首页> 外文期刊>Biochimica et biophysica acta: international journal of biochemistry and biophysics >Effects of ethidium bromide on DNA loop organisation in human lymphocytes measured by anomalous viscosity time dependence and single cell gel electrophoresis.
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Effects of ethidium bromide on DNA loop organisation in human lymphocytes measured by anomalous viscosity time dependence and single cell gel electrophoresis.

机译:通过异常粘度时间依赖性和单细胞凝胶电泳测量,溴化乙锭对人淋巴细胞DNA环组织的影响。

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The effects of ethidium bromide (EtBr) on human lymphocytes were studied by the method of anomalous viscosity time dependence (AVTD) and by the comet assay. EtBr at low concentrations increased the maximum viscosity and time of radial migration as measured with AVTD at neutral conditions of lysis. A pronounced relaxation of DNA loops was observed with the neutral comet assay. The maximal comet length corresponded to 2 Mb DNA loops. At high concentrations of EtBr, 2 mg/ml, significant reduction in AVTD below control level was seen that suggested hypercondensation of chromatin. The hypercondensation was directly observed with the neutral comet assay. EtBr did not induce DNA strand breaks as measured by the alkaline comet assay. The hypercondensed nuclei could be decondensed by irradiation with gamma-rays or exposure to light. The data provide evidence that EtBr at high concentrations resulted in hypercondensation of chromatin below control level. The comet assay confirmed that the increase in AVTD peaks deals with relaxation of loops and AVTD decrease is caused by chromatin condensation. The prediction of the AVTD theory for a correlation between time of radial migration and condensation of chromatin was verified. Further, the data show that the comet assay at neutral conditions of lysis is rather sensitive to DNA loop relaxation in the absence of DNA damage. Finally, donor specificity was found for the hypercondensation.
机译:溴化乙锭(EtBr)对人淋巴细胞的作用通过异常黏度时间依赖性(AVTD)方法和彗星试验研究。如在中性裂解条件下用AVTD测量,低浓度的EtBr可增加最大粘度和径向迁移时间。用中性彗星试验观察到DNA环明显松弛。最大彗星长度对应于2 Mb DNA环。在高浓度的EtBr(2 mg / ml)下,AVTD明显低于对照水平,这表明染色质过度浓缩。用中性彗星试验可直接观察到超冷凝现象。通过碱彗星试验测定,EtBr不会诱导DNA链断裂。可以通过用伽马射线辐照或暴露于光来使超凝聚核脱凝。数据提供了证据,表明高浓度的EtBr导致染色质过度凝结,低于对照水平。彗星试验证实,AVTD峰的增加与环的松弛有关,而AVTD的下降是由染色质凝聚引起的。验证了AVTD理论对径向迁移时间与染色质凝结之间相关性的预测。此外,数据表明,在不存在DNA损伤的情况下,在中性裂解条件下的彗星试验对DNA环松弛相当敏感。最后,发现了供体特异性的过度凝结。

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