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在酿酒酵母中,PHO8表达的特定顺式作用序列与正向调控因子PHO4蛋白相互作用。

Specific cis-acting sequence for PHO8 expression interacts with PHO4 protein, a positive regulatory factor, in Saccharomyces cerevisiae.

作者信息

Hayashi N, Oshima Y

机构信息

Department of Fermentation Technology, Faculty of Engineering, Osaka University, Japan.

出版信息

Mol Cell Biol. 1991 Feb;11(2):785-94. doi: 10.1128/mcb.11.2.785-794.1991.

Abstract

The PHO8 gene of Saccharomyces cerevisiae encodes repressible alkaline phosphatase (rALPase; EC 3.1.3.1). The rALPase activity of the cells is two to three times higher in medium containing a low concentration of Pi than in high-Pi medium due to transcription of PHO8. The Pi signals are conveyed to PHO8 by binding of PHO4 protein, a positive regulatory factor, to a promoter region of PHO8 (PHO8p) under the influence of the PHO regulatory circuit. Deletion analysis of PHO8p DNA revealed two separate regulatory regions required for derepression of rALPase located at nucleotide positions -704 to -661 (distal region) and -548 to -502 (proximal region) and an inhibitory region located at -421 to -289 relative to the translation initiation codon. Gel retardation experiments showed that a beta-galactosidase-PHO4 fusion protein binds to a 132-bp PHO8p fragment bearing the proximal region but not to a 226-bp PHO8 DNA bearing the distal region. The fusion protein also binds to a synthetic oligonucleotide having the same 12-bp nucleotide sequence as the PHO8p DNA from positions -536 to -525. The 132-bp PHO8p fragment, connected at position -281 of the 5' upstream region of a HIS5'-'lacZ fused gene, could sense Pi signals in vivo, but a 20-bp synthetic oligonucleotide having the same sequence from -544 to -525 of the PHO8p DNA could not. Linker insertions in the PHO8p DNA indicated that the 5-bp sequence 5'-CACGT-3' from positions -535 to -531 is essential for binding the beta-galactosidase-PHO4 fusion protein and for derepression of rALPase.

摘要

酿酒酵母的PHO8基因编码可阻遏碱性磷酸酶(rALPase;EC 3.1.3.1)。由于PHO8的转录,细胞在低磷浓度培养基中的rALPase活性比在高磷培养基中高两到三倍。在PHO调节回路的影响下,正调控因子PHO4蛋白与PHO8的启动子区域(PHO8p)结合,将磷信号传递给PHO8。对PHO8p DNA的缺失分析揭示了rALPase去阻遏所需的两个独立调节区域,分别位于核苷酸位置-704至-661(远端区域)和-548至-502(近端区域),以及相对于翻译起始密码子位于-421至-289的抑制区域。凝胶阻滞实验表明,β-半乳糖苷酶-PHO4融合蛋白与带有近端区域的132 bp PHO8p片段结合,但不与带有远端区域的226 bp PHO8 DNA结合。该融合蛋白还与具有与PHO8p DNA从-536至-525相同的12 bp核苷酸序列的合成寡核苷酸结合。连接在HIS5'-'lacZ融合基因5'上游区域-281位置的132 bp PHO8p片段能够在体内感知磷信号,但具有与PHO8p DNA从-544至-525相同序列的20 bp合成寡核苷酸则不能。PHO8p DNA中的接头插入表明,从-535至-531位置的5'-CACGT-3' 5 bp序列对于β-半乳糖苷酶-PHO4融合蛋白的结合以及rALPase的去阻遏至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f10e/359730/4cfab941337a/molcellb00137-0216-a.jpg

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