Groffen A J, Veerkamp J H, Monnens L A, van den Heuvel L P
Department of Pediatrics, University of Nijmegen, The Netherlands.
Nephrol Dial Transplant. 1999 Sep;14(9):2119-29. doi: 10.1093/ndt/14.9.2119.
As the first barrier to be crossed on the way to urinary space, the glomerular basement membrane (GBM) plays a key role in renal function. The permeability of the GBM for a given molecule is highly dependent on its size, shape and charge. As early as 1980, the charge-selective permeability was demonstrated to relate to the electrostatic properties of covalently bound heparan sulfates (HS) within the GBM. Since the identification of perlecan as a heparan sulfate proteoglycan (HSPG) of basement membranes, the hypothesis that perlecan could be a crucial determinant of GBM permselectivity received considerable attention. In addition to perlecan, the GBM also contains other HSPG species, one of which was identified as agrin. The high local expression of agrin in the GBM, together with the presence of agrin receptors at the cell matrix interface, suggests that this HSPG contributes to glomerular function in multiple ways. Here, we review the current knowledge regarding the structure and functions of HSPGs in the GBM, and discuss how these molecules could be involved in various glomerular diseases. Possible directions for future investigation are suggested.
作为通向尿腔途中的第一道屏障,肾小球基底膜(GBM)在肾功能中起关键作用。GBM对特定分子的通透性高度依赖于其大小、形状和电荷。早在1980年,电荷选择性通透性就被证明与GBM内共价结合的硫酸乙酰肝素(HS)的静电特性有关。自从将基底膜聚糖鉴定为基底膜的硫酸乙酰肝素蛋白聚糖(HSPG)以来,基底膜聚糖可能是GBM通透选择性的关键决定因素这一假说受到了广泛关注。除了基底膜聚糖,GBM还含有其他HSPG种类,其中一种被鉴定为聚集蛋白。聚集蛋白在GBM中的高局部表达,以及细胞基质界面处聚集蛋白受体的存在,表明这种HSPG以多种方式促进肾小球功能。在这里,我们综述了目前关于GBM中HSPG的结构和功能的知识,并讨论了这些分子如何参与各种肾小球疾病。还提出了未来研究的可能方向。