Department of Structural Biology, Faculty of Advanced Life Science, Hokkaido University, Sapporo, Japan.
Nat Struct Mol Biol. 2012 Dec;19(12):1250-6. doi: 10.1038/nsmb.2451. Epub 2012 Nov 11.
Autophagy requires ubiquitin-like Atg8 and Atg12 conjugation systems, where Atg7 has a critical role as the sole E1 enzyme. Although Atg7 recognizes two distinct E2s, Atg3 and Atg10, it is not understood how Atg7 correctly loads these E2s with their cognate ubiquitin-like proteins, Atg8 and Atg12. Here, we report the crystal structures of the N-terminal domain of Atg7 bound to Atg10 or Atg3 of thermotolerant yeast and plant homologs. The observed Atg7-Atg10 and Atg7-Atg3 interactions, which resemble each other but are quite distinct from the canonical E1-E2 interaction, makes Atg7 suitable for transferring Atg12 to Atg10 and Atg8 to Atg3 by a trans mechanism. Notably, in vitro experiments showed that Atg7 loads Atg3 and Atg10 with Atg8 and Atg12 in a nonspecific manner, which suggests that cognate conjugate formation in vivo is not an intrinsic quality of Atg7.
自噬需要泛素样 Atg8 和 Atg12 缀合系统,其中 Atg7 作为唯一的 E1 酶具有关键作用。尽管 Atg7 识别两种不同的 E2,即 Atg3 和 Atg10,但尚不清楚 Atg7 如何正确地将这些 E2 与它们的同源泛素样蛋白 Atg8 和 Atg12 加载。在这里,我们报告了热稳定酵母和植物同源物的 Atg7 结合到 Atg10 或 Atg3 的 N 端结构域的晶体结构。观察到的 Atg7-Atg10 和 Atg7-Atg3 相互作用彼此相似,但与经典的 E1-E2 相互作用有很大不同,这使得 Atg7 适合通过转机制将 Atg12 转移到 Atg10 和将 Atg8 转移到 Atg3。值得注意的是,体外实验表明 Atg7 以非特异性方式将 Atg3 和 Atg10 与 Atg8 和 Atg12 加载,这表明体内同源缀合物的形成不是 Atg7 的内在特性。