analyzed in 69 glioma samples and compared to surrounding non-glioma cells.
Main Results:
- Significantly lower expression of cry1 and cry2 was observed in glioma cells compared to non-glioma cells (P<0.01).
- While overall expression rates did not differ significantly by glioma grade (P>0.05), cry2 immunoactivity intensity was lower in high-grade gliomas (P=0.021).
Conclusions:
- Downregulation of cry1 and cry2 in glioma cells suggests a disruption of normal circadian rhythm, potentially aiding tumor cell survival.
- Differential expression of these circadian clock genes in gliomas provides a potential molecular basis for future glioma chemotherapy strategies.
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