Unit for Cardiac and Cardiovascular Genetics, Department of Medical Genetics, Oslo University Hospital Rikshospitalet, Oslo, Norway.
Hum Mol Genet. 2012 Mar 15;21(6):1402-9. doi: 10.1093/hmg/ddr578. Epub 2011 Dec 8.
Proprotein convertase subtilisin/kexin type 9 (PCSK9) binds to the epidermal growth factor homology domain repeat A of the low-density lipoprotein receptor (LDLR) at the cell surface and disrupts recycling of the internalized LDLR. As a consequence, the LDLR is rerouted to the lysosomes for degradation. Although PCSK9 may bind to an LDLR lacking the ligand-binding domain, at least three ligand-binding repeats of the ligand-binding domain are required for PCSK9 to reroute the LDLR to the lysosomes. In this study, we have studied the binding of PCSK9 to an LDLR with or without the ligand-binding domain at increasingly acidic conditions in order to mimic the milieu of the LDLR:PCSK9 complex as it translocates from the cell membrane to the sorting endosomes. These studies have shown that PCSK9 is rapidly released from an LDLR lacking the ligand-binding domain at pH in the range of 6.9-6.1. A similar pattern of release at acidic pH was also observed for the binding to the normal LDLR of mutant PCSK9 lacking the C-terminal domain. Together these data indicate that an interaction between the negatively charged ligand-binding domain of the LDLR and the positively charged C-terminal domain of PCSK9 is required for PCSK9 to remain bound to the LDLR during the early phase of endosomal acidification as the LDLR translocates from the cell membrane to the sorting endosome.
前蛋白转化酶枯草溶菌素/胰凝乳蛋白酶 9(PCSK9)在细胞表面与低密度脂蛋白受体(LDLR)的表皮生长因子同源结构域重复 A 结合,并破坏内化的 LDLR 的再循环。结果,LDLR 被重新定向到溶酶体进行降解。尽管 PCSK9 可能与缺乏配体结合域的 LDLR 结合,但至少需要 LDLR 的三个配体结合重复序列,PCSK9 才能将 LDLR 重新定向到溶酶体。在这项研究中,我们研究了在逐渐酸性条件下 PCSK9 与具有或不具有配体结合域的 LDLR 的结合情况,以便模拟 LDLR:PCSK9 复合物从细胞膜转运到分拣内体时的环境。这些研究表明,在 pH 值为 6.9-6.1 的范围内,缺乏配体结合域的 LDLR 可以快速释放 PCSK9。在酸性 pH 值下,对突变 PCSK9(缺乏 C 末端结构域)与正常 LDLR 的结合也观察到了类似的释放模式。这些数据表明,在 LDLR 的带负电荷的配体结合域和 PCSK9 的带正电荷的 C 末端结构域之间的相互作用对于在 LDLR 从细胞膜转运到分拣内体期间,内体酸化的早期阶段 PCSK9 与 LDLR 保持结合是必需的。