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与共调控的PHO5启动子相比,酵母PHO8启动子的转录调控。

Transcriptional regulation of the yeast PHO8 promoter in comparison to the coregulated PHO5 promoter.

作者信息

Munsterkötter M, Barbaric S, Hörz W

机构信息

Adolf-Butenandt-Institut, Molekularbiologie, Universität München, Schillerstrasse 44, 80336 München, Germany.

出版信息

J Biol Chem. 2000 Jul 28;275(30):22678-85. doi: 10.1074/jbc.M001409200.

Abstract

Expression of the PHO8 and PHO5 genes that encode a nonspecific alkaline and acid phosphatase, respectively, is regulated in response to the P(i) concentration in the medium by the same transcription factors. Upon induction by phosphate starvation, both promoters undergo characteristic chromatin remodeling, yet the extent of remodeling at the PHO8 promoter is significantly lower than at PHO5. Despite the coordinate regulation of the two promoters, the PHO8 promoter is almost 10 times weaker than PHO5. Here we show that of two Pho4 binding sites that had been previously mapped at the PHO8 promoter in vitro, only the high affinity one, UASp2, is functional in vivo. Activation of the PHO8 promoter is partially Pho2-dependent. However, unlike at PHO5, Pho4 can bind strongly to its binding site in the absence of Pho2 and remodel chromatin in a Pho2-independent manner. Replacement of the inactive UASp1 element by the UASp1 element from the PHO5 promoter results in more extensive chromatin remodeling and a concomitant 2-fold increase in promoter activity. In contrast, replacement of the high affinity UASp2 site with the corresponding site from PHO5 precludes chromatin remodeling completely and as a consequence promoter activation, despite efficient binding of Pho4 to this site. Deletion of the promoter region normally covered by nucleosomes -3 and -2 results in a 2-fold increase in promoter activity, further supporting a repressive role of these nucleosomes. These data show that there can be strong binding of Pho4 to a UAS element without any chromatin remodeling and promoter activation. The close correlation between promoter activity and the extent of chromatin disruption strongly suggests that the low level of PHO8 induction in comparison with PHO5 is partly due to the inability of Pho4 to achieve complete chromatin remodeling at this promoter.

摘要

分别编码非特异性碱性磷酸酶和酸性磷酸酶的PHO8和PHO5基因的表达,受相同转录因子的调控,以响应培养基中的磷(P(i))浓度。在磷酸盐饥饿诱导下,两个启动子都会经历特征性的染色质重塑,但PHO8启动子的重塑程度明显低于PHO5。尽管两个启动子协同调控,但PHO8启动子的活性几乎比PHO5弱10倍。我们在此表明,先前在体外绘制于PHO8启动子上的两个Pho4结合位点中,只有高亲和力的UASp2在体内具有功能。PHO8启动子的激活部分依赖于Pho2。然而,与PHO5不同的是,在没有Pho2的情况下,Pho4可以强烈结合其结合位点,并以不依赖Pho2的方式重塑染色质。用PHO5启动子的UASp1元件替换无活性的UASp1元件,会导致更广泛的染色质重塑,并使启动子活性随之增加2倍。相反,用PHO5的相应位点替换高亲和力的UASp2位点,尽管Pho4能有效结合该位点,但会完全阻止染色质重塑,从而导致启动子激活失败。删除通常被核小体-3和-2覆盖的启动子区域,会使启动子活性增加2倍,进一步支持了这些核小体的抑制作用。这些数据表明,Pho4可以与UAS元件强烈结合,而不发生任何染色质重塑和启动子激活。启动子活性与染色质破坏程度之间的密切相关性强烈表明,与PHO5相比,PHO8诱导水平较低部分是由于Pho4无法在该启动子上实现完全的染色质重塑。

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