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2
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3
Quantitative trait loci for urinary albumin in crosses between C57BL/6J and A/J inbred mice in the presence and absence of Apoe.在有和没有载脂蛋白E(Apoe)的情况下,C57BL/6J和A/J近交系小鼠杂交后代中尿白蛋白的数量性状位点
Genetics. 2008 May;179(1):693-9. doi: 10.1534/genetics.107.085142.
4
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Mapping diabetes QTL in an intercross derived from a congenic strain of the Brown Norway and Goto-Kakizaki rats.在由近交系棕色挪威大鼠和五岛崎大鼠杂交衍生的杂交群体中定位糖尿病数量性状基因座。
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与瘦素受体无关的基因影响肥胖 Zucker 大鼠的尿白蛋白排泄。

Genes unlinked to the leptin receptor influence urinary albumin excretion in obese Zucker rats.

机构信息

Rowe Program in Genetics.

出版信息

Physiol Genomics. 2010 May;41(3):297-305. doi: 10.1152/physiolgenomics.90367.2008. Epub 2010 Feb 16.

DOI:10.1152/physiolgenomics.90367.2008
PMID:20159938
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2869106/
Abstract

We have previously shown that 90% of outbred obese Zucker Lepr(fa/fa) rats die prematurely of renal disease. Thus, renal disease in obese Zucker Lepr(fa/fa) rats may be caused by the LEPR mutation on chromosome 5, by the obesity, or it may be influenced by Zucker susceptibility alleles of genes on other chromosomes. We have searched for susceptibility genes on other chromosomes using urinary albumin excretion (UAE) as an early indicator of altered renal function in a backcross of (Brown Norway × inbred Zucker) F1 × inbred Zucker, which we name the BZZ cross. We killed 237 BZZ backcross animals at 15 wk of age. All included animals were homozygous for the fatty mutation of LEPR and were obese. Urinary creatinine measurements were used to calculate the albumin-to-creatinine ratio (ACR). We identified direct effect quantitative trait loci (QTLs) for UAE and ACR on chromosome 1 (LOD scores = 3.6 and 2.86, respectively) in males, and chromosome 4 (LOD score = 2.9) in females. Significant QTLs were identified for left kidney weight for females on chromosomes 3 and 12. We also demonstrated that kidneys from 15 wk old obese inbred Zucker rats already show evidence of kidney pathology: tubular dilation, proteinaceous fluid accumulation, evidence for inflammation, and mild mesangial and tubular membrane basement membrane thickening. Both lean Zucker rats and the Brown Norway rats showed no evidence for these changes. Thus, by removing the influence of the Lepr(fa/fa) mutation from analysis we have identified UAE QTLs unlinked to LEPR.

摘要

我们之前已经表明,90%的近交肥胖 Zucker Lepr(fa/fa) 大鼠会因肾脏疾病而过早死亡。因此,肥胖 Zucker Lepr(fa/fa) 大鼠的肾脏疾病可能是由第 5 号染色体上的 LEPR 突变引起的,也可能是由肥胖引起的,也可能受到其他染色体上 Zucker 易感性基因的影响。我们使用尿白蛋白排泄 (UAE) 作为肾功能改变的早期指标,在 (Brown Norway × 近交 Zucker) F1 × 近交 Zucker 的回交中搜索其他染色体上的易感性基因,我们将其命名为 BZZ 杂交。我们在 15 周龄时杀死了 237 只 BZZ 回交动物。所有包含的动物均为 LEPR 脂肪突变的纯合子并且肥胖。尿肌酐测量用于计算白蛋白与肌酐的比值 (ACR)。我们在雄性中确定了 UAE 和 ACR 的直接效应数量性状基因座 (QTL) 位于第 1 号染色体 (LOD 分数分别为 3.6 和 2.86),在雌性中位于第 4 号染色体 (LOD 分数为 2.9)。在雌性中,第 3 号和第 12 号染色体上鉴定出左肾重量的显著 QTL。我们还证明,15 周龄肥胖近交 Zucker 大鼠的肾脏已经出现肾脏病理学证据:管状扩张、蛋白性液体积聚、炎症证据以及轻度系膜和管状膜基底膜增厚。瘦 Zucker 大鼠和 Brown Norway 大鼠均未显示出这些变化的证据。因此,通过从分析中去除 Lepr(fa/fa) 突变的影响,我们已经确定了与 LEPR 不相关的 UAE QTL。