Simonsen Anne, Cumming Robert C, Finley Kim D
Cellular Neurobiology Laboratory, The Salk Institute for Biological Studies, La Jolla, California 92037, USA.
Autophagy. 2007 Sep-Oct;3(5):499-501. doi: 10.4161/auto.4604. Epub 2007 Jun 20.
Defects in pathways that direct cellular components to the lysosome for degradation are often linked with a decrease in viability and with progressive disorders. Previously we had shown that blue cheese (bchs: Drosophila homologue of human Alfy) mutations lead to reduced longevity and the accumulation of ubiquitinated neural aggregates. A genetic modifier screen based on overexpression of Bchs in the eye was used to identify several potential genetic interactions, which included autophagic and endocytic trafficking genes as well as cytoskeletal and motor proteins and members of the SUMO and ubiquitin signaling pathways. We found that mutations in several of the genes identified in the screen also result in bchs-like phenotypes, including a reduction in adult lifespan and changes in ubiquitinated protein profiles. In addition, we show here that Bchs modifiers belonging to the autophagic and trans-Golgi trafficking pathways also display defects in adult starvation response. Our data further support a role for Bchs/Alfy in the autophagic pathway and strongly indicate that autophagy plays an important role in aging and stress response.
将细胞成分导向溶酶体进行降解的途径中的缺陷通常与活力下降和进行性疾病有关。此前我们已表明,蓝纹奶酪基因(bchs:人类Alfy的果蝇同源物)突变会导致寿命缩短以及泛素化神经聚集体的积累。基于在眼睛中过表达Bchs进行的遗传修饰筛选,用于鉴定几种潜在的遗传相互作用,其中包括自噬和内吞运输基因、细胞骨架和运动蛋白以及SUMO和泛素信号通路的成员。我们发现,在筛选中鉴定出的几个基因的突变也会导致类似bchs的表型,包括成年寿命缩短和泛素化蛋白质谱的变化。此外,我们在此表明,属于自噬和反式高尔基体运输途径的Bchs修饰因子在成年饥饿反应中也表现出缺陷。我们的数据进一步支持了Bchs/Alfy在自噬途径中的作用,并有力地表明自噬在衰老和应激反应中起重要作用。