Institute for Molecular Bioscience, University of Queensland, St. Lucia, Queensland, Australia.
Cellular Orthopaedic Laboratory, School of Surgery, University of Western Australia, Nedlands, Western Australia, Australia.
Nat Struct Mol Biol. 2016 Oct;23(10):921-932. doi: 10.1038/nsmb.3290. Epub 2016 Sep 5.
Recycling of internalized receptors from endosomal compartments is essential for the receptors' cell-surface homeostasis. Sorting nexin 27 (SNX27) cooperates with the retromer complex in the recycling of proteins containing type I PSD95-Dlg-ZO1 (PDZ)-binding motifs. Here we define specific acidic amino acid sequences upstream of the PDZ-binding motif required for high-affinity engagement of the human SNX27 PDZ domain. However, a subset of SNX27 ligands, such as the β adrenergic receptor and N-methyl-D-aspartate (NMDA) receptor, lack these sequence determinants. Instead, we identified conserved sites of phosphorylation that substitute for acidic residues and dramatically enhance SNX27 interactions. This newly identified mechanism suggests a likely regulatory switch for PDZ interaction and protein transport by the SNX27-retromer complex. Defining this SNX27 binding code allowed us to classify more than 400 potential SNX27 ligands with broad functional implications in signal transduction, neuronal plasticity and metabolite transport.
内吞受体从内体隔室中的再循环对于受体的细胞表面稳态至关重要。分选连接蛋白 27(SNX27)与逆行体复合物在含有 I 型 PSD95-Dlg-ZO1(PDZ)结合基序的蛋白质的再循环中合作。在这里,我们定义了 PDZ 结合基序上游的特定酸性氨基酸序列,这些序列对于人 SNX27 PDZ 结构域的高亲和力结合是必需的。然而,SNX27 的一部分配体,如β肾上腺素受体和 N-甲基-D-天冬氨酸(NMDA)受体,缺乏这些序列决定因素。相反,我们确定了保守的磷酸化位点,这些位点取代了酸性残基,并显著增强了 SNX27 的相互作用。这种新发现的机制为 SNX27-逆行体复合物的 PDZ 相互作用和蛋白质运输提供了一个可能的调节开关。定义这个 SNX27 结合密码使我们能够对 400 多个潜在的 SNX27 配体进行分类,这些配体在信号转导、神经元可塑性和代谢物运输等方面具有广泛的功能意义。