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首页> 外文期刊>Journal of the American Society of Nephrology: JASN >Loss of {alpha}3/{alpha}4(IV) Collagen from the Glomerular Basement Membrane Induces a Strain-Dependent Isoform Switch to {alpha}5{alpha}6(IV) Collagen Associated with Longer Renal Survival in Col4a3-/- Alport Mice.
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Loss of {alpha}3/{alpha}4(IV) Collagen from the Glomerular Basement Membrane Induces a Strain-Dependent Isoform Switch to {alpha}5{alpha}6(IV) Collagen Associated with Longer Renal Survival in Col4a3-/- Alport Mice.

机译:肾小球基底膜丧失{alpha} 3 / {alpha} 4(IV)胶原蛋白导致应变依赖性同工型转换为与Col4a3-/-中更长的肾脏存活率相关的{alpha} 5 {alpha} 6(IV)胶原蛋白。 Alport老鼠。

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Mutations in COL4A3/4/5 genes that affect the normal assembly of the alpha3/4/5(IV) collagen network in the glomerular basement membrane (GBM) cause Alport syndrome. Patients progress to renal failure at variable rates that are determined by the underlying mutation and putative modifier genes. Col4a3(-/-) mice, a model for autosomal recessive Alport syndrome, progress to renal failure significantly slower on the C57BL/6 than on the 129X1/Sv background. Reported here is a novel strain-specific alternative collagen IV isoform switch that is associated with the differential renal survival in Col4a3(-/-) Alport mice. The downregulation or the absence of alpha3/4(IV) collagen chains in the GBM of Lmx1b(-/-) and Col4a3(-/-) mice was found to induce ectopic deposition of alpha5/6(IV) collagen. The GBM deposition of alpha5/6(IV) collagen was abundant in C57BL/6 Col4a3(-/-) mice but almost undetectable in 129X1/Sv Col4a3(-/-) mice. This strain difference was due to overall low expression of alpha6(IV) chain andalpha5/6(IV) protomers in the tissues of 129X1/SvJ mice, a natural Col4a6 knockdown. In (129 x B6)F1 Col4a3(-/-) mice, the amount of alpha5/6(IV) collagen in the GBM was inherited in a mother-to-son manner, suggesting that it is controlled by one or more X-linked loci, possibly Col4a6 itself. Importantly, high levels of ectopic alpha5/6(IV) collagen in the GBM were associated with approximately 46% longer renal survival. These findings suggest that alpha5/6(IV) collagen, the biologic role of which has been hitherto unknown, may partially substitute for alpha3/4/5(IV) collagen. Therapeutically induced GBM deposition of alpha5/6(IV) collagen may provide a novel strategy for delaying renal failure in patients with autosomal recessive Alport syndrome.
机译:影响肾小球基底膜(GBM)中alpha3 / 4/5(IV)胶原网络正常组装的COL4A3 / 4/5基因突变会导致Alport综合征。患者以可变速率进展为肾衰竭,该速率由基础突变和推定的修饰基因决定。 Col4a3(-/-)小鼠是常染色体隐性隐性Alport综合征的模型,C57BL / 6的肾衰竭进展明显比129X1 / Sv背景慢。本文报道的是一种新的菌株特异性替代胶原IV同工型开关,与Col4a3(-/-)Alport小鼠的肾脏存活差异有关。 Lmx1b(-/-)和Col4a3(-/-)小鼠的GBM中的下调或不存在alpha3 / 4(IV)胶原蛋白链被诱导诱导异位沉积alpha5 / 6(IV)胶原蛋白。在C57BL / 6 Col4a3(-/-)小鼠中,alpha5 / 6(IV)胶原的GBM沉积丰富,但在129X1 / Sv Col4a3(-/-)小鼠中几乎无法检测到。这种株系差异是由于129X1 / SvJ小鼠(自然的Col4a6基因敲除)组织中的alpha6(IV)链和alpha5 / 6(IV)启动子总体低表达所致。在(129 x B6)F1 Col4a3(-/-)小鼠中,GBM中的alpha5 / 6(IV)胶原蛋白以母子关系遗传,表明它受一个或多个X-连锁基因座,可能是Col4a6本身。重要的是,GBM中高水平的异位alpha5 / 6(IV)胶原蛋白与大约46%的肾脏存活时间有关。这些发现表明,迄今还不清楚其生物学作用的α5/ 6(IV)胶原蛋白,可能部分替代α3/ 4/5(IV)胶原蛋白。治疗性诱导的GB5沉积的α5/ 6(IV)胶原蛋白可能为延迟常染色体隐性遗传性Alport综合征患者的肾衰竭提供新的策略。

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