National Institute of Biological Sciences, Beijing, China.
Institute of Microbial Chemistry, Tokyo, Japan.
Elife. 2018 Nov 19;7:e41237. doi: 10.7554/eLife.41237.
The ubiquitin-like protein Atg8, in its lipidated form, plays central roles in autophagy. Yet, remarkably, Atg8 also carries out lipidation-independent functions in non-autophagic processes. How Atg8 performs its moonlighting roles is unclear. Here we report that in the fission yeast and the budding yeast , the lipidation-independent roles of Atg8 in maintaining normal morphology and functions of the vacuole require its interaction with a vacuole membrane protein Hfl1 (homolog of human TMEM184 proteins). Crystal structures revealed that the Atg8-Hfl1 interaction is not mediated by the typical Atg8-family-interacting motif (AIM) that forms an intermolecular β-sheet with Atg8. Instead, the Atg8-binding regions in Hfl1 proteins adopt a helical conformation, thus representing a new type of AIMs (termed helical AIMs here). These results deepen our understanding of both the functional versatility of Atg8 and the mechanistic diversity of Atg8 binding.
类泛素蛋白 Atg8 以其脂化形式在自噬中发挥核心作用。然而,令人惊讶的是,Atg8 在非自噬过程中也具有非脂化依赖性功能。Atg8 如何执行其兼职功能尚不清楚。在这里,我们报告称,在裂殖酵母和 budding 酵母中,Atg8 在维持液泡正常形态和功能方面的非脂化依赖性作用需要其与液泡膜蛋白 Hfl1(人类 TMEM184 蛋白的同源物)相互作用。晶体结构揭示了 Atg8-Hfl1 相互作用不是由形成与 Atg8 分子间 β 片层的典型 Atg8 家族相互作用基序 (AIM) 介导的。相反,Hfl1 蛋白中的 Atg8 结合区采用螺旋构象,因此代表了一种新型的 AIM(在此称为螺旋 AIM)。这些结果加深了我们对 Atg8 的功能多样性和 Atg8 结合的机制多样性的理解。