Schmoll Monika
AIT Austrian Institute of Technology, Department of Health and Environment, Bioresources, Konrad Lorenz Strasse 24, 3430 Tulln, Austria.
Fungal Biol. 2018 Jun;122(6):479-486. doi: 10.1016/j.funbio.2017.10.007. Epub 2017 Oct 26.
Trichoderma reesei represents one of the most prolific producers of homologous and heterologous proteins. Discovery of the photoreceptor ENV1 as a regulator of cellulase gene expression initiated analysis of light response pathways and their physiological relevance for T. reesei. The function of ENV1 in regulation of plant cell wall degrading enzymes is conserved in Neurospora crassa. ENV1 emerged as a central checkpoint for integration of nutrient sensing, light response and development. This photoreceptor exerts its function by influencing transcript abundance and feedback cycles of the alpha subunits of the heterotrimeric G-protein pathway and impacts regulation of the beta and gamma subunits via mutual regulation with the phosducin PhLP1. The output of regulation by ENV1 is in part mediated by the cAMP pathway and likely aimed at cellulose recognition. Lack of ENV1 causes deregulation of the pheromone system and female sterility in light. A regulatory interconnection with VEL1 and influence on other regulators of secondary metabolism like YPR2 as well as polyketide synthase encoding genes indicates a function in secondary metabolism. The function of ENV1 in integrating light response with signaling of osmotic and oxidative stress is evolutionary conserved in Hypocreales and distinct from other sordariomycetes including N. crassa.
里氏木霉是同源和异源蛋白质产量最高的生产者之一。光感受器ENV1作为纤维素酶基因表达的调节因子的发现,开启了对里氏木霉光反应途径及其生理相关性的分析。ENV1在调节植物细胞壁降解酶方面的功能在粗糙脉孢菌中是保守的。ENV1成为营养感知、光反应和发育整合的中心检查点。这种光感受器通过影响异源三聚体G蛋白途径α亚基的转录丰度和反馈循环来发挥其功能,并通过与磷光蛋白PhLP1的相互调节影响β和γ亚基的调节。ENV1调节的输出部分由cAMP途径介导,可能旨在识别纤维素。缺乏ENV1会导致信息素系统失调和光照下的雌性不育。与VEL1的调节相互联系以及对其他次生代谢调节因子(如YPR2)和聚酮合酶编码基因的影响表明其在次生代谢中的功能。ENV1在将光反应与渗透和氧化应激信号整合方面的功能在肉座菌目中是进化保守的,并且与包括粗糙脉孢菌在内的其他粪壳菌纲不同。