Almagor Lior, Weis William I
Department of Structural Biology, Stanford University School of Medicine, Stanford, CA, USA.
Department of Molecular & Cellular Physiology, Stanford University School of Medicine, Stanford, CA, USA.
Commun Biol. 2025 Jul 1;8(1):967. doi: 10.1038/s42003-025-08401-4.
Polarity along an apical-basal axis is essential for epithelial cell shape and function. The atypical protein Kinase-C (aPKC) and its regulatory partner Par6 form a complex that is essential for polarization, a primary function of which is to phosphorylate the Lethal giant larvae (Lgl) protein to prevent it from binding to the apical membrane (thereby facilitating its basolateral localization). Par6 binds Lgl directly and is essential for this process, but its mechanism was obscure. Here, we utilize cryo-EM and various biochemical techniques to characterize the interaction of Lgl2 with the aPKCι/Par6 complex and to study the roles of Par6 in promoting Lgl2 phosphorylation. We find that Par6 proteins stabilize a ternary Lgl2/aPKCι/Par6 complex that involves a unique multi-surface interaction of Lgl2 with both aPKCι and Par6. Importantly, we find Par6b induces processive phosphorylation that results in a multi-phosphorylated Lgl2 after a single interaction with the aPKCι/Par6b complex. This is enabled by a Par6b/Lgl2 interaction that maintains contact of Lgl2 with the kinase throughout its distinct nucleotide-binding states. Our results reveal the mechanistic basis for the efficient regulation of Lgl's membrane binding by aPKC/Par6 and provide invaluable structural data for further understanding the mechanisms of this polarity complex.
沿顶-基轴的极性对于上皮细胞的形态和功能至关重要。非典型蛋白激酶C(aPKC)及其调节伴侣Par6形成一个对极化至关重要的复合物,其主要功能之一是磷酸化致死巨幼虫(Lgl)蛋白,以防止它与顶端膜结合(从而促进其在基底外侧的定位)。Par6直接结合Lgl,并且对这个过程至关重要,但其机制尚不清楚。在这里,我们利用冷冻电镜和各种生化技术来表征Lgl2与aPKCι/Par6复合物的相互作用,并研究Par6在促进Lgl2磷酸化中的作用。我们发现Par6蛋白稳定了一个三元Lgl2/aPKCι/Par6复合物,该复合物涉及Lgl2与aPKCι和Par6的独特多表面相互作用。重要的是,我们发现Par6b诱导持续性磷酸化,在与aPKCι/Par6b复合物单次相互作用后产生多磷酸化的Lgl2。这是通过Par6b/Lgl2相互作用实现的,该相互作用在Lgl2不同的核苷酸结合状态下维持其与激酶的接触。我们的结果揭示了aPKC/Par6对Lgl膜结合进行有效调控的机制基础,并为进一步理解这种极性复合物的机制提供了宝贵的结构数据。