Department of Biotechnology, The University of Tokyo, Bunkyo-ku, Tokyo, Japan.
FEMS Microbiol Lett. 2011 Mar;316(1):61-9. doi: 10.1111/j.1574-6968.2010.02192.x. Epub 2011 Jan 17.
Autophagy is a degradation system in which cellular components are digested via vacuoles/lysosomes, and involved in differentiation in addition to helping cells to survive starvation. The autophagic process is composed of several steps: induction of autophagy, formation of autophagosomes, transportation to vacuoles, and degradation of autophagic bodies. To further understand autophagy in the filamentous fungus Aspergillus oryzae, we first constructed A. oryzae mutants defective for the Aoatg13, Aoatg4, and Aoatg15 genes and examined the resulting phenotypes. The ΔAoatg13 mutant developed conidiophores and conidia, although the number of conidia was decreased compared with the wild-type strain, while conidiation in the ΔAoatg4 and ΔAoatg15 mutants was not detected. The ΔAoatg15 mutants displayed a marked reduction of development of aerial hyphae. Moreover, autophagy in these mutants was examined by observation of the behavior of enhanced green fluorescent protein (EGFP)-AoAtg8. In the ΔAoatg13 mutant, the slight accumulation of EGFP-AoAtg8 in vacuoles, preautophagosomal structures (PAS), and autophagosomes was observed, whereas only PAS-like structures were detected in the ΔAoatg4 mutant. In the ΔAoatg15 mutant, autophagic bodies accumulated in vacuoles, suggesting that the uptake process proceeded. We therefore propose that the level of autophagy is closely correlated with the degree of differentiation in A. oryzae.
自噬是一种降解系统,通过液泡/溶酶体消化细胞成分,除了帮助细胞在饥饿时存活外,还参与分化。自噬过程由几个步骤组成:自噬的诱导、自噬体的形成、向液泡的运输和自噬体的降解。为了进一步了解丝状真菌米曲霉中的自噬,我们首先构建了 Aoatg13、Aoatg4 和 Aoatg15 基因缺陷的 A. oryzae 突变体,并检查了由此产生的表型。与野生型菌株相比,ΔAoatg13 突变体虽然产生的分生孢子数量减少,但仍能发育出分生孢子梗和分生孢子,而 ΔAoatg4 和 ΔAoatg15 突变体中则未检测到分生孢子的形成。ΔAoatg15 突变体中空气菌丝的发育明显减少。此外,通过观察增强型绿色荧光蛋白 (EGFP)-AoAtg8 的行为来检查这些突变体中的自噬。在 ΔAoatg13 突变体中,观察到 EGFP-AoAtg8 在液泡、前自噬体结构 (PAS) 和自噬体中的轻微积累,而在 ΔAoatg4 突变体中仅检测到 PAS 样结构。在 ΔAoatg15 突变体中,自噬体在液泡中积累,表明摄取过程仍在进行。因此,我们提出自噬水平与米曲霉分化程度密切相关。