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在缺乏层粘连蛋白β2(Pierson 综合征模型)的小鼠足细胞中强制表达层粘连蛋白β1可预防肾病综合征。

Forced expression of laminin beta1 in podocytes prevents nephrotic syndrome in mice lacking laminin beta2, a model for Pierson syndrome.

机构信息

Renal Division, Department of Internal Medicine, Washington University School of Medicine, St Louis, MO 63110, USA.

出版信息

Proc Natl Acad Sci U S A. 2011 Sep 13;108(37):15348-53. doi: 10.1073/pnas.1108269108. Epub 2011 Aug 29.

DOI:10.1073/pnas.1108269108
PMID:21876163
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3174642/
Abstract

Pierson syndrome is a congenital nephrotic syndrome with ocular and neurological defects caused by mutations in LAMB2, the gene encoding the basement membrane protein laminin β2 (Lamβ2). It is the kidney glomerular basement membrane (GBM) that is defective in Pierson syndrome, as Lamβ2 is a component of laminin-521 (LM-521; α5β2γ1), the major laminin in the mature GBM. In both Pierson syndrome and the Lamb2(-/-) mouse model for this disease, laminin β1 (Lamβ1), a structurally similar homolog of Lamβ2, is marginally increased in the GBM, but it fails to fully compensate for the loss of Lamβ2, leading to the filtration barrier defects and nephrotic syndrome. Here we generated several lines of Lamβ1 transgenic mice and used them to show that podocyte-specific Lamβ1 expression in Lamb2(-/-) mice abrogates the development of nephrotic syndrome, correlating with a greatly extended lifespan. In addition, the more Lamβ1 was expressed, the less urinary albumin was excreted. Transgenic Lamβ1 expression increased the level of Lamα5 in the GBM of rescued mice, consistent with the desired increased deposition of laminin-511 (α5β1γ1) trimers. Ultrastructural analysis revealed occasional knob-like subepithelial GBM thickening but intact podocyte foot processes in aged rescued mice. These results suggest the possibility that up-regulation of LAMB1 in podocytes, should it become achievable, would likely lessen the severity of nephrotic syndrome in patients carrying LAMB2 mutations.

摘要

皮尔逊综合征是一种先天性肾病综合征,伴有眼部和神经系统缺陷,由编码基底膜蛋白层粘连蛋白β2(Lamβ2)的基因突变引起。皮尔逊综合征中缺陷的是肾脏肾小球基底膜(GBM),因为 Lamβ2 是层粘连蛋白-521(LM-521;α5β2γ1)的组成部分,层粘连蛋白-521 是成熟 GBM 的主要层粘连蛋白。在皮尔逊综合征和该病的 Lamb2(-/-) 小鼠模型中,结构上与 Lamβ2 相似的同源物 Lamβ1 在 GBM 中略有增加,但未能完全弥补 Lamβ2 的缺失,导致滤过屏障缺陷和肾病综合征。在这里,我们生成了几株 Lamβ1 转基因小鼠,并使用它们表明,在 Lamb2(-/-) 小鼠中足细胞特异性表达 Lamβ1 可消除肾病综合征的发生,与寿命的显著延长相关。此外,Lamβ1 的表达越多,尿液白蛋白的排泄量就越少。转基因 Lamβ1 表达增加了挽救小鼠 GBM 中 Lamα5 的水平,与所需的增加层粘连蛋白-511(α5β1γ1)三聚体的沉积一致。超微结构分析显示,在老年挽救小鼠中偶尔会出现亚上皮 GBM 增厚的小结节,但足细胞的足突完整。这些结果表明,在携带 LAMB2 突变的患者中,如果能够上调足细胞中的 LAMB1,可能会减轻肾病综合征的严重程度。

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