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足细胞上α- dystroglycan的结扎诱导细胞内信号传导:足细胞足突消失的新机制?

Ligation of alpha-dystroglycan on podocytes induces intracellular signaling: a new mechanism for podocyte effacement?

作者信息

Vogtländer Nils P J, Visch Henk Jan, Bakker Marinka A H, Berden Jo H M, van der Vlag Johan

机构信息

Nephrology Research Laboratory, Nijmegen Centre for Molecular Life Sciences, Nijmegen, The Netherlands.

出版信息

PLoS One. 2009 Jun 19;4(6):e5979. doi: 10.1371/journal.pone.0005979.

Abstract

BACKGROUND

Alpha-dystroglycan is a negatively charged glycoprotein that covers the apical and basolateral membrane of the podocyte. Its transmembrane binding to the cytoskeleton is regulated via tyrosine phosphorylation (pY892) of beta-dystroglycan. At the basolateral side alpha-dystroglycan binds the glomerular basement membrane. At the apical membrane, it plays a role in the maintenance of the filtration slit. In this study, we evaluated whether ligation of alpha-dystroglycan with specific antibodies or natural ligands induces intracellular signaling, and whether there is an effect on podocyte architecture.

METHODOLOGY/PRINCIPAL FINDINGS: Conditionally immortalized podocytes were exposed in vitro to antibodies to alpha-dystroglycan, and to fibronectin, biglycan, laminin and agrin. Intracellular calcium fluxes, phosphorylation of beta-dystroglycan and podocyte architecture were studied. Antibodies to alpha-dystroglycan could specifically induce calcium signaling. Fibronectin also induced calcium signaling, and led to dephosphorylation of pY892 in beta-dystroglycan. Ligation of alpha-dystroglycan resulted in an altered actin architecture, a decreased number of podocyte pedicles and a more flattened appearance of the podocyte.

CONCLUSIONS/SIGNIFICANCE: We conclude that ligation of alpha-dystroglycan on podocytes induces intracellular calcium signaling, which leads to an altered cytoskeleton architecture akin to the situation of foot process effacement. In particular the ability of fibronectin to induce intracellular signaling events is of interest, since the expression and excretion of this protein is upregulated in several proteinuric diseases. Therefore, fibronectin-induced signaling via dystroglycan may be a novel mechanism for foot process effacement in proteinuric diseases.

摘要

背景

α- dystroglycan是一种带负电荷的糖蛋白,覆盖足细胞的顶端和基底外侧膜。它与细胞骨架的跨膜结合通过β- dystroglycan的酪氨酸磷酸化(pY892)来调节。在基底外侧,α- dystroglycan与肾小球基底膜结合。在顶端膜,它在维持滤过裂隙中起作用。在本研究中,我们评估了用特异性抗体或天然配体连接α- dystroglycan是否诱导细胞内信号传导,以及是否对足细胞结构有影响。

方法/主要发现:条件永生化足细胞在体外暴露于α- dystroglycan抗体、纤连蛋白、双糖链蛋白聚糖、层粘连蛋白和聚集蛋白聚糖。研究了细胞内钙通量、β- dystroglycan的磷酸化和足细胞结构。α- dystroglycan抗体可特异性诱导钙信号传导。纤连蛋白也诱导钙信号传导,并导致β- dystroglycan中pY892去磷酸化。α- dystroglycan的连接导致肌动蛋白结构改变、足细胞足突数量减少以及足细胞外观更扁平。

结论/意义:我们得出结论,足细胞上α- dystroglycan的连接诱导细胞内钙信号传导,这导致细胞骨架结构改变,类似于足突消失的情况。特别是纤连蛋白诱导细胞内信号传导事件的能力值得关注,因为该蛋白的表达和排泄在几种蛋白尿疾病中上调。因此,纤连蛋白通过dystroglycan诱导的信号传导可能是蛋白尿疾病中足突消失的一种新机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0e61/2695560/03937a95865a/pone.0005979.g001.jpg

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