Mellado Maravillas, Cuartero Yasmina, Brugada Ramon, Verges Marcel
Laboratory of Epithelial Cell Biology, Príncipe Felipe Research Center (CIPF), Valencia, 46012, Spain.
Biol Cell. 2014 Nov;106(11):377-93. doi: 10.1111/boc.201400011. Epub 2014 Sep 2.
Retromer is required for endosome-to-Golgi retrieval of the cation-independent mannose 6-phosphate receptor (CI-MPR), allowing delivery of hydrolases into lysosomes. It is constituted by a conserved heterotrimer formed by vacuolar protein sorting (Vps) gene products Vps26, Vps35 and Vps29, which is in charge of cargo selection, and a dimer of phosphoinositide-binding sorting nexins (SNXs), which has a structural role. Retromer has been implicated in sorting of additional cargo. Thus, retromer also promotes polymeric immunoglobulin A (pIgA) transcytosis by the pIgA receptor (pIgR) in polarised cells, and considerable evidence implicates retromer in controlling epithelial cell polarity. However, the precise localisation of retromer along the endocytic pathway of polarised cells has not been studied in detail.
Our biochemical analysis using rat liver endosome fractions suggests a distinct distribution pattern. Although subunits of the cargo-selective complex were enriched in early endosomes (EEs), levels of SNX2 were greater in sorting endosomes. We then immunolocalised the retromer subunits in polarised Madin-Darby canine kidney (MDCK) cells by confocal microscopy. An estimated 25% of total Vps26 and SNX2 localised to EEs, with negligible portions in recycling endosomes as well as in late endosomes and lysosomes. Although Vps26 was in structures of more heterogeneous size and shape than SNX2, these markedly overlapped. In consequence, the two retromer subcomplexes mostly colocalised. When we analysed retromer overlap with its cargo, we found that structures retromer and pIgA(+) are independent of those structures retromer and CI-MPR(+) . Remarkably, retromer localised preferentially at the transcytotic pathway. Pharmacological inhibition of phosphoinositide 3-kinase affected the co-distribution of retromer with pIgA and the CI-MPR, delaying pIgA progress to the apical surface.
In polarised MDCK cells, we found retromer associated with certain specialised EE-derived pathways. Our data imply that retromer is largely engaged in pIgA transcytosis in pIgR-expressing MDCK cells, as opposed to endosome-to-Golgi retrieval.
阳离子非依赖性甘露糖6-磷酸受体(CI-MPR)从内体到高尔基体的回收需要逆转录复合物,以允许水解酶进入溶酶体。它由液泡蛋白分选(Vps)基因产物Vps26、Vps35和Vps29形成的保守异源三聚体构成,负责货物选择,以及磷酸肌醇结合分选连接蛋白(SNXs)的二聚体,其具有结构作用。逆转录复合物还参与了其他货物的分选。因此,逆转录复合物还通过极化细胞中的聚合免疫球蛋白A(pIgA)受体(pIgR)促进pIgA转胞吞作用,并且有大量证据表明逆转录复合物参与控制上皮细胞极性。然而,尚未详细研究逆转录复合物在极化细胞内吞途径中的精确定位。
我们使用大鼠肝内体组分进行的生化分析表明了一种独特的分布模式。虽然货物选择复合物的亚基在早期内体(EEs)中富集,但SNX2的水平在分选内体中更高。然后,我们通过共聚焦显微镜在极化的犬肾Madin-Darby(MDCK)细胞中对逆转录复合物亚基进行了免疫定位。估计25%的总Vps26和SNX2定位于EEs,在回收内体以及晚期内体和溶酶体中的比例可忽略不计。虽然Vps26所在结构的大小和形状比SNX2更具异质性,但它们明显重叠。因此,两个逆转录复合物亚复合体大多共定位。当我们分析逆转录复合物与其货物的重叠情况时,我们发现逆转录复合物和pIgA(+)的结构与逆转录复合物和CI-MPR(+)的结构无关。值得注意的是,逆转录复合物优先定位于转胞吞途径。磷酸肌醇3激酶的药理学抑制影响了逆转录复合物与pIgA和CI-MPR的共分布,延迟了pIgA向顶端表面的转运。
在极化的MDCK细胞中,我们发现逆转录复合物与某些特定的源自EE的途径相关。我们的数据表明,在表达pIgR的MDCK细胞中,逆转录复合物主要参与pIgA转胞吞作用,而不是内体到高尔基体的回收。