Conesa A, Punt P J, van Luijk N, van den Hondel C A
Department of Applied Microbiology and Gene Technology, TNO Nutrition and Food Research, Zeist, 3700 AJ, The Netherlands.
Fungal Genet Biol. 2001 Aug;33(3):155-71. doi: 10.1006/fgbi.2001.1276.
The high capacity of the secretion machinery of filamentous fungi has been widely exploited for the production of homologous and heterologous proteins; however, our knowledge of the fungal secretion pathway is still at an early stage. Most of the knowledge comes from models developed in yeast and higher eukaryotes, which have served as reference for the studies on fungal species. In this review we compile the data accumulated in recent years on the molecular basis of fungal secretion, emphasizing the relevance of these data for the biotechnological use of the fungal cell and indicating how this information has been applied in attempts to create improved production strains. We also present recent emerging approaches that promise to provide answers to fundamental questions on the molecular genetics of the fungal secretory pathway.
丝状真菌分泌机制的高容量已被广泛用于同源和异源蛋白质的生产;然而,我们对真菌分泌途径的了解仍处于早期阶段。大部分知识来自于在酵母和高等真核生物中建立的模型,这些模型为真菌物种的研究提供了参考。在这篇综述中,我们汇总了近年来积累的关于真菌分泌分子基础的数据,强调这些数据对于真菌细胞生物技术应用的相关性,并指出这些信息是如何应用于创建改良生产菌株的尝试中的。我们还介绍了最近出现的一些方法,这些方法有望为真菌分泌途径分子遗传学的基本问题提供答案。