Liu Gang, Kaw Beenu, Kurfis Jayson, Rahmanuddin Syed, Kanwar Yashpal S, Chugh Sumant S
Department of Medicine, Feinberg School of Medicine, Northwestern University, Chicago, Illinois 60611, USA.
J Clin Invest. 2003 Jul;112(2):209-21. doi: 10.1172/JCI18242.
Neph1-deficient mice develop nephrotic syndrome at birth, indicating the importance of this protein in the development of a normal glomerular filtration barrier. While the precise subcellular localization of Neph1 remains unknown, its relationship with other components of the glomerular filtration barrier is of great interest in this field. In this paper, we localize the expression of Neph1 to the glomerular slit diaphragm by immunogold electron microscopy in rodents and describe its direct interaction with two other components of the slit diaphragm, nephrin and ZO-1. Both native and recombinant Neph1 associate with each other as dimers and multimers and interact with nephrin via their extracellular segments. Disruption of the Neph1-nephrin interaction in vivo by injecting combinations of individual subnephritogenic doses of anti-Neph1 and anti-nephrin results in complement- and leukocyte-independent proteinuria with preserved foot processes. This disruption modestly reduces Neph1 and nephrin protein expression in podocytes and dramatically reduces ZO-1 protein expression via the interaction of ZO-1 PDZ domains with the cytoplasmic tail of Neph1, independent of changes in mRNA expression of all three genes. The interaction between nephrin and Neph1 is specific and not shared by either protein with P-cadherin, another integral slit diaphragm protein. The interaction between nephrin and Neph1 therefore appears to be an important determinant of glomerular permeability.
Neph1基因缺陷的小鼠在出生时就会出现肾病综合征,这表明该蛋白在正常肾小球滤过屏障的发育中具有重要作用。虽然Neph1的确切亚细胞定位尚不清楚,但在该领域中,其与肾小球滤过屏障其他成分的关系备受关注。在本文中,我们通过免疫金电子显微镜在啮齿动物中确定了Neph1在肾小球裂孔隔膜中的表达定位,并描述了它与裂孔隔膜的另外两个成分nephrin和ZO-1的直接相互作用。天然和重组的Neph1均以二聚体和多聚体形式相互结合,并通过其细胞外区段与nephrin相互作用。通过注射亚致肾炎剂量的抗Neph1和抗nephrin的组合在体内破坏Neph1-nephrin相互作用,会导致补体和白细胞非依赖性蛋白尿,同时足突得以保留。这种破坏会适度降低足细胞中Neph1和nephrin蛋白的表达,并通过ZO-1的PDZ结构域与Neph1的细胞质尾部相互作用,显著降低ZO-1蛋白的表达,而这与所有三个基因的mRNA表达变化无关。nephrin与Neph1之间的相互作用具有特异性,这两种蛋白与另一种完整的裂孔隔膜蛋白P-钙黏蛋白均无共享这种相互作用。因此,nephrin与Neph1之间的相互作用似乎是肾小球通透性的一个重要决定因素。