首页> 外文期刊>Molecular Microbiology >The galactokinase of Hypocrea jecorina is essential for cellulase induction by lactose but dispensable for growth on D-galactose
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The galactokinase of Hypocrea jecorina is essential for cellulase induction by lactose but dispensable for growth on D-galactose

机译:红褐肉座菌的半乳糖激酶对于乳糖诱导纤维素酶必不可少,但对于D-半乳糖的生长却是必不可少的

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Lactose is the only soluble carbon source which can be used economically for the production of cellulases or heterologous proteins under cellulase expression signals by Hypocrea jecorina (=Trichoderma reesei). Towards an understanding of lactose metabolism and its role in cellulase formation, we have cloned and characterized the gal1 (galactokinase) gene of H. jecorina, which catalyses the first step in D-galactose catabolism. It exhibits a calculated M-r of 57 kDa, and shows moderate identity (about 40%) to its putative homologues of Saccharomyces cerevisiae and Kluyveromyces lactis. Gal1 is a member of the GHMP family, shows conservation of a Gly/Ser rich region involved in ATP binding and of amino acids (Arg 51, Glu 57, Asp 60, Asp 214, Tyr 270) responsible for galactose binding. A single transcript was formed constitutively during the rapid growth phase on all carbon sources investigated and accumulated to about twice this level during growth on D-galactose, L-arabinose and their corresponding polyols. Deletion of gal1 reduces growth on D-galactose but does only slightly affect growth on lactose. This is the result of the operation of a second pathway for D-galactose catabolism, which involves galactitol as an intermediate, and whose transient concentration is strongly enhanced in the delta-gal1 strain. In this pathway, galactitol is catabolised by the lad1-encoded L-arabinitol-4-dehydrogenase, because a gal1/lad1 double delta-mutant failed to grow on D-galactose. In the delta-gal1 strain, induction of the Leloir pathway gene gal7 (encoding galactose-1-phosphate uridylyltransferase) by D-galactose, but not by L-arabinose, is impaired. Induction of cellulase gene expression by lactose is also impaired in a gal1 deleted strain, whereas their induction by sophorose (the putative cellulose-derived inducer) was shown to be normal, thus demonstrating that galactokinase is a key enzyme for cellulase induction during growth on lactose, and that induction by lactose and sophorose involves different mechanisms. [References: 47]
机译:乳糖是唯一可溶解的碳源,可根据红景天菌(=里氏木霉)在纤维素酶表达信号下经济地用于生产纤维素酶或异源蛋白。为了了解乳糖代谢及其在纤维素酶形成中的作用,我们克隆并鉴定了红褐肉座菌的gal1(半乳糖激酶)基因,该基因催化D-半乳糖分解代谢的第一步。它显示出57 kDa的计算M-r,并且与啤酒酵母和乳酸克鲁维酵母的推定同源物显示出中等程度的同一性(约40%)。 Gal1是GHMP家族的成员,显示了参与ATP结合的富含Gly / Ser的区域和负责半乳糖结合的氨基酸(Arg 51,Glu 57,Asp 60,Asp 214,Tyr 270)的保守性。在所有研究的碳源的快速生长阶段组成性地形成单个转录本,并且在D-半乳糖,L-阿拉伯糖及其相应的多元醇上生长期间积累到该水平的约两倍。删除gal1会减少D-半乳糖的生长,但仅对乳糖的生长产生轻微影响。这是D-半乳糖分解代谢第二条途径运作的结果,该途径涉及半乳糖醇作为中间体,并且其瞬时浓度在δ-gal1菌株中得到了大大增强。在此途径中,由于gal1 / lad1双delta突变体无法在D-半乳糖上生长,因此lad1编码的L-阿拉伯糖醇4-脱氢酶对半乳糖醇进行了代谢。在del-gal1菌株中,D-半乳糖而不是L-阿拉伯糖对Leloir途径基因gal7(编码半乳糖-1-磷酸尿嘧啶转移酶)的诱导被削弱。在缺失gal1的菌株中,乳糖对纤维素酶基因表达的诱导作用也减弱,而槐糖(推定的纤维素衍生诱导剂)对乳糖酶基因表达的诱导显示是正常的,因此证明半乳糖激酶是乳糖生长过程中纤维素酶诱导的关键酶。 ,而乳糖和槐糖浆的诱导涉及不同的机制。 [参考:47]

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