Gu Shuying, Zhao Zhen, Xue Fanglei, Liu Defei, Liu Qian, Li Jingen, Tian Chaoguang
Key Laboratory of Engineering Biology for Low-carbon Manufacturing, Tianjin Institute of Industrial Biotechnology, Chinese Academy of Sciences, Tianjin, 300308, China.
National Technology Innovation Center of Synthetic Biology, Tianjin, 300308, China.
Biotechnol Biofuels Bioprod. 2023 Mar 25;16(1):51. doi: 10.1186/s13068-023-02305-3.
Filamentous fungi possess an array of secreted enzymes to depolymerize the structural polysaccharide components of plant biomass. Sugar transporters play an essential role in nutrient uptake and sensing of extracellular signal molecules to inhibit or trigger the induction of lignocellulolytic enzymes. However, the identities and functions of transceptors associated with the induction of hemicellulase genes remain elusive.
In this study, we reveal that the L-arabinose transporter MtLat-1 is associated with repression of hemicellulase gene expression in the filamentous fungus Myceliophthora thermophila. The absence of Mtlat-1 caused a decrease in L-arabinose uptake and consumption rates. However, mycelium growth, protein production, and hemicellulolytic activities were markedly increased in a ΔMtlat-1 mutant compared with the wild-type (WT) when grown on arabinan. Comparative transcriptomic analysis showed a different expression profile in the ΔMtlat-1 strain from that in the WT in response to arabinan, and demonstrated that MtLat-1 was involved in the repression of the main hemicellulase-encoding genes. A point mutation that abolished the L-arabinose transport activity of MtLat-1 did not impact the repression of hemicellulase gene expression when the mutant protein was expressed in the ΔMtlat-1 strain. Thus, the involvement of MtLat-1 in the expression of hemicellulase genes is independent of its transport activity. The data suggested that MtLat-1 is a transceptor that senses and transduces the molecular signal, resulting in downstream repression of hemicellulolytic gene expression. MtAra-1 protein directly regulated the expression of Mtlat-1 by binding to its promoter region. Transcriptomic profiling indicated that the transcription factor MtAra-1 also plays an important role in expression of arabinanolytic enzyme genes and L-arabinose catabolism.
M. thermophila MtLat-1 functions as a transceptor that is involved in L-arabinose transport and signal transduction associated with suppression of the expression of hemicellulolytic enzyme-encoding genes. The data presented in this study add to the models of the regulation of hemicellulases in filamentous fungi.
丝状真菌拥有一系列分泌酶,可使植物生物质的结构多糖成分解聚。糖转运蛋白在营养物质摄取以及感知细胞外信号分子以抑制或触发木质纤维素酶的诱导过程中发挥着重要作用。然而,与半纤维素酶基因诱导相关的转导受体的身份和功能仍不清楚。
在本研究中,我们揭示了L-阿拉伯糖转运蛋白MtLat-1与丝状真菌嗜热毁丝霉中半纤维素酶基因表达的抑制有关。Mtlat-1的缺失导致L-阿拉伯糖摄取和消耗速率降低。然而,与野生型(WT)相比,在阿拉伯聚糖上生长时,ΔMtlat-1突变体的菌丝体生长、蛋白质产生和半纤维素分解活性显著增加。比较转录组分析表明,ΔMtlat-1菌株与WT菌株在对阿拉伯聚糖的反应中具有不同的表达谱,并证明MtLat-1参与了主要半纤维素酶编码基因的抑制。当突变蛋白在ΔMtlat-1菌株中表达时,消除MtLat-1的L-阿拉伯糖转运活性的点突变不会影响半纤维素酶基因表达的抑制。因此,MtLat-1参与半纤维素酶基因的表达与其转运活性无关。数据表明,MtLat-1是一种转导受体,可感知并转导分子信号,导致半纤维素分解基因表达的下游抑制。MtAra-1蛋白通过结合其启动子区域直接调节Mtlat-1的表达。转录组分析表明,转录因子MtAra-1在阿拉伯聚糖分解酶基因的表达和L-阿拉伯糖分解代谢中也起着重要作用。
嗜热毁丝霉MtLat-1作为一种转导受体,参与L-阿拉伯糖转运和与抑制半纤维素分解酶编码基因表达相关的信号转导。本研究提供的数据补充了丝状真菌中半纤维素酶调控模型。