Simonetti Boris, Danson Chris M, Heesom Kate J, Cullen Peter J
School of Biochemistry, University of Bristol, Bristol, England, UK.
Proteomics Facility, School of Biochemistry, University of Bristol, Bristol, England, UK.
J Cell Biol. 2017 Nov 6;216(11):3695-3712. doi: 10.1083/jcb.201703015. Epub 2017 Sep 21.
Endosomal recycling of transmembrane proteins requires sequence-dependent recognition of motifs present within their intracellular cytosolic domains. In this study, we have reexamined the role of retromer in the sequence-dependent endosome-to-trans-Golgi network (TGN) transport of the cation-independent mannose 6-phosphate receptor (CI-MPR). Although the knockdown or knockout of retromer does not perturb CI-MPR transport, the targeting of the retromer-linked sorting nexin (SNX)-Bin, Amphiphysin, and Rvs (BAR) proteins leads to a pronounced defect in CI-MPR endosome-to-TGN transport. The retromer-linked SNX-BAR proteins comprise heterodimeric combinations of SNX1 or SNX2 with SNX5 or SNX6 and serve to regulate the biogenesis of tubular endosomal sorting profiles. We establish that SNX5 and SNX6 associate with the CI-MPR through recognition of a specific WLM endosome-to-TGN sorting motif. From validating the CI-MPR dependency of SNX1/2-SNX5/6 tubular profile formation, we provide a mechanism for coupling sequence-dependent cargo recognition with the biogenesis of tubular profiles required for endosome-to-TGN transport. Therefore, the data presented in this study reappraise retromer's role in CI-MPR transport.
跨膜蛋白的内体循环需要对其细胞内胞质结构域中存在的基序进行序列依赖性识别。在本研究中,我们重新审视了回收体在阳离子非依赖性甘露糖6-磷酸受体(CI-MPR)从内体到反式高尔基体网络(TGN)的序列依赖性运输中的作用。尽管回收体的敲低或敲除不会干扰CI-MPR的运输,但靶向与回收体相关的分选连接蛋白(SNX)-Bin、发动蛋白和Rvs(BAR)蛋白会导致CI-MPR从内体到TGN的运输出现明显缺陷。与回收体相关的SNX-BAR蛋白由SNX1或SNX2与SNX5或SNX6的异二聚体组合构成,用于调节管状内体分选结构的生物发生。我们确定SNX5和SNX6通过识别特定的WLM内体到TGN分选基序与CI-MPR结合。通过验证SNX1/2-SNX5/6管状结构形成对CI-MPR的依赖性,我们提供了一种将序列依赖性货物识别与内体到TGN运输所需的管状结构生物发生相偶联的机制。因此,本研究中呈现的数据重新评估了回收体在CI-MPR运输中的作用。