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抗叶酸诱导脆性X综合征患者细胞将单磷酸脱氧尿苷错误掺入DNA。

Antifolate-induced misincorporation of deoxyuridine monophosphate into DNA by cells from patients with the fragile X syndrome.

作者信息

Wang J C, Beardsley G P, Erbe R W

出版信息

Am J Med Genet. 1985 Aug;21(4):691-6. doi: 10.1002/ajmg.1320210410.

Abstract

The fragile site at Xq27 is expressed in vitro under conditions that lead to decreased intracellular thymidine triphosphate concentration, a condition which has also been shown to promote the misincorporation into DNA of deoxyuridine monophosphate (dUMP) in place of thymidine. We tested for increased whole-cell misincorporation of dUMP as a possible molecular mechanism for the expression of the fragile X abnormality. Neither deoxyuridine triphosphatase nor uracil-DNA-glycosylase, the two enzymes that normally prevent the accumulation of dUMP in DNA, was deficient in fragile X syndrome cells. Misincorporation of dUMP occurred in comparably low levels in both normal and fragile X syndrome lymphoblasts. Although these results provide strong evidence against generalized misincorporation of dUMP in fragile X syndrome cells, a substantial real difference present at Xq27 might not be detected in these studies of whole cells containing the diploid chromosome complement.

摘要

Xq27处的脆性位点在导致细胞内三磷酸胸苷浓度降低的条件下可在体外表达,这种情况也已被证明会促进脱氧尿苷单磷酸(dUMP)代替胸苷错误掺入DNA。我们测试了dUMP全细胞错误掺入增加作为脆性X异常表达的一种可能分子机制。正常情况下防止dUMP在DNA中积累的两种酶,即脱氧尿苷三磷酸酶和尿嘧啶-DNA-糖基化酶,在脆性X综合征细胞中均不缺乏。正常和脆性X综合征淋巴母细胞中dUMP的错误掺入水平相当低。尽管这些结果有力地证明了脆性X综合征细胞中不存在普遍的dUMP错误掺入,但在这些含有二倍体染色体组的全细胞研究中,可能检测不到Xq27处存在的实质性真实差异。

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