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DNA低甲基化会导致DNase-I敏感性增加以及整个失活X染色体复制时间提前。

DNA hypomethylation causes an increase in DNase-I sensitivity and an advance in the time of replication of the entire inactive X chromosome.

作者信息

Jablonka E, Goitein R, Marcus M, Cedar H

出版信息

Chromosoma. 1985;93(2):152-6. doi: 10.1007/BF00293162.

Abstract

We have examined the effect of 5-azacytidine (5-aza-C) induced hypomethylation of DNA on the time of replication and DNase I sensitivity of the X chromosomes of female Gerbillus gerbillus (rodent) lung fibroblast cells. Using in situ nick translation to visualise the potential state of activity of large regions of metaphase chromosomes we show that 5-aza-C causes a dramatic increase in the DNase-I sensitivity of the entire inactive X chromosome of female G. gerbillus cells and this increase in nuclease sensitivity correlates with a large shift in the time of replication of the inactive X chromosome from late S phase to early S phase. These effects of 5-aza-C on the inactive X chromosome are associated with a 15% decrease in DNA methylation. Our results indicate that DNA methylation concomitantly affects both the time of replication and the chromatin conformation of the inactive X chromosome.

摘要

我们研究了5-氮杂胞苷(5-aza-C)诱导的DNA低甲基化对雌性沙鼠(啮齿动物)肺成纤维细胞X染色体复制时间和DNase I敏感性的影响。使用原位缺口平移来可视化中期染色体大片段区域的潜在活性状态,我们发现5-aza-C会导致雌性沙鼠细胞整个失活X染色体的DNase-I敏感性显著增加,并且这种核酸酶敏感性的增加与失活X染色体复制时间从S期后期大幅转变为S期早期相关。5-aza-C对失活X染色体的这些影响与DNA甲基化降低15%有关。我们的结果表明,DNA甲基化同时影响失活X染色体的复制时间和染色质构象。

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