Department of Molecular Medicine, Cornell University, New York, United States.
Department of Cellular and Molecular Medicine, School of Medicine, University of California, San Diego, La Jolla, United States.
Elife. 2019 Aug 29;8:e50003. doi: 10.7554/eLife.50003.
Endocytosis of transmembrane proteins is orchestrated by the AP2 clathrin adaptor complex. AP2 dwells in a closed, inactive state in the cytosol, but adopts an open, active conformation on the plasma membrane. Membrane-activated complexes are also phosphorylated, but the significance of this mark is debated. We recently proposed that NECAP negatively regulates AP2 by binding open and phosphorylated complexes (Beacham et al., 2018). Here, we report high-resolution cryo-EM structures of NECAP bound to phosphorylated AP2. The site of AP2 phosphorylation is directly coordinated by residues of the NECAP PHear domain that are predicted from genetic screens in . Using membrane mimetics to generate conformationally open AP2, we find that a second domain of NECAP binds these complexes and cryo-EM reveals both domains of NECAP engaging closed, inactive AP2. Assays in vitro and in vivo confirm these domains cooperate to inactivate AP2. We propose that phosphorylation marks adaptors for inactivation.
网格蛋白衔接蛋白复合物 AP2 协调跨膜蛋白的内吞作用。AP2 在细胞质中处于关闭、无活性的状态,但在质膜上采用开放、有活性的构象。膜激活复合物也会发生磷酸化,但这种标记的意义仍存在争议。我们最近提出,NECAP 通过结合开放和磷酸化的复合物来负调控 AP2(Beacham 等人,2018 年)。在这里,我们报告了与磷酸化 AP2 结合的 NECAP 的高分辨率冷冻电镜结构。AP2 磷酸化的位点直接由 NECAP PHear 结构域的残基协调,这些残基是从 中的遗传筛选中预测出来的。使用膜类似物生成构象开放的 AP2,我们发现 NECAP 的第二个结构域结合这些复合物,冷冻电镜显示 NECAP 的两个结构域都与封闭、无活性的 AP2 结合。体外和体内测定证实这两个结构域协同使 AP2 失活。我们提出,磷酸化标记使衔接蛋白适应失活。