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中性滤膜洗脱法的敏感性可因非双链断裂染色质损伤而改变,但脉冲场凝胶电泳(PFGE)的敏感性不受影响。

Sensitivity of neutral filter elution but not PFGE can be modified by non-dsb chromatin damage.

作者信息

Flentje M, Asadpour B, Latz D, Weber K J

机构信息

Department of Radiology, University of Heidelberg, Germany.

出版信息

Int J Radiat Biol. 1993 Jun;63(6):715-24. doi: 10.1080/09553009314552111.

Abstract

Hamster V79 fibroblast cells and human squamous carcinoma cells (Caski) were exposed to 60Co radiation and DNA double-strand break (dsb) induction was analysed by DNA elution at neutral pH from polycarbonate filter or out of an agarose matrix in pulsed-field electrophoresis (PFGE). While dsb yields were equal for the two cell lines (using 125-iodine calibration) a reduced responsiveness of filter elution was found for V79 versus Caski cells. This difference could be abolished when additional single-strand breaks (ssb) were introduced by an incubation at 10(-4) M H2O2 for up to 40 min that itself did not give a response in neutral elution. No such lack of specificity for the detection of dsb was seen in electrophoretic elution where also the influence of peroxide incubation was absent. The presumed potential of ssb to modify dsb detection was paralleled by the kinetics of dsb rejoining: a pronounced transient increase of DNA elution from filters was observed for V79 cells (less prominent with Caski cells) at 15-40 which is thought to reflect the occurrence of secondary ssb from incisions during base damage repair. Rejoining measured by PFGE did not show this behaviour. The results suggest that ssb may aid decondensation of the chromatin during lysis of cells required for an efficient release of dsb fragments when supported on filters, but which depends on cell type and is less critical in electrophoretic elution out of an agarose matrix. This involvement of ssb in the neutral filter elution assay appears to be contrary to published data obtained with different experimental systems. The finding of an increase of DNA elution from filters due to hyperthermia at 45 degrees C is also taken to indicate an involvement of non-dsb chromatin damage in the response of filter elution at neutral pH with V79 but not with Caski cells.

摘要

将仓鼠V79成纤维细胞和人鳞状癌细胞(Caski)暴露于60Co辐射下,通过在中性pH条件下从聚碳酸酯滤膜上洗脱DNA或在脉冲场凝胶电泳(PFGE)中从琼脂糖基质中洗脱DNA来分析DNA双链断裂(dsb)的诱导情况。虽然两种细胞系的dsb产量相等(使用125碘校准),但发现V79细胞与Caski细胞相比,滤膜洗脱的反应性降低。当通过在10(-4)M H2O2中孵育长达40分钟引入额外的单链断裂(ssb)时,这种差异可以消除,而H2O2本身在中性洗脱中没有反应。在电泳洗脱中未观察到检测dsb时的这种特异性缺乏,在电泳洗脱中也不存在过氧化物孵育的影响。ssb改变dsb检测的假定潜力与dsb重新连接的动力学平行:在15 - 40分钟时,观察到V79细胞(Caski细胞不太明显)从滤膜上洗脱的DNA有明显的瞬时增加,这被认为反映了碱基损伤修复过程中切口处产生的二级ssb的发生。通过PFGE测量的重新连接没有显示出这种行为。结果表明,当dsb片段在滤膜上得到支持时,ssb可能有助于细胞裂解过程中染色质的解聚,从而有效地释放dsb片段,但这取决于细胞类型,在从琼脂糖基质中进行电泳洗脱时不太关键。ssb在中性滤膜洗脱试验中的这种参与似乎与用不同实验系统获得的已发表数据相反。45℃热疗导致滤膜上DNA洗脱增加的发现也被认为表明,在中性pH条件下,V79细胞而非Caski细胞的滤膜洗脱反应中存在非dsb染色质损伤的参与。

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