首页> 美国卫生研究院文献>PLoS Clinical Trials >Evidence of a Critical Role for Cellodextrin Transporte 2 (CDT-2) in Both Cellulose and Hemicellulose Degradation and Utilization in Neurospora crassa
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Evidence of a Critical Role for Cellodextrin Transporte 2 (CDT-2) in Both Cellulose and Hemicellulose Degradation and Utilization in Neurospora crassa

机译:在纤维和半纤维素降解和利用神经孢菌中纤维糊精转运蛋白2(CDT-2)的关键作用的证据。

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摘要

CDT-1 and CDT-2 are two cellodextrin transporters discovered in the filamentous fungus Neurospora crassa. Previous studies focused on characterizing the role of these transporters in only a few conditions, including cellulose degradation, and the function of these two transporters is not yet completely understood. In this study, we show that deletion of cdt-2, but not cdt-1, results in growth defects not only on Avicel but also on xylan. cdt-2 can be highly induced by xylan, and this mutant has a xylodextrin consumption defect. Transcriptomic analysis of the cdt-2 deletion strain on Avicel and xylan showed that major cellulase and hemicellulase genes were significantly down-regulated in the cdt-2 deletion strain and artificial over expression of cdt-2 in N. crassa increased cellulase and hemicellulase production. Together, these data clearly show that CDT-2 plays a critical role in hemicellulose sensing and utilization. This is the first time a sugar transporter has been assigned a function in the hemicellulose degradation pathway. Furthermore, we found that the transcription factor XLR-1 is the major regulator of cdt-2, while cdt-1 is primarily regulated by CLR-1. These results deepen our understanding of the functions of both cellodextrin transporters, particularly for CDT-2. Our study also provides novel insight into the mechanisms for hemicellulose sensing and utilization in N. crassa, and may be applicable to other cellulolytic filamentous fungi.
机译:CDT-1和CDT-2是丝状真菌Neurospora crassa中发现的两种纤维糊精转运蛋白。先前的研究集中于表征这些转运蛋白仅在少数条件下的作用,包括纤维素降解,而这两种转运蛋白的功能尚不完全清楚。在这项研究中,我们表明删除cdt-2而不是cdt-1不仅导致Avicel的生长缺陷,而且导致木聚糖的生长缺陷。木聚糖可以高度诱导cdt-2,该突变体具有木糖糊精消耗缺陷。对Avicel和木聚糖上cdt-2缺失菌株的转录组学分析表明,在cdt-2缺失菌株中主要的纤维素酶和半纤维素酶基因显着下调,人为地在Cr。N. assa中cdt-2过度表达增加了纤维素酶和半纤维素酶的产量。总之,这些数据清楚地表明CDT-2在半纤维素感测和利用中起着关键作用。这是糖转运蛋白首次在半纤维素降解途径中被赋予功能。此外,我们发现转录因子XLR-1是cdt-2的主要调控因子,而cdt-1主要受CLR-1调控。这些结果加深了我们对两种纤维糊精转运蛋白功能的理解,特别是对于CDT-2。我们的研究还提供了新的洞察力,在克雷萨斯中半纤维素感测和利用的机制,并可能适用于其他纤维素分解丝状真菌。

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