Mattii Letizia, Segnani Cristina, Cupisti Adamasco, D'Alessandro Delfo, Moscato Stefania, Meola Mario, Barsotti Giuliano, Marinò Michele, Bianchi Francesco, Dolfi Amelio, Bernardini Nunzia
Department of Human Morphology and Applied Biology, University of Pisa, Pisa, Italy.
Nephron Exp Nephrol. 2005;101(1):e16-23. doi: 10.1159/000086035. Epub 2005 May 27.
The Rho/transforming growth factor-beta (TGF-beta) system plays a crucial role in the progression of renal damage due to stimulation of extracellular matrix molecule deposition. In fact, the in vitro TGF-beta-mediated production of fibronectin, one of the major TGF-beta-regulated extracellular components, has recently been correlated with Rho protein signalling molecules. Although a close relationship between increased renal tissue levels of TGF-beta1 and fibronectin has been reported in IgA nephropathy, no data are available on renal tissue expression of Rho proteins.
This study was designed to assess in IgA nephropathy patients the kidney tissue immunohistochemical expression of RhoA, TGF-beta1, and fibronectin, and the rate of immunoreactivity for each antigen by image analysis.
An increase in RhoA, TGF-beta1, and fibronectin expression was detected in tubulointerstitium and in glomeruli of IgA nephropathy compared to normal kidneys; in particular, RhoA was found also in proximal tubules, unlike control kidneys and mainly at the cell boundary level, which is in keeping with its activated form. The image analysis confirmed that the kidney tissue levels of RhoA, TGF-beta1, and fibronectin were significantly enhanced in the patients.
This study suggests that RhoA may represent a key molecule in the signalling transduction pathway of profibrotic signals in IgA nephropathy.
Rho/转化生长因子-β(TGF-β)系统在因细胞外基质分子沉积刺激导致的肾损伤进展中起关键作用。事实上,体外TGF-β介导的纤连蛋白(一种主要受TGF-β调节的细胞外成分)产生最近已与Rho蛋白信号分子相关联。尽管在IgA肾病中已报道TGF-β1和纤连蛋白的肾组织水平升高之间存在密切关系,但关于Rho蛋白在肾组织中的表达尚无数据。
本研究旨在评估IgA肾病患者肾组织中RhoA、TGF-β1和纤连蛋白的免疫组化表达,并通过图像分析评估每种抗原的免疫反应率。
与正常肾脏相比,在IgA肾病的肾小管间质和肾小球中检测到RhoA、TGF-β1和纤连蛋白表达增加;特别是,与对照肾脏不同,在近端小管中也发现了RhoA,且主要在细胞边界水平,这与其活化形式一致。图像分析证实患者肾组织中RhoA、TGF-β1和纤连蛋白水平显著升高。
本研究表明RhoA可能是IgA肾病中促纤维化信号转导途径中的关键分子。