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Quantitative trait loci for proteinuria in the focal glomerulosclerosis mouse model

机译:局灶性肾小球硬化小鼠模型中蛋白尿的定量特征位点

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The FGS/Kist strain of mice, a new animal model for focal glomerulosclerosis (FGS) in humans, was previously established by recurrent selection for high proteinuria, which is a principal marker of FGS, from descendants of CBA/Nga and RFM/Nga strains. We performed a genome-wide scan for quantitative trait loci (QTLs) affecting proteinuria in a population of 356 backcross progeny derived from a cross between FGS/Kist and the standard normal strain, C57BL/6J. Five proteinuria QTLs (Ptnu1-5) were detected at the genome-wide 5% or less level. Ptnu1 and Ptnu2, located on Chromosomes (Chrs) 8 and 17, respectively, had main effects on proteinuria and also interacted epistatically with each other. However, Ptnu3 on Chr 9 and Ptnu4 and Ptnu5 both on Chr 15 had epistatic interaction effects only. Except for the epistatic interaction effect of Ptnu4 and Ptnu5, all alleles derived from FGS/Kist were responsible for the high proteinuria. These results indicated that the genetic control of proteinuria is complex and the identified QTLs may provide new insights into the pathogenesis of FGS in mice as well as in humans.
机译:小鼠FGS / Kist品系是人类局灶性肾小球硬化症(FGS)的新动物模型,以前是通过从CBA / Nga和RFM / Nga品系的后代中反复选择高蛋白尿(FGS的主要标志物)建立的。我们对影响FGS / Kist与标准正常菌株C57BL / 6J杂交的356个回交子代中的蛋白尿进行了全基因组扫描,研究了影响蛋白质尿的定量特征位点(QTL)。在全基因组的5%或更低水平上检测到5个蛋白尿QTL(Ptnu1-5)。 Ptnu1和Ptnu2分别位于染色体(Chrs)8和17上,对蛋白尿有主要作用,并且在上位性相互作用。但是,在Chr 9上的Ptnu3和在Chr 15上的Ptnu4和Ptnu5都仅具有上位性相互作用作用。除Ptnu4和Ptnu5的上位性相互作用作用外,所有源自FGS / Kist的等位基因均与高蛋白尿有关。这些结果表明蛋白尿症的遗传控制是复杂的,确定的QTLs可能为小鼠和人类中FGS的发病机理提供新的见解。

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