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DNA end binding activity and Ku70/80 heterodimer expression in human colorectal tumor.

机译:人类结直肠肿瘤中的DNA末端结合活性和Ku70 / 80异二聚体表达。

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AIM: To determine the DNA binding activity and protein levels of the Ku70/80 heterodimer, the functional mediator of the NHEJ activity, in human colorectal carcinogenesis. METHODS: The Ku70/80 DNA-binding activity was determined by electrophoretic mobility shift assays in 20 colon adenoma and 15 colorectal cancer samples as well as matched normal colonic tissues. Nuclear and cytoplasmic protein expression was determined by immunohistochemistry and Western blot analysis. RESULTS: A statistically significant difference was found in both adenomas and carcinomas as compared to matched normal colonic mucosa (P<0.00). However, changes in binding activity were not homogenous with approximately 50% of the tumors showing a clear increase in the binding activity, 30% displaying a modest increase and 15% showing a decrease of the activity. Tumors, with increased DNA-binding activity, also showed a statistically significant increase in Ku70 and Ku86 nuclear expression, as determined by Western blot and immunohistochemical analyses (P<0.001). Cytoplasmic protein expression was found in pathological samples, but not in normal tissues either from tumor patients or from healthy subjects. CONCLUSION: Overall, our DNA-binding activity and protein level are consistent with a substantial activation of the NHEJ pathway in colorectal tumors. Since the NHEJ is an error prone mechanism, its abnormal activation can result in chromosomal instability and ultimately lead to tumorigenesis.
机译:目的:确定人类结直肠癌发生过程中NHEJ活性的功能介体Ku70 / 80异二聚体的DNA结合活性和蛋白质水平。方法:通过电泳迁移率变动分析法在20例结肠腺瘤和15例大肠癌样品以及匹配的正常结肠组织中测定了Ku70 / 80 DNA结合活性。通过免疫组织化学和蛋白质印迹分析确定核蛋白和胞质蛋白的表达。结果:与匹配的正常结肠黏膜相比,腺瘤和癌均具有统计学上的显着差异(P <0.00)。然而,结合活性的变化不是均匀的,大约50%的肿瘤显示结合活性明显增加,30%的肿瘤显示适度增加,而15%的肿瘤显示活性降低。通过Western印迹和免疫组化分析确定,具有增加的DNA结合活性的肿瘤,在Ku70和Ku86核表达中也显示出统计学上的显着增加(P <0.001)。在病理样品中发现了细胞质蛋白表达,但在肿瘤患者或健康受试者的正常组织中均未发现。结论:总的来说,我们的DNA结合活性和蛋白质水平与NHEJ通路在大肠肿瘤中的实质性激活相一致。由于NHEJ是易于出错的机制,因此其异常激活可能导致染色体不稳定,并最终导致肿瘤发生。

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