Institute for Anatomy and Cell Biology, University Medicine Greifswald, Greifswald, Germany.
Imaging Center of the Department of Biology, University of Greifswald, Greifswald, Germany.
PLoS One. 2021 Dec 8;16(12):e0260878. doi: 10.1371/journal.pone.0260878. eCollection 2021.
Proper and size selective blood filtration in the kidney depends on an intact morphology of podocyte foot processes. Effacement of interdigitating podocyte foot processes in the glomeruli causes a leaky filtration barrier resulting in proteinuria followed by the development of chronic kidney diseases. Since the function of the filtration barrier is depending on a proper actin cytoskeleton, we studied the role of the important actin-binding protein palladin for podocyte morphology. Podocyte-specific palladin knockout mice on a C57BL/6 genetic background (PodoPalldBL/6-/-) were back crossed to a 129 genetic background (PodoPalld129-/-) which is known to be more sensitive to kidney damage. Then we analyzed the morphological changes of glomeruli and podocytes as well as the expression of the palladin-binding partners Pdlim2, Lasp-1, Amotl1, ezrin and VASP in 6 and 12 months old mice. PodoPalld129-/- mice in 6 and 12 months showed a marked dilatation of the glomerular tuft and a reduced expression of the mesangial marker protein integrin α8 compared to controls of the same age. Furthermore, ultrastructural analysis showed significantly more podocytes with morphological deviations like an enlarged sub-podocyte space and regions with close contact to parietal epithelial cells. Moreover, PodoPalld129-/- of both age showed a severe effacement of podocyte foot processes, a significantly reduced expression of pLasp-1 and Pdlim2, and significantly reduced mRNA expression of Pdlim2 and VASP, three palladin-interacting proteins. Taken together, the results show that palladin is essential for proper podocyte morphology in mice with a 129 background.
在肾脏中,适当且具有选择性的血液过滤取决于足细胞裂孔隔膜的完整形态。肾小球中相互交错的足细胞裂孔隔膜消失会导致滤过屏障渗漏,从而出现蛋白尿,随后发展为慢性肾脏病。由于滤过屏障的功能依赖于适当的肌动蛋白细胞骨架,我们研究了重要的肌动蛋白结合蛋白 Palladin 对足细胞形态的作用。在 C57BL/6 遗传背景下(PodoPalldBL/6-/-)特异性敲除足细胞 Palladin 的小鼠(PodoPalld129-/-)回交至已知对肾脏损伤更敏感的 129 遗传背景。然后,我们分析了 6 个月和 12 个月大的小鼠肾小球和足细胞的形态变化以及 Palladin 结合伴侣 Pdlim2、Lasp-1、Amotl1、ezrin 和 VASP 的表达情况。与同龄对照组相比,6 个月和 12 个月大的 PodoPalld129-/-小鼠的肾小球丛明显扩张,肾小球系膜标记蛋白整合素α8 的表达减少。此外,超微结构分析显示,与对照组相比,更多的足细胞出现形态异常,如亚足细胞间隙增大和与壁细胞紧密接触的区域。此外,两种年龄的 PodoPalld129-/-小鼠的足细胞裂孔隔膜严重消失,pLasp-1 和 Pdlim2 的表达显著减少,Palladin 相互作用蛋白 Pdlim2 和 VASP 的 mRNA 表达也显著减少。总之,这些结果表明 Palladin 对于 129 背景下的小鼠足细胞形态的正常维持是必不可少的。