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BSB小鼠的肥胖与铁稳态和瘦素相关基因的表达有关。

Obesity in BSB mice is correlated with expression of genes for iron homeostasis and leptin.

作者信息

Farahani Poupak, Chiu Sally, Bowlus Christopher L, Boffelli Dario, Lee Eric, Fisler Janis S, Krauss Ronald M, Warden Craig H

机构信息

Rowe Program in Genetics, University of California, Davis, California 95616, USA.

出版信息

Obes Res. 2004 Feb;12(2):191-204. doi: 10.1038/oby.2004.26.

Abstract

OBJECTIVE

We searched for genes whose alleles cause obesity and novel pathways correlated with obesity.

RESEARCH METHODS AND PROCEDURES

BSB mice are a model of complex obesity due to interactions among genes from C57BL/6J (B) and Mus spretus (SPRET) in (B x SPRET) x B backcross mice. Stringent criteria identified 50 genes differentially expressed in epididymal adipose tissue from 7 pairs of lean vs. obese BSB mice. Quantitative reverse transcription-polymerase chain reaction of adipose tissue RNA from 48 BSB mice with a range of obesity was assayed. Leptin was evaluated in inbred (SPRET/Ei) and outbred (SPRET/Pt) BSB mice.

RESULTS

Leptin (Lep) and adipsin expressions had the greatest fold differences between obese and lean mice. Four genes involved in iron homeostasis were included in the 50 differentially expressed genes [hemochromatosis (Hfe), diaphorase 1, transferrin receptor (Trfr) 2, and protoporphyrinogen oxidase] and two additional iron-related genes did not quite meet the stringent criteria for differential expression (Trfr and lactotransferrin). Hfe and Trfr mRNA levels and liver iron were negatively correlated with fat mass. Variation in obesity phenotypes explained 49%, 40%, and 37%, respectively, of the variance in Hfe, Lep, and Trfr mRNA levels. Leptin differed by haplotype at the Lep locus in outbred BSB. The quantitative trait locus identified in the outbred cross did not occur in inbred BSB.

DISCUSSION

Our results suggest that iron homeostasis in BSB mice is coordinately regulated in vivo in adipose depots in response to obesity. Lep alleles derived from outbred, but not inbred, SPRET are a positional candidate for the chromosome 6 quantitative trait locus in BSB mice.

摘要

目的

我们寻找其等位基因导致肥胖的基因以及与肥胖相关的新途径。

研究方法与步骤

BSB小鼠是一种复杂肥胖模型,源于(C57BL/6J(B)和小家鼠(SPRET)的基因在(B×SPRET)×B回交小鼠中的相互作用。严格标准确定了在7对瘦型与肥胖型BSB小鼠的附睾脂肪组织中差异表达的50个基因。对48只具有不同肥胖程度的BSB小鼠的脂肪组织RNA进行了定量逆转录聚合酶链反应分析。在近交(SPRET/Ei)和远交(SPRET/Pt)的BSB小鼠中评估了瘦素。

结果

肥胖小鼠与瘦小鼠之间,瘦素(Lep)和脂肪酶的表达具有最大的倍数差异。50个差异表达基因中包括4个参与铁稳态的基因[血色素沉着症(Hfe)、黄递酶1、转铁蛋白受体(Trfr)2和原卟啉原氧化酶],另外2个与铁相关的基因不完全符合差异表达的严格标准(Trfr和乳铁传递蛋白)。Hfe和Trfr的mRNA水平以及肝脏铁含量与脂肪量呈负相关。肥胖表型的变异分别解释了Hfe、Lep和Trfr mRNA水平变异的49%、40%和37%。在远交BSB中,瘦素在Lep位点因单倍型而异。在远交杂交中确定的数量性状位点在近交BSB中未出现。

讨论

我们的结果表明,BSB小鼠体内的铁稳态在脂肪库中响应肥胖而受到协调调节。来自远交而非近交SPRET的Lep等位基因是BSB小鼠6号染色体数量性状位点的一个位置候选基因。

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