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酵母H2A-H2B启动子可受组蛋白基因拷贝数变化的调控。

A yeast H2A-H2B promoter can be regulated by changes in histone gene copy number.

作者信息

Moran L, Norris D, Osley M A

机构信息

Program in Molecular Biology, Sloan Kettering Cancer Center, New York, New York 10021.

出版信息

Genes Dev. 1990 May;4(5):752-63. doi: 10.1101/gad.4.5.752.

Abstract

The two divergently transcribed H2A-H2B gene pairs in yeast are differentially regulated as a function of the copy number of histone genes. Transcription of an HTA2-lacZ reporter gene is independent of histone gene copy number. Transcription of an HTA1-lacZ gene can be repressed or derepressed, depending on the number of HTA plus HTB genes in cells. Regulation by histone gene dosage is dependent on a negative site in the HTA1-HTB1 promoter and the products of regulatory genes that act through this site. The level of H2A plus H2B protein in the cell may signal the response to histone gene copy number, suggesting that transcription of the HTA1-HTB1 locus can be autogenously regulated. This phenomenon may be used, in part, to maintain the balanced synthesis of histones, a critical parameter in nucleosome assembly.

摘要

酵母中两个反向转录的H2A - H2B基因对作为组蛋白基因拷贝数的函数受到差异调节。HTA2 - lacZ报告基因的转录独立于组蛋白基因拷贝数。HTA1 - lacZ基因的转录可以被抑制或去抑制,这取决于细胞中HTA加HTB基因的数量。组蛋白基因剂量的调节依赖于HTA1 - HTB1启动子中的一个负调控位点以及通过该位点起作用的调控基因的产物。细胞中H2A加H2B蛋白的水平可能是对组蛋白基因拷贝数做出反应的信号,这表明HTA1 - HTB1基因座的转录可以进行自我调节。这种现象可能部分用于维持组蛋白的平衡合成,这是核小体组装中的一个关键参数。

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