首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Lack of aldose 1-epimerase in Hypocrea jecorina (anamorph Trichoderma reesei): A key to cellulase gene expression on lactose
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Lack of aldose 1-epimerase in Hypocrea jecorina (anamorph Trichoderma reesei): A key to cellulase gene expression on lactose

机译:红褐肉座菌(无性木霉属里氏木霉)中醛糖1-表异构酶的缺乏:乳糖上纤维素酶基因表达的关键

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摘要

The heterodisaccharide lactose (1,4-O-β-d-galactopyranosyl-d-glucose) induces cellulase formation in the ascomycete Hypocrea jecorina (= Trichoderma reesei). Lactose assimilation is slow, and the assimilation of its β-d-galactose moiety depends mainly on the operation of a recently described reductive pathway and depends less on the Leloir pathway, which accepts only α-d-galactose. We therefore reasoned whether galactomutarotase [aldose 1-epimerase (AEP)] activity might limit lactose assimilation and thus influence cellulase formation. We identified three putative AEP-encoding genes (aep1, aep2, aep3) in H. jecorina, of which two encoded intracellular protein (AEP1 and AEP2) and one encoded an extracellular protein (AEP3). Although all three were transcribed, only the aep3 transcript was detected on lactose. However, no mutarotase activity was detected in the mycelia, their cell walls, or the extracellular medium during growth on lactose. Therefore, the effect of galactomutarotase activity on lactose assimilation was studied with H. jecorina strains expressing the C-terminal galactose mutarotase part of the Saccharomyces cerevisiae Gal10. These strains showed increased growth on lactose in a gene copy number-dependent manner, although their formation of extracellular β-galactosidase activity and transcription of the genes encoding the first steps in the Leloir and the reductive pathway was similar to the parental strain QM9414. Cellulase gene transcription on lactose dramatically decreased in these strains, but remained unaffected during growth on cellulose. Our data show that cellulase induction in H. jecorina by lactose requires the β-anomer of d-galactose and reveal the lack of mutarotase activity during growth on lactose as an important key for cellulase formation on this sugar.
机译:杂二糖乳糖(1,4-O-β-d-吡喃半乳糖基-d-葡萄糖)可诱导子囊菌红景天(=里氏木霉)中的纤维素酶形成。乳糖吸收慢,其β-d-半乳糖部分的吸收主要取决于最近描述的还原途径的运作,而​​较少取决于仅接受α-d-半乳糖的Leloir途径。因此,我们推断半乳糖核糖核酸酶[醛糖1-表异构酶(AEP)]的活性是否可能限制乳糖同化并因此影响纤维素酶的形成。我们在红褐肉座菌中鉴定了三个推定的AEP编码基因(aep1,aep2,aep3),其中两个编码细胞内蛋白(AEP1和AEP2),一个编码细胞外蛋白(AEP3)。尽管所有三个都被转录,但是在乳糖上仅检测到aep3转录物。但是,在乳糖生长期间,在菌丝体,其细胞壁或细胞外培养基中未检测到诱变酶活性。因此,用表达酿酒酵母Gal10的C-末端半乳糖诱变酶部分的红褐肉座菌菌株研究了半乳糖泛酶活性对乳糖同化的影响。尽管它们的胞外β-半乳糖苷酶活性的形成以及编码Leloir第一步和还原途径的基因的转录与亲本菌株QM9414相似,但这些菌株在乳糖上的生长以基因拷贝数依赖性方式增加。在这些菌株中,乳糖上的纤维素酶基因转录显着降低,但在纤维素上生长期间仍不受影响。我们的数据表明,乳糖在红褐肉座菌中诱导纤维素酶需要d-半乳糖的β-异头物,并表明在乳糖生长过程中缺乏诱变酶活性是在这种糖上形成纤维素酶的重要关键。

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