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A Novel CreA-Mediated Regulation Mechanism of Cellulase Expression in the Thermophilic Fungus Humicola insolens

机译:CreA介导的嗜热真菌腐质霉中纤维素酶表达的新型调控机制。

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摘要

The thermophilic fungus Humicola insolens produces cellulolytic enzymes that are of great scientific and commercial interest; however, few reports have focused on its cellulase expression regulation mechanism. In this study, we constructed a creA gene (carbon catabolite repressor gene) disruption mutant strain of H. insolens that exhibited a reduced radial growth rate and stouter hyphae compared to the wild-type (WT) strain. The creA disruption mutant also expressed elevated pNPCase (cellobiohydrolase activities), pNPGase (β-glucosidase activities), and xylanase levels in non-inducing fermentation with glucose. Unlike other fungi, the H. insolens creA disruption mutant displayed lower FPase (filter paper activity), CMCase (carboxymethyl cellulose activity), pNPCase, and pNPGase activity than observed in the WT strain when fermentation was induced using Avicel, whereas its xylanase activity was higher than that of the parental strain. These results indicate that CreA acts as a crucial regulator of hyphal growth and is part of a unique cellulase expression regulation mechanism in H. insolens. These findings provide a new perspective to improve the understanding of carbon catabolite repression regulation mechanisms in cellulase expression, and enrich the knowledge of metabolism diversity and molecular regulation of carbon metabolism in thermophilic fungi.
机译:嗜热腐质霉Humicola产生的纤维素分解酶具有极大的科学和商业价值。然而,很少有报道关注其纤维素酶表达调控机制。在这项研究中,我们构建了野生型链球菌的creA基因(碳分解代谢物阻遏物基因)破坏突变菌株,与野生型(WT)菌株相比,其径向生长速率和菌丝菌丝减少。 creA破坏突变体在非诱导葡萄糖发酵中还表达了较高的pNPCase(纤维二糖水解酶活性),pNPGase(β-葡萄糖苷酶活性)和木聚糖酶水平。与其他真菌不同,H。insolens creA破坏突变体显示出较低的FPase(滤纸活性),CMCase(羧甲基纤维素活性),pNPCase和pNPGase活性,比使用Avicel诱导发酵的WT菌株低,而其木聚糖酶活性为高于亲本菌株。这些结果表明,CreA充当菌丝生长的关键调节剂,并且是H. insolens中独特的纤维素酶表达调节机制的一部分。这些发现提供了新的观点,以增进对碳分解代谢物阻抑在纤维素酶表达中的调控机制的理解,并丰富嗜热真菌的代谢多样性和碳代谢的分子调控的知识。

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