Brown Neil Andrew, Dos Reis Thaila Fernanda, Goinski Amanda Beatriz, Savoldi Marcela, Menino Joao, Almeida Maria Teresa, Rodrigues Fernando, Goldman Gustavo Henrique
Faculdade de Ciências Farmacêuticas de Ribeirão Preto, Universidade de São Paulo, São Paulo, Brazil.
Mol Microbiol. 2014 Oct 8. doi: 10.1111/mmi.12820.
In the heterogeneous semi-solid environment naturally occupied by lignocellulolytic fungi the majority of nutrients are locked away as insoluble plant biomass. Hence, lignocellulolytic fungi must actively search for, and attach to, a desirable source of nutrients. During growth on lignocellulose a period of carbon deprivation provokes carbon catabolite derepression and scavenging hydrolase secretion. Subsequently, starvation and/or contact sensing was hypothesized to play a role in lignocellulose attachment and degradation. In Aspergillus nidulans the extracellular signalling mucin, MsbA, influences growth under nutrient-poor conditions including lignocellulose. Cellulase secretion and activity was affected by MsbA via a mechanism that was independent of cellulase transcription. MsbA modulated both the cell wall integrity and filamentous growth MAPK pathways influencing adhesion, biofilm formation and secretion. The constitutive activation of MsbA subsequently enhanced cellulase activity by increasing the secretion of the cellobiohydrolase, CbhA, while improved substrate attachment and may contribute to an enhanced starvation response. Starvation and/or contact sensing therefore represents a new dimension to the already multifaceted regulation of cellulase activity.
在木质纤维素分解真菌自然占据的异质半固体环境中,大多数营养物质都以不溶性植物生物质的形式被封存起来。因此,木质纤维素分解真菌必须积极寻找并附着到理想的营养源上。在木质纤维素上生长期间,一段碳剥夺期会引发碳分解代谢物阻遏解除和清除水解酶的分泌。随后,饥饿和/或接触感应被认为在木质纤维素的附着和降解中起作用。在构巢曲霉中,细胞外信号黏蛋白MsbA会影响包括木质纤维素在内的营养匮乏条件下的生长。MsbA通过一种独立于纤维素酶转录的机制影响纤维素酶的分泌和活性。MsbA调节细胞壁完整性和丝状生长的丝裂原活化蛋白激酶途径,影响黏附、生物膜形成和分泌。MsbA的组成型激活随后通过增加纤维二糖水解酶CbhA的分泌来增强纤维素酶活性,同时改善底物附着,并可能有助于增强饥饿反应。因此,饥饿和/或接触感应代表了纤维素酶活性本已多方面调控的一个新维度。