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源自自发性高血压大鼠(SHR)的多指同源近交亚系大鼠8号染色体上的一个14个基因的区域会影响肌肉特异性胰岛素抵抗、血脂异常和内脏肥胖。

A 14-gene region of rat chromosome 8 in SHR-derived polydactylous congenic substrain affects muscle-specific insulin resistance, dyslipidaemia and visceral adiposity.

作者信息

Seda O, Liska F, Sedová L, Kazdová L, Krenová D, Kren V

机构信息

Institute of Biology and Medical Genetics, First Faculty of Medicine, Charles University, Prague, Czech Republic.

出版信息

Folia Biol (Praha). 2005;51(3):53-61.

Abstract

The SHR and the PD/Cub are two established rodent models of human metabolic syndrome. Introgression of a ca 30 cM region of rat chromosome 8 from PD/Cub onto the genetic background of SHR was previously shown to influence several of the metabolic syndrome-related traits along with causing the PLS in the SHR-Lx congenic strain. In the process of identification of the causative alleles, we have produced several congenic sublines. The differential segment of SHR-Lx PD5 congenic substrain [SHR.PD(D8Rat42-D8Arb23)/Cub] spans approximately 1.4 Mb encompassing only 14 genes. When comparing the metabolic, morphometric and gene expression profiles of the SHR-Lx PD5 vs. SHR, the polydactyly and several distinct metabolic features observed in the original SHR-Lx congenic were still manifested, suggesting that the responsible genes were "trapped" within the relatively short differential segment of PD/Cub origin in SHR-Lx PD5. Particularly, the SHR-Lx PD5 displayed substantial reduction of insulin sensitivity confined to skeletal muscle. Among the candidate genes, the promyelocytic leukaemia zinc-finger Plzf (Zbtb16) transcription repressor is most likely responsible for the Lx mutation resulting in PLS and could also be involved in the alteration of metabolic pathways. The sequence analysis of the Plzf gene revealed a SNP leading to a threonine to serine substitution in SHR at aminoacid position 208 (T208S). In summary, we have isolated a 1.4 Mb genomic region syntenic to human chromosome 11q23, which, apart from causing polydactyly-luxate syndrome (PLS), affects total body weight, adiposity, lipid profile, insulin sensitivity of skeletal muscle and related gene expression as shown in the SHR-Lx PD5 congenic substrain.

摘要

SHR和PD/Cub是两种已确立的人类代谢综合征啮齿动物模型。先前研究表明,将大鼠8号染色体上约30 cM的区域从PD/Cub导入SHR的遗传背景中,会影响一些与代谢综合征相关的性状,并导致SHR-Lx同源近交系出现多指-关节脱位(PLS)。在鉴定致病等位基因的过程中,我们产生了几个同源亚系。SHR-Lx PD5同源亚系[SHR.PD(D8Rat42-D8Arb23)/Cub]的差异片段约为1.4 Mb,仅包含14个基因。比较SHR-Lx PD5和SHR的代谢、形态测量和基因表达谱时,原始SHR-Lx同源近交系中观察到的多指畸形和几个明显的代谢特征仍然存在,这表明相关基因“被困”在SHR-Lx PD5中源自PD/Cub的相对较短的差异片段内。特别是,SHR-Lx PD5显示出仅限于骨骼肌的胰岛素敏感性大幅降低。在候选基因中,早幼粒细胞白血病锌指蛋白Plzf(Zbtb16)转录抑制因子最有可能是导致Lx突变从而引起PLS的原因,并且也可能参与代谢途径的改变。Plzf基因的序列分析揭示了一个单核苷酸多态性,导致SHR中第208位氨基酸由苏氨酸替换为丝氨酸(T208S)。总之,我们分离出了一个与人类11号染色体q23同线的1.4 Mb基因组区域,如SHR-Lx PD5同源亚系所示,该区域除了导致多指-关节脱位综合征(PLS)外,还影响总体重、肥胖、血脂谱、骨骼肌胰岛素敏感性及相关基因表达。

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