MRC Laboratory of Molecular Biology, Francis Crick Avenue, Cambridge, United Kingdom.
Babraham Institute, Cambridge, United Kingdom.
Elife. 2020 Jun 30;9:e58281. doi: 10.7554/eLife.58281.
The lipid kinase VPS34 orchestrates diverse processes, including autophagy, endocytic sorting, phagocytosis, anabolic responses and cell division. VPS34 forms various complexes that help adapt it to specific pathways, with complexes I and II being the most prominent ones. We found that physicochemical properties of membranes strongly modulate VPS34 activity. Greater unsaturation of both substrate and non-substrate lipids, negative charge and curvature activate VPS34 complexes, adapting them to their cellular compartments. Hydrogen/deuterium exchange mass spectrometry (HDX-MS) of complexes I and II on membranes elucidated structural determinants that enable them to bind membranes. Among these are the Barkor/ATG14L autophagosome targeting sequence (BATS), which makes autophagy-specific complex I more active than the endocytic complex II, and the Beclin1 BARA domain. Interestingly, even though Beclin1 BARA is common to both complexes, its membrane-interacting loops are critical for complex II, but have only a minor role for complex I.
脂质激酶 VPS34 协调多种过程,包括自噬、内吞分选、吞噬作用、合成代谢反应和细胞分裂。VPS34 形成各种复合物,帮助其适应特定途径,其中复合物 I 和 II 最为突出。我们发现,膜的物理化学性质强烈调节 VPS34 的活性。底物和非底物脂质的不饱和程度、负电荷和曲率增加会激活 VPS34 复合物,使它们适应其细胞区室。复合物 I 和 II 在膜上的氢/氘交换质谱(HDX-MS)阐明了使它们能够结合膜的结构决定因素。其中包括 Barkor/ATG14L 自噬体靶向序列(BATS),它使自噬特异性复合物 I 比内吞复合物 II 更活跃,以及 Beclin1 BARA 结构域。有趣的是,尽管 Beclin1 BARA 是两个复合物共有的,但它的膜相互作用环对于复合物 II 至关重要,但对于复合物 I 只有次要作用。