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Histone H2A.X gene transcription is regulated differently than transcription of other replication-linked histone genes.

机译:组蛋白H2A.X基因转录的调控与其他复制连接的组蛋白基因的转录调控不同。

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摘要

Histone H2A.X is a replication-independent histone H2A isoprotein species that is encoded by a transcript alternatively processed at the 3' end to yield two mRNAs: a 0.6-kb mRNA ending with the stem-loop structure characteristic of the mRNAs for replication-linked histone species, and a second, polyadenylated 1.6-kb mRNA ending about 1 kb further downstream (C. Mannironi, W. M. Bonner, and C. L. Hatch, Nucleic Acids Res. 17:9113-9126, 1989). Of the two, the 0.6-kb H2A.X stem-loop mRNA predominates in many cell lines, indicating that the presence of two types of mRNA may not completely account for the replication independence of H2A.X protein synthesis. The ambiguity is resolved by the finding that the level of the 0.6-kb H2A.X mRNA is only weakly downregulated during the inhibition of DNA replication and only weakly upregulated during the inhibition of protein synthesis, while the levels of other replication-linked mRNAs are strongly down- or upregulated under these two conditions. Analysis of the nuclear transcription rates of specific H2A genes showed that while the rates of transcription of replication-linked H2A genes decreased substantially during the inhibition of DNA synthesis and increased substantially during the inhibition of protein synthesis, the rate of H2A.X gene transcription decreased slightly under both conditions. These differences in transcriptional regulation between the H2A.X gene and other replication-linked histone genes are sufficient to account for the differences in regulation of their respective stem-loop mRNAs.
机译:组蛋白H2A.X是一种与复制无关的组蛋白H2A同种蛋白,由转录物编码,或者在3'端进行加工以产生两个mRNA:一个0.6-kb的mRNA,其末端具有茎环结构特征,用于复制,连接的组蛋白种类,和第二个多腺苷酸化的1.6-kb mRNA,在下游进一步约1 kb(C. Mannironi,WM Bonner,and CL Hatch,Nucleic Acids Res。17:9113-9126,1989)。在这两种细胞中,0.6 kb H2A.X茎环mRNA在许多细胞系中占主导地位,这表明两种类型的mRNA的存在可能无法完全解释H2A.X蛋白合成的复制独立性。通过发现0.6 kb H2A.X mRNA的水平仅在抑制DNA复制的过程中被弱下调,而在抑制蛋白质合成的过程中仅被弱上调,这一发现解决了歧义。在这两种情况下强烈下调或上调。对特定H2A基因的核转录速率的分析表明,尽管复制连接的H2A基因的转录速率在抑制DNA合成过程中显着下降,而在抑制蛋白质合成过程中显着上升,但H2A.X基因的转录率却下降了。在两种情况下都略有变化。 H2A.X基因和其他复制连接的组蛋白基因在转录调控上的这些差异足以说明其各自茎环mRNA的调控差异。

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