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DNA四级结构在人类淋巴细胞辐射敏感性中的作用——铜的一种假定作用

DNA quaternary structure in the radiation sensitivity of human lymphocytes--a proposed role of copper.

作者信息

George A M, Sabovljev S A, Hart L E, Cramp W A, Harris G, Hornsey S

机构信息

MRC Radiobiology Unit, Department of Histopathology, Hammersmith Hospital, London, UK.

出版信息

Br J Cancer Suppl. 1987 Jun;8:141-4.

Abstract

On challenging with 2M NaCl, the nuclei of human lymphocytes yield an aggregate of DNA-protein material. The density of the material is less when isolated from irradiated cells than when isolated from unirradiated cells. The density of this material, designated histone-free-DNA (HF-DNA), from irradiated cells returns to that from unirradiated cells if the irradiated cells are allowed time at 37 degrees C in nutrient conditions. Lymphocyte HF-DNA from patients who have exhibited hypersensitivity to radiotherapy exhibit slower repair characteristics than lymphocyte HF-DNA from the average normal subjects. Neutrons are more effective than X-rays in producing density changes. Misonidazole and the ADPRT inhibitor 3-AAB substantially inhibit return to unirradiated densities. The oer for the initial effect is between 2 and 3. These properties of this DNA material from human lymphocytes suggest that alterations in the configuration of such material by the loss and re-establishment of relatively weak cellular bonds are closely related to the well-known changes observed in classical cell survival experiments. Where the proliferation of human lymphocytes has been observed by concanavalin A stimulation, oer, RBE and chemical modification has been of the same order as the measured density changes. Additionally, we have found that the density of HF-DNA is heavily dependent upon Cu content. This has led us to propose that cell killing or malfunction at the nuclear level caused by ionizing radiation is caused by the conversion CuII----CuI and also by specific .OH attack on DNA or proteins at a Cu site.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

用2M氯化钠进行挑战时,人类淋巴细胞的细胞核会产生一种DNA - 蛋白质物质聚集体。从受辐照细胞中分离出的这种物质的密度比从未受辐照细胞中分离出的要低。如果将受辐照细胞在37摄氏度的营养条件下放置一段时间,来自受辐照细胞的这种被称为无组蛋白DNA(HF - DNA)的物质的密度会恢复到未受辐照细胞的水平。对放疗表现出超敏反应的患者的淋巴细胞HF - DNA比普通正常受试者的淋巴细胞HF - DNA表现出更慢的修复特性。中子在产生密度变化方面比X射线更有效。米索硝唑和ADPRT抑制剂3 - AAB能显著抑制恢复到未受辐照时的密度。初始效应的氧增强比在2到3之间。来自人类淋巴细胞的这种DNA物质的这些特性表明,通过相对较弱的细胞键的丢失和重新建立,这种物质构型的改变与经典细胞存活实验中观察到的众所周知的变化密切相关。在通过伴刀豆球蛋白A刺激观察到人类淋巴细胞增殖的情况下,氧增强比、相对生物效应和化学修饰与测量到的密度变化处于相同量级。此外,我们发现HF - DNA的密度严重依赖于铜含量。这使我们提出,电离辐射在核水平上导致的细胞杀伤或功能障碍是由CuII向CuI的转化以及在铜位点对DNA或蛋白质的特定.OH攻击引起的。(摘要截短于250字)

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