Sugar Terrel, Wassenhove-McCarthy Deborah J, Orr A Wayne, Green Jonette, van Kuppevelt Toin H, McCarthy Kevin J
Department of Cell Biology and Anatomy, LSU Health Sciences Center, Shreveport, Louisiana;
Department of Pathology, LSU Health Sciences Center, Shreveport, Louisiana; and.
Am J Physiol Renal Physiol. 2016 May 15;310(10):F1123-35. doi: 10.1152/ajprenal.00603.2015. Epub 2016 Mar 2.
Previous research has shown that podocytes unable to assemble heparan sulfate on cell surface proteoglycan core proteins have compromised cell-matrix interactions. This report further explores the role of N-sulfation of intact heparan chains in podocyte-matrix interactions. For the purposes of this study, a murine model in which the enzyme N-deacetylase/N-sulfotransferase 1 (NDST1) was specifically deleted in podocytes and immortalized podocyte cell lines lacking NDST1 were developed and used to explore the effects of such a mutation on podocyte behavior in vitro. NDST1 is a bifunctional enzyme, ultimately responsible for N-sulfation of heparan glycosaminoglycans produced by cells. Immunostaining of glomeruli from mice whose podocytes were null for Ndst1 (Ndst1(-/-)) showed a disrupted pattern of localization for the cell surface proteoglycan, syndecan-4, and for α-actinin-4 compared with controls. The pattern of immunostaining for synaptopodin and nephrin did not show as significant alterations. In vitro studies showed that Ndst1(-/-) podocytes attached, spread, and migrated less efficiently than Ndst1(+/+) podocytes. Immunostaining in vitro for several markers for molecules involved in cell-matrix interactions showed that Ndst1(-/-) cells had decreased clustering of syndecan-4 and decreased recruitment of protein kinase-Cα, α-actinin-4, vinculin, and phospho-focal adhesion kinase to focal adhesions. Total intracellular phospho-focal adhesion kinase was decreased in Ndst1(-/-) compared with Ndst1(+/+) cells. A significant decrease in the abundance of activated integrin α5β1 on the cell surface of Ndst1(-/-) cells compared with Ndst1(+/+) cells was observed. These results serve to highlight the critical role of heparan sulfate N-sulfation in facilitating normal podocyte-matrix interactions.
先前的研究表明,无法在细胞表面蛋白聚糖核心蛋白上组装硫酸乙酰肝素的足细胞,其细胞与基质的相互作用受损。本报告进一步探讨了完整硫酸乙酰肝素链的N-硫酸化在足细胞与基质相互作用中的作用。为了本研究的目的,构建并使用了一种小鼠模型,其中足细胞中特异性缺失了N-脱乙酰基酶/N-硫酸转移酶1(NDST1),以及缺乏NDST1的永生化足细胞系,以探讨这种突变对体外足细胞行为的影响。NDST1是一种双功能酶,最终负责细胞产生的硫酸乙酰肝素糖胺聚糖的N-硫酸化。与对照组相比,对足细胞中Ndst1基因缺失(Ndst1(-/-))的小鼠肾小球进行免疫染色显示,细胞表面蛋白聚糖syndecan-4和α-辅肌动蛋白-4的定位模式紊乱。突触素和nephrin的免疫染色模式没有显示出明显变化。体外研究表明,与Ndst1(+/+)足细胞相比,Ndst1(-/-)足细胞的附着、铺展和迁移效率较低。对参与细胞与基质相互作用的几种分子标记物进行体外免疫染色显示,Ndst1(-/-)细胞中syndecan-4的聚集减少,蛋白激酶Cα、α-辅肌动蛋白-4、纽蛋白和磷酸化粘着斑激酶向粘着斑的募集减少。与Ndst1(+/+)细胞相比,Ndst1(-/-)细胞中总的细胞内磷酸化粘着斑激酶减少。与Ndst1(+/+)细胞相比,观察到Ndst1(-/-)细胞表面活化整合素α5β1的丰度显著降低。这些结果凸显了硫酸乙酰肝素N-硫酸化在促进正常足细胞与基质相互作用中的关键作用。