Autophagy. 2013 Dec;9(12):1965-74. doi: 10.4161/auto.26095.
The presence of multiple homologs of the same yeast ATG genes endows an extra layer of complexity on the autophagic machinery in higher eukaryotes. The physiological function of individual homologs in the autophagy pathway remains poorly understood. Here we characterized the function of the two atg16 homologs, atg-16.1 and atg-16.2, in the autophagy pathway in C. elegans. We showed that atg-16.2 mutants exhibit a stronger autophagic defect than atg-16.1 mutants. atg-16.2; atg-16.1 double mutants display a much more severe defect than either single mutant. ATG-16.1 and ATG-16.2 interact with themselves and each other and also directly associate with ATG-5. atg-16.1 mutant embryos exhibit a wild-type expression and distribution pattern of LGG-1/Atg8, while LGG-1 puncta are markedly fewer in number and weaker in intensity in atg-16.2 mutants. In atg-16.2; atg-16.1 double mutants, the lipidated form of LGG-1 accumulates, but LGG-1 puncta are completely absent. ATG-16.2 ectopically expressed on the plasma membrane provides novel sites of LGG-1 puncta formation. We also demonstrated that the C-terminal WD repeats are dispensable for the role of atg-16.2 in aggrephagy (the degradation of protein aggregates by autophagy). Genetic epistasis analysis placed atg-16.2 upstream of atg-2, epg-6, and atg-18. Our study indicated that C. elegans ATG-16s are involved in specifying LGG-1 puncta formation and the two ATG-16 homologs have partially redundant yet distinct functions in the aggrephagy pathway.
酵母 ATG 基因的多个同源物的存在为真核生物中的自噬机制赋予了额外的复杂性。自噬途径中单个同源物的生理功能仍知之甚少。在这里,我们描述了线虫自噬途径中两个 atg16 同源物,atg-16.1 和 atg-16.2 的功能。我们发现 atg-16.2 突变体表现出比 atg-16.1 突变体更强的自噬缺陷。atg-16.2; atg-16.1 双突变体比任一单突变体显示出更严重的缺陷。ATG-16.1 和 ATG-16.2 相互作用,也与 ATG-5 直接结合。atg-16.1 突变体胚胎表现出 LGG-1/Atg8 的野生型表达和分布模式,而在 atg-16.2 突变体中 LGG-1 斑点的数量明显减少且强度较弱。在 atg-16.2; atg-16.1 双突变体中,LGG-1 的脂化形式积累,但 LGG-1 斑点完全不存在。在质膜上异位表达的 ATG-16.2 提供了 LGG-1 斑点形成的新位点。我们还证明了 C 端 WD 重复对于 atg-16.2 在聚集体吞噬(通过自噬降解蛋白质聚集体)中的作用是可有可无的。遗传上位性分析将 atg-16.2 置于 atg-2、epg-6 和 atg-18 之前。我们的研究表明,秀丽隐杆线虫 ATG-16 参与指定 LGG-1 斑点的形成,并且这两个 ATG-16 同源物在聚集体吞噬途径中具有部分冗余但又有区别的功能。