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DNA合成抑制对S期人核心组蛋白基因协同表达的影响。

Influence of DNA synthesis inhibition on the coordinate expression of core human histone genes during S phase.

作者信息

Plumb M, Stein J, Stein G

出版信息

Nucleic Acids Res. 1983 Nov 25;11(22):7927-45. doi: 10.1093/nar/11.22.7927.

Abstract

Core histone mRNA metabolism has been examined in S phase HeLa cells recovering from DNA synthesis inhibition by 1 mM hydroxyurea. Using cloned human histone genes as probes for histone mRNA quantitation, the response to and recovery from DNA synthesis inhibition is shown to depend on the position of the cell with respect to the initiation of DNA replication. The incorporation of 3H-uridine into multiple histone mRNAs in recovering cells does not exceed preinhibition levels, and as this incorporation is maximal in early S phase, the synthesis of core histone mRNA is apparently related to the ordered replication of the genome. The total histone mRNA present in interrupted S phase cells after recovery is not significantly different from that present in control cells, and a temporal and functional coupling between histone mRNA levels and the relative rate of DNA synthesis is maintained in perturbed cells.

摘要

在从1 mM羟基脲抑制DNA合成中恢复的S期HeLa细胞中,对核心组蛋白mRNA的代谢进行了研究。使用克隆的人类组蛋白基因作为组蛋白mRNA定量的探针,结果表明,对DNA合成抑制的反应以及从该抑制中恢复的情况取决于细胞相对于DNA复制起始的位置。在恢复中的细胞中,3H-尿苷掺入多种组蛋白mRNA的量不超过抑制前水平,并且由于这种掺入在S期早期最大,因此核心组蛋白mRNA的合成显然与基因组的有序复制有关。恢复后处于中断S期的细胞中存在的总组蛋白mRNA与对照细胞中存在的总组蛋白mRNA没有显著差异,并且在受到干扰的细胞中,组蛋白mRNA水平与DNA合成相对速率之间保持着时间和功能上的耦合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f020/326550/4e1ae2387d95/nar00367-0275-a.jpg

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