x射线照射同步cho细胞DNA中性滤过液洗脱剂量-反应的细胞周期变化。

R Okayasu, D Bloecher, G Iliakis
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引用次数: 73

摘要

在细胞周期的不同阶段,同步的CHO细胞暴露于x射线下,获得DNA中性(pH 9.6)过滤洗脱的剂量-响应曲线。在同步期和平台期G1细胞中,以及在G1/S边界使用阿霉素阻滞的细胞中,剂量反应相似;它随着细胞进入S期而变平,在S期中期达到最低点。当细胞进入G2期时,观察到DNA洗脱剂量反应的增加,仅略低于G1细胞获得的值。利用中性蔗糖梯度离心技术,在埃利希腹水肿瘤细胞中也观察到S期DNA沉降特性的显著改变。来自S细胞的DNA在10 Gy照射下以350S- 700s的速度沉积,远高于自由沉积DNA分子的最大沉积速度(Smax = 350S),这表明DNA复合物的形成。来自G1, G1/S或G2 + M细胞的DNA按照预期的自由沉淀分子沉积。这些结果表明,当细胞进入S期时,DNA的物理化学性质发生了重大变化——可能是由DNA复制相关的DNA结构和染色质构象的改变引起的,并被用来解释在整个周期中观察到的DNA洗脱剂量反应的变化。有人提出,复杂DNA结构的形成,抵抗所使用的蛋白水解酶和洗涤剂,影响了DNA的洗脱特性,并产生了观察到的曲线DNA洗脱剂量-响应曲线,以及在整个细胞周期中观察到的洗脱特性的波动。
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Variation through the cell cycle in the dose-response of DNA neutral filter elution in X-irradiated synchronous CHO-cells.

Dose-response curves for DNA neutral (pH 9.6) filter elution were obtained with synchronized CHO cells exposed to X-rays at various phases of the cell cycle. The dose response was similar in synchronized and plateau-phase G1 cells, as well as in cells that were arrested at the G1/S border using aphidicolin; it flattened as cells progressed into S phase and reached a minimum in the middle of this phase. An increase in DNA elution dose response, to values only slightly lower than those obtained with G1 cells, was observed as cells entered G2 phase. Significant alterations in the sedimentation properties of the DNA during S phase were also observed in Ehrlich ascites tumor cells using the neutral sucrose gradient centrifugation technique. A significant proportion of the DNA from S cells irradiated with 10 Gy sedimented at speeds (350S-700S) well above the maximum sedimentation speed expected for free sedimenting DNA molecules (Smax = 350S), indicating the formation of a DNA complex. DNA from G1, G1/S, or G2 + M cells sedimented as expected for free sedimenting molecules. These results indicate significant alterations in the physicochemical properties of the DNA--probably caused by DNA replication-associated alterations in DNA structure and chromatin conformation--as cells enter S phase, and are invoked to explain the observed variation in DNA elution dose response throughout the cycle. It is proposed that the formation of a complex DNA structure, resistant to the proteolytic enzymes and detergents used, affected the elution characteristics of the DNA and gave rise to the observed curvilinear DNA elution dose-response curves, as well as to the fluctuations in elution characteristics observed throughout the cell cycle.

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