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Binding Characteristics and Regulatory Mechanisms of the Transcription Factors Controlling Oleate-responsive Genes in Saccharomyces cerevisiae

机译:转录的结合特征和调控机制 酿酒酵母中控制油酸反应基因的因素 酿酒酵母

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摘要

Transcriptional activation of many genes involved in peroxisome-related functions is regulated by the Oaf1p, Pip2p, and Adr1p transcription factors in Saccharomyces cerevisiae. We have analyzed the in vivo binding characteristics of Oaf1p-Pip2p and found that this complex is recruited to its target oleate-response element (ORE) under all growth conditions tested. In addition, this complex also binds to ORE-containing genes that do not appear to be regulated by these proteins, as well as to some genes lacking conventional OREs. The recruitment of the Oaf1p-Pip2p complex was greatly increased upon glucose derepression, possibly due to Oaf1p phosphorylation with only moderate increases upon oleate induction. Thus, this complex may receive a nutritional cue while it is already bound to DNA, suggesting that, in addition to the increase in Oaf1p-Pip2p binding, other mechanism(s) such as enhanced Adr1p association may drive the expression of highly inducible fatty acid-responsive genes. Adr1p binds to target genes in an oleate-dependent fashion and is involved in Oaf1p-Pip2p binding. In turn, the Oaf1p-Pip2p complex appears to be important for Adr1p binding to a subset of oleate-responsive genes. Adr1p is a positive regulator of ORE-containing genes, but it also acts as a negative factor in expression of some of these genes. Finally, we have also shown that Adr1p is directly involved in mediating oleate induction of Oaf1p-Pip2p target genes.
机译:酿酒酵母中的Oaf1p,Pip2p和Adr1p转录因子调节涉及过氧化物酶体相关功能的许多基因的转录激活。我们分析了Oaf1p-Pip2p的体内结合特征,发现该复合物在所有测试的生长条件下均被募集到其目标油酸酯反应元件(ORE)。另外,该复合物还与似乎不受这些蛋白质调控的含ORE的基因以及缺乏常规ORE的某些基因结合。降低葡萄糖后,Oaf1p-Pip2p复合物的募集会大大增加,这可能是由于Oaf1p磷酸化导致油酸盐诱导仅适度增加。因此,这种复合物在已经与DNA结合时可能会收到营养提示,这表明,除了Oaf1p-Pip2p结合增加之外,其他机制(例如增强的Adr1p结合)也可能驱动高诱导脂肪酸的表达。反应基因。 Adr1p以油酸盐依赖性方式与靶基因结合,并参与Oaf1p-Pip2p结合。反过来,Oaf1p-Pip2p复合物似乎对Adr1p与油酸反应基因子集的结合很重要。 Adr1p是含ORE的正调节剂 基因,但它在某些基因的表达中也起着负面作用 基因。最后,我们还表明Adr1p直接参与了 介导Oaf1p-Pip2p目标基因的油酸盐诱导。

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