Kretzler Matthias
Medizinische Poliklinik, University of Munich, Munich, Germany.
Microsc Res Tech. 2002 May 15;57(4):247-53. doi: 10.1002/jemt.10083.
Glomerular filtration depends on well-orchestrated cell-cell and cell-matrix contacts of glomerular podocytes. Over the last years critical constituents of these contacts have been identified via molecular approaches. Podocyte cell-matrix interactions have been shown to be mediated in part by alpha(3)beta(1)-integrin heterodimers. Disturbances of integrin matrix interaction lead to detachment of podocytes in vitro, corresponding to the critical event of foot process retraction and glomerular basement membrane (GBM) denudation in vivo. Further, dystroglycan-mediated matrix attachment appears to play a critical role for podocyte foot process architecture. Downstream signaling events are currently elucidated concentrating mainly on integrin-dependent cascades and their consequences for podocyte adhesion and proliferation. An activation of the integrin-linked kinase in podocyte damage in vivo and in vitro makes this molecule a particularly interesting candidate for integrin-mediated inside-out and outside-in signaling in podocytes. Podocyte cell-cell interaction has been characterized in a few studies in vitro, indicating the slit diaphragm to be a modified adherens junction. The structural link between the cell-matrix and cell-cell contacts is maintained by the actin cytoskeleton, which may also enable cross-talk between these two cell contact sites. Examining podocyte function in tissue culture, animal models and human expression studies should allow further detailed dissection of the molecular pathways responsible for maintenance and failure of the glomerular filtration barrier.
肾小球滤过依赖于肾小球足细胞精心编排的细胞间和细胞与基质间的接触。在过去几年中,通过分子方法已鉴定出这些接触的关键成分。足细胞与基质的相互作用已被证明部分由α(3)β(1)-整合素异二聚体介导。整合素与基质相互作用的紊乱导致体外足细胞脱离,这与体内足突回缩和肾小球基底膜(GBM)剥脱这一关键事件相对应。此外,肌营养不良蛋白聚糖介导的基质附着似乎对足细胞足突结构起关键作用。目前正在阐明下游信号事件,主要集中在整合素依赖性级联反应及其对足细胞黏附和增殖的影响。整合素连接激酶在体内和体外足细胞损伤中的激活使该分子成为足细胞中整合素介导的由内向外和由外向内信号传导的一个特别有趣的候选分子。足细胞间相互作用已在一些体外研究中得到表征,表明裂孔隔膜是一种改良的黏附连接。细胞与基质和细胞间接触之间的结构联系由肌动蛋白细胞骨架维持,这也可能使这两个细胞接触位点之间能够进行相互作用。在组织培养、动物模型和人类表达研究中研究足细胞功能应能进一步详细剖析负责维持和破坏肾小球滤过屏障的分子途径。