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多种脱氧核苷对腺苷脱氨酶失活淋巴细胞中脱氧腺苷诱导的DNA损伤的保护作用。

Protection by various deoxynucleosides against deoxyadenosine-induced DNA damage in adenosine deaminase-inactivated lymphocytes.

作者信息

Shimoyama R K, Seto S, Mori C

机构信息

Department of Pediatrics, Shimane Medical University, Izumo, 693-8051, Japan.

出版信息

Mol Genet Metab. 1999 Dec;68(4):455-60. doi: 10.1006/mgme.1999.2937.

Abstract

Adenosine deaminase deficiency is an inborn error resulting in immunodeficiency. The pathogenesis of the lymphopenia is not fully understood. Intracellular increases in dATP in the absence of deamination retard DNA repair in human resting lymphocytes and results in the slow accumulation of DNA strand breaks. We focused on the relationship between DNA damage and DNA precursor pools in cultures of deoxycoformycin-treated, ADA-inhibited resting lymphocytes. The addition of 10 microM deoxyadenosine led to a substantial number of DNA strand breaks within 12 h, breaks equivalent to those which occur with about 190 rad irradiation. Addition of any of the other deoxynucleosides used partially prevented this dAdo-induced DNA damage and promoted DNA repair. However, the preventive effects did not correlate inversely with intracellular dATP levels. Resting lymphocytes have very small dNTP pools. Treatment with dAdo slightly reduced dTTP and dCTP. Three kinds of deoxynucleosides, other than dAdo, restored or raised the corresponding dNTP level but the pool imbalance was only minimally corrected. Regarding the toxic effects of dAdo in ADA deficiency, not only dATP levels but also dNTP pool balance has a crucial role in the pathogenesis. Pool sizes of dTTP, dCTP, and possibly dGTP must be maintained at normal levels, if dAdo-induced DNA damage is to be avoided.

摘要

腺苷脱氨酶缺乏症是一种导致免疫缺陷的先天性疾病。淋巴细胞减少的发病机制尚未完全明确。在缺乏脱氨作用的情况下,细胞内dATP增加会阻碍人静止淋巴细胞中的DNA修复,并导致DNA链断裂的缓慢积累。我们重点研究了脱氧助间型霉素处理的、ADA抑制的静止淋巴细胞培养物中DNA损伤与DNA前体池之间的关系。添加10微摩尔脱氧腺苷会在12小时内导致大量DNA链断裂,断裂程度相当于约190拉德辐射所造成的断裂。添加任何一种其他脱氧核苷可部分预防这种脱氧腺苷诱导的DNA损伤并促进DNA修复。然而,预防效果与细胞内dATP水平并非呈负相关。静止淋巴细胞的dNTP池非常小。用脱氧腺苷处理会使dTTP和dCTP略有降低。除脱氧腺苷外的三种脱氧核苷可恢复或提高相应的dNTP水平,但池失衡仅得到最小程度的纠正。关于脱氧腺苷在ADA缺乏症中的毒性作用,不仅dATP水平,而且dNTP池平衡在发病机制中都起着关键作用。如果要避免脱氧腺苷诱导的DNA损伤,dTTP、dCTP以及可能的dGTP的池大小必须维持在正常水平。

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