Hirai Hidenori, Yasui Norihisa, Yamashita Keitaro, Tabata Sanae, Yamamoto Masaki, Takagi Junichi, Nogi Terukazu
Institute for Protein Research, Osaka University, Osaka, Japan.
Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University, Okayama, Japan.
EMBO Rep. 2017 Jun;18(6):982-999. doi: 10.15252/embr.201643521. Epub 2017 Apr 26.
Apolipoprotein E receptor 2 (ApoER2) is a close homologue of low-density lipoprotein receptor (LDLR) that mediates the endocytosis of ligands, including LDL particles. LDLR family members have been presumed to explore a large conformational space to capture ligands in the extended conformation at the cell surface. Ligands are subsequently released through a pH-titrated structural transition to a self-docked, contracted-closed conformation. In addition to lipoprotein uptake, ApoER2 is implicated in signal transduction during brain development through capture of the extracellular protein reelin. From crystallographic analysis, we determine that the full-length ApoER2 ectodomain adopts an intermediate contracted-open conformation when complexed with the signaling-competent reelin fragment, and we identify a previously unappreciated auxiliary low-affinity binding interface. Based on mutational analyses, we propose that the pH shift during endocytosis weakens the affinity of the auxiliary interface and destabilizes the ligand-receptor complex. Furthermore, this study elucidates that the contracted-open conformation of ligand-bound ApoER2 at neutral pH resembles the contracted-closed conformation of ligand-unbound LDLR at acidic pH in a manner suggestive of being primed for ligand release even prior to internalization.
载脂蛋白E受体2(ApoER2)是低密度脂蛋白受体(LDLR)的紧密同源物,可介导包括LDL颗粒在内的配体的内吞作用。LDLR家族成员被认为会探索一个大的构象空间,以在细胞表面捕获处于伸展构象的配体。随后,配体通过pH滴定的结构转变释放,转变为自对接的收缩闭合构象。除了脂蛋白摄取外,ApoER2还通过捕获细胞外蛋白reelin参与大脑发育过程中的信号转导。通过晶体学分析,我们确定全长ApoER2胞外域与具有信号传导能力的reelin片段复合时采用中间收缩开放构象,并且我们鉴定出一个以前未被认识的辅助低亲和力结合界面。基于突变分析,我们提出内吞过程中的pH变化会削弱辅助界面的亲和力并使配体-受体复合物不稳定。此外,这项研究阐明,在中性pH下,与配体结合的ApoER2的收缩开放构象类似于在酸性pH下未与配体结合的LDLR的收缩闭合构象,这表明甚至在内化之前就已准备好释放配体。