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PMID: 21855382 已发表 · ppublish 英语

Deficient degradation of homotrimeric type I collagen, α1(I)3 glomerulopathy in oim mice.

Molecular genetics and metabolism ·第 104 卷 ·第 3 期 ·2012-02-28

Roberts-Pilgrim Anna M, Makareeva Elena, Myles Matthew H, Besch-Williford Cynthia L, Brodeur Amanda C, Walker Andrew L, Leikin Sergey, Franklin Craig L, Phillips Charlotte L

摘要

Col1a2-deficient (oim) mice synthesize homotrimeric type I collagen due to nonfunctional proα2(I) collagen chains. Our previous studies revealed a postnatal, progressive type I collagen glomerulopathy in this mouse model, but the mechanism of the sclerotic collagen accumulation within the renal mesangium remains unclear. The recent demonstration of the resistance of homotrimeric type I collagen to cleavage by matrix metalloproteinases (MMPs), led us to investigate the role of MMP-resistance in the glomerulosclerosis of Col1a2-deficient mice. We measured the pre- and post-translational expression of type I collagen and MMPs in glomeruli from heterozygous and homozygous animals. Both the heterotrimeric and homotrimeric isotypes of type I collagen were equally present in whole kidneys of heterozygous mice by immunohistochemistry and biochemical analysis, but the sclerotic glomerular collagen was at least 95-98% homotrimeric, suggesting homotrimeric type I collagen is the pathogenic isotype of type I collagen in glomerular disease. Although steady-state MMP and Col1a1 mRNA levels increased with the disease progression, we found these changes to be a secondary response to the deficient clearance of MMP-resistant homotrimers. Increased renal MMP expression was not sufficient to prevent homotrimeric type I collagen accumulation.

文献信息
期刊
Molecular genetics and metabolism
期刊简称
Mol Genet Metab
发表日期
2012-02-28
收录日期
2011-10-31
更新日期
2016-10-19
语言
英语
国家/地区
United States
NLM ID
9805456
分析服务
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