The Research Institute for Children, New Orleans, Louisiana, USA.
Med Mycol. 2011 Jul;49(5):449-57. doi: 10.3109/13693786.2011.553246. Epub 2011 Jan 24.
Intracellular transport is an essential biological process that is highly conserved throughout the eukaryotic organisms. In fungi, adaptor proteins implicated in the endocytic cycle of endocytosis and exocytosis were found to be important for growth, differentiation, and/or virulence. For example, Saccharomyces cerevisiae Pan1 is an endocytic protein that regulates membrane trafficking, the actin cytoskeleton, and signaling. In Cryptococcus neoformans, a multi-modular endocytic protein, Cin1, was recently found to have pleiotropic functions in morphogenesis, endocytosis, exocytosis, and virulence. Interestingly, Cin1 is homologous to human intersectin ITSN1, but homologs of Cin1/ITSN1 were not found in ascomycetous S. cerevisiae and Candida albicans, or zygomycetous fungi. Moreover, an Eps15 protein homologous to S. cerevisiae Pan1/Ede1 and additional relevant protein homologs were identified in C. neoformans, suggesting the existence of either a distinct endocytic pathway mediated by Cin1 or pathways by either Cin1 or/and Pan1/Ede1 homologs. Whether and how the Cin1-mediated endocytic pathway represents a unique role in pathogenesis or reflects a redundancy of a transport apparatus remains an open and challenging question. This review discusses recent findings of endocytic adaptor proteins from pathogenic fungi and provides a perspective for novel endocytic machinery operating in C. neoformans. An understanding of intracellular trafficking mechanisms as they relate to pathogenesis will likely reveal the identity of novel antifungal targets.
细胞内运输是一种至关重要的生物学过程,在真核生物中高度保守。在真菌中,参与内吞和胞吐循环的衔接蛋白被发现对生长、分化和/或毒力很重要。例如,酿酒酵母 Pan1 是一种内吞蛋白,调节膜运输、肌动蛋白细胞骨架和信号转导。在新型隐球菌中,最近发现一种多模块内吞蛋白 Cin1 在形态发生、内吞作用、胞吐作用和毒力方面具有多效性功能。有趣的是,Cin1 与人类 intersectin ITSN1 同源,但在子囊菌酿酒酵母和白色念珠菌或接合菌中没有发现 Cin1/ITSN1 的同源物。此外,在新型隐球菌中鉴定出与酿酒酵母 Pan1/Ede1 同源的 Eps15 蛋白和其他相关蛋白同源物,表明存在由 Cin1 介导的独特内吞途径或由 Cin1 或/和 Pan1/Ede1 同源物介导的途径。Cin1 介导的内吞途径是否以及如何在发病机制中代表独特的作用,或者是否反映了运输装置的冗余,仍然是一个悬而未决和具有挑战性的问题。本综述讨论了来自致病性真菌的内吞衔接蛋白的最新发现,并为新型隐球菌中存在的内吞机制提供了一个视角。对与发病机制相关的细胞内运输机制的理解可能会揭示新型抗真菌靶标的身份。