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Transcriptional Regulation of xyn1, Encoding Xylanase I, in Hypocrea jecorina

机译:红褐肉座菌中编码木聚糖酶I的xyn1的转录调控。

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Two major xylanases (XYN I and XYN II) of the filamentous fungus Hypocrea jecorina (Trichoderma reesei) are simultaneously expressed during growth on xylan but respond differently to low-molecular-weight inducers. In vivo footprinting analysis of the xylanase1 (xyn1) promoter revealed three different nucleotide sequences (5′-GGCTAAATGCGACATCTTAGCC-3′ [an inverted repeat of GGCTAA spaced by 10 bp], 5′-CCAAT-3′, and 5′-GGGGTCTAGACCCC-3′ [equivalent to a double Cre1 site]) used to bind proteins. Binding to the Cre1 site is only observed under repressed conditions, whereas binding to the two other motifs is constitutive. Applying heterologously expressed components of the H. jecorina cellulase regulators Ace1 and Ace2 and the xylanase regulator Xyr1 suggests that Ace1 and Xyr1 but not Ace2 contact both GGCTAA motifs. H. jecorina transformants containing mutated versions of the xyn1 promoter, leading to elimination of protein binding to the left or the right GGCTAA box revealed either strongly reduced or completely eliminated induction of transcription. Elimination of Cre1 binding to its target released the basal transcriptional level from glucose repression but did not influence the inducibility of xyn1 expression. Mutation of the CCAAT box prevents binding of the Hap2/3/5 complex in vitro and is partially compensating for the loss of transcription caused by the mutation of the right GGCTAA box. Finally, evidence for a competition of Ace1 and Xyr1 for the right GGCTAA box is given. These data prompted us to hypothesize that xyn1 regulation is based on the interplay of Cre1 and Ace1 as a general and specific repressor with Xyr1 as transactivator.
机译:丝状真菌 Hypocrea jecorina Trichoderma reesei )的两个主要木聚糖酶(XYN I和XYN II)在木聚糖上生长期间同时表达,但对低分子量的反应不同诱导剂。木聚糖酶1( xyn1 )启动子的体内足迹分析揭示了三个不同的核苷酸序列(5'-GGCTAAATGCGACATCTTAGCC-3'[GGCTAA的反向重复序列,间隔为10 bp),5'-CCAAT-3' ,以及用于结合蛋白质的5'-GGGGTCTAGACCCC-3'[相当于两个Cre1位点])。仅在抑制条件下观察到与Cre1位点的结合,而与其他两个基序的结合是组成性的。应用 H的异源表达成分。 jecorina纤维素酶调节剂Ace1和Ace2和木聚糖酶调节剂Xyr1提示Ace1和Xyr1而不是Ace2接触两个GGCTAA基序。 H。含有 xyn1 启动子突变版本的jecorina 转化子,导致消除了与左侧或右侧GGCTAA盒结合的蛋白质,从而显着降低了或完全消除了转录诱导。消除Cre1与其靶标的结合释放了葡萄糖阻遏的基础转录水平,但不影响 xyn1 表达的诱导性。 CCAAT盒的突变可在体外阻止Hap2 / 3/5复合物的结合,并部分补偿由右GGCTAA盒的突变引起的转录损失。最后,给出了Ace1和Xyr1争夺正确的GGCTAA盒的证据。这些数据促使我们假设 xyn1 调控是基于Cre1和Ace1作为Xyr1作为反式激活因子的一般特异性抑制剂的相互作用。

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