Goto S, Yaoita E, Matsunami H, Kondo D, Yamamoto T, Kawasaki K, Arakawa M, Kihara I
Department of Medicine(II), Niigata University School of Medicine, Japan.
J Am Soc Nephrol. 1998 Jul;9(7):1234-41. doi: 10.1681/ASN.V971234.
The earliest commitment to the formation of glomeruli is recognizable in S-shaped bodies. Although cell-cell adhesion seems likely to play a crucial role in this process, how glomerular epithelial cells segregate from the other parts of the nephron is unknown. In this study, immunofluorescence microscopy and monoclonal antibodies specific for mouse R-, E-, P- and N-cadherins were used to examine which of these adhesion molecules are involved in glomerulogenesis of the mouse kidney. Weak R-cadherin staining was first found in the vesicle stage, becoming restricted to glomerular visceral epithelial cells (VEC) during the S-shaped body stage. The intensity of this staining became stronger in the capillary loop stage, whereas parietal epithelial cells (PEC) and tubular cells did not stain. In the maturing stage, VEC gradually lost their staining for R-cadherin. E-cadherin was detected in ureteric buds and the upper limb of S-shaped bodies. From the capillary loop to the maturing stage, anti-E-cadherin stained epithelial cells in all tubule segments, but no label was seen in VEC or PEC. P-cadherin was also stained in the ureteric buds and in the upper limb of S-shaped bodies. N-Cadherin was weakly stained in cells at the vesicle stage, but thereafter staining of N-cadherin was not detected at any stage of glomerular formation. Immunoelectron microscopy of differentiating VEC was performed using antibodies specific to alpha-catenin, which is associated with cadherin. Subsequently, immunogold particles identifying alpha-catenin were localized on junctions between primary processes of VEC. These findings indicate that R-cadherin is uniquely expressed in differentiating VEC, suggesting an important role in the early stages of glomerulogenesis.
肾小球形成的最早迹象可在S形小体中识别出来。虽然细胞间黏附似乎在这一过程中起着关键作用,但肾小球上皮细胞如何与肾单位的其他部分分离尚不清楚。在本研究中,使用免疫荧光显微镜和针对小鼠R -、E -、P -和N -钙黏蛋白的单克隆抗体来检测这些黏附分子中哪些参与了小鼠肾脏的肾小球发生过程。在囊泡期首次发现R -钙黏蛋白染色较弱,在S形小体期局限于肾小球脏层上皮细胞(VEC)。在毛细血管袢期这种染色强度变强,而壁层上皮细胞(PEC)和肾小管细胞未染色。在成熟阶段,VEC逐渐失去其R -钙黏蛋白染色。在输尿管芽和S形小体的上肢检测到E -钙黏蛋白。从毛细血管袢期到成熟阶段,抗E -钙黏蛋白染色所有肾小管节段的上皮细胞,但在VEC或PEC中未见标记。P -钙黏蛋白在输尿管芽和S形小体的上肢也有染色。N -钙黏蛋白在囊泡期的细胞中染色较弱,但此后在肾小球形成的任何阶段均未检测到N -钙黏蛋白染色。使用与钙黏蛋白相关的α -连环蛋白特异性抗体对分化中的VEC进行免疫电子显微镜检查。随后,识别α -连环蛋白的免疫金颗粒定位在VEC初级突起之间的连接处。这些发现表明R -钙黏蛋白在分化中的VEC中独特表达,提示其在肾小球发生早期阶段起重要作用。