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酵母SNR6基因的核小体组织与转录活性之间的相互干扰。

Reciprocal interferences between nucleosomal organization and transcriptional activity of the yeast SNR6 gene.

作者信息

Marsolier M C, Tanaka S, Livingstone-Zatchej M, Grunstein M, Thoma F, Sentenac A

机构信息

Service de Biochimie et de Génétique Moléculaire, CEA-Saclay, Gif-sur-Yvette, France.

出版信息

Genes Dev. 1995 Feb 15;9(4):410-22. doi: 10.1101/gad.9.4.410.

Abstract

Recent work has demonstrated a repressive effect of chromatin on the transcription of the yeast SNR6 gene in vitro. Here, we show the relations between chromatin structure and transcriptional activity of this gene in vivo. Analysis of the SNR6 locus by micrococcal nuclease digestion showed a protection of the TATA box, nuclease-sensitive sites around the A and B blocks, and arrays of positioned nucleosomes in the flanking regions. Analysis of a transcriptionally silent SNR6 mutant containing a 2-bp deletion in the B block showed a loss of TATA-protection and rearrangement or destabilization of nucleosomes in the flanking regions. Hence, SNR6 organizes the chromatin structure in the whole region in a manner dependent on its transcriptional state. Transcriptional analysis was performed by use of maxi-gene SNR6 constructs introduced into histone-mutated strains. Chromatin disruption induced by histone H4 depletion stimulated the transcription of promoter-deficient, but not of wild-type SNR6 genes, revealing a competition between the formation of nucleosomes and the assembly of Pol III transcription complexes that was much in favor of transcription factors. On the other hand, amino-terminal mutations in histone H3 or H4 had no effect (H4) or only a moderate stimulatory effect (H3) on the transcription of promoter-deficient SNR6 genes.

摘要

近期研究表明,染色质在体外对酵母SNR6基因的转录具有抑制作用。在此,我们展示了该基因在体内染色质结构与转录活性之间的关系。通过微球菌核酸酶消化对SNR6基因座进行分析,结果显示TATA框受到保护,A和B区域周围存在核酸酶敏感位点,侧翼区域有定位核小体阵列。对B区域存在2个碱基缺失的转录沉默SNR6突变体进行分析,结果显示TATA保护作用丧失,侧翼区域核小体发生重排或稳定性降低。因此,SNR6以依赖其转录状态的方式在整个区域组织染色质结构。通过将maxi - gene SNR6构建体导入组蛋白突变菌株进行转录分析。组蛋白H4缺失诱导的染色质破坏刺激了启动子缺陷型SNR6基因的转录,但对野生型SNR6基因无此作用,这揭示了核小体形成与Pol III转录复合物组装之间的竞争,而这种竞争非常有利于转录因子。另一方面,组蛋白H3或H4的氨基末端突变对启动子缺陷型SNR6基因的转录无影响(H4)或仅有适度的刺激作用(H3)。

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