首页> 外文期刊>American Journal of Physiology >Quantitative trait loci for carbohydrate and total energy intake on mouse chromosome 17: congenic strain confirmation and candidate gene analyses (Glo1, Glp1r).
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Quantitative trait loci for carbohydrate and total energy intake on mouse chromosome 17: congenic strain confirmation and candidate gene analyses (Glo1, Glp1r).

机译:小鼠17号染色​​体上碳水化合物和总能量摄入的定量性状基因座:同系品系确认和候选基因分析(Glo1,Glp1r)。

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摘要

Quantitative trait loci (QTL) for carbohydrate (Mnic1) and total energy (Kcal2) intake on proximal mouse chromosome 17 were identified previously from a C57BL/6J (B6) X CAST/Ei (CAST) intercross. Here we report that a new congenic strain developed in our laboratory has confirmed this complex locus by recapitulating the original linked phenotypes: B6.CAST-17 homozygous congenic mice consumed more carbohydrate (27%) and total energy (17%) compared with littermate wild-type mice. Positional gene candidates with relevance to carbohydrate metabolism, glyoxalase I (Glo1) and glucagon-like peptide-1 receptor (Glp1r), were evaluated. Glo1 expression was upregulated in liver and hypothalamus of congenic mice when compared with B6 mice. Analyses of Glp1r mRNA and protein expression revealed tissue-specific strain differences in pancreas (congenic>B6) and stomach (B6>congenic). These results suggest the possibility of separate mechanisms for enhanced insulin synthesis and gastric accommodation in the presence of high carbohydrate intake and larger food volume, respectively. Sequence analysis of Glp1r found a G insert at nt position 1349, which results in earlier termination of the open reading frame, thus revealing an error in the public sequence. Consequently, the predicted length of GLP-1R is 463 aa compared with 489 aa, as previously reported. Also, we found a polymorphism in Glp1r between parental strains that alters the amino acid sequence. Variation in Glp1r could influence nutrient intake in this model through changes in the regulatory or protein coding regions of the gene. These congenic mice offer a powerful tool for investigating gene interactions in the control of food intake.
机译:先前通过C57BL / 6J(B6)X CAST / Ei(CAST)交叉鉴定了近端小鼠17号染色​​体上碳水化合物(Mnic1)和总能量(Kcal2)摄入的定量性状位点(QTL)。在这里,我们报告说,在我们实验室中开发的一种新的同系品系通过概括原始链接的表型已证实了这一复杂的基因座:与同窝野生的相比,B6.CAST-17纯合子同系小鼠消耗的碳水化合物(27%)和总能量(17%)更多型小鼠。评估与碳水化合物代谢相关的位置基因候选者,乙二醛酶I(Glo1)和胰高血糖素样肽1受体(Glp1r)。与B6小鼠相比,同基因小鼠肝脏和下丘脑中的Glo1表达上调。 Glp1r mRNA和蛋白表达的分析显示胰腺(同基因> B6)和胃(B6>同基因)的组织特异性菌株差异。这些结果表明在高碳水化合物摄入和较大食物量的情况下,分别增强胰岛素合​​成和改善胃部适应能力的单独机制的可能性。 Glp1r的序列分析在1349位核苷酸处发现了一个G插入片段,这导致开放阅读框的更早终止,从而揭示了公共序列中的错误。因此,GLP-1R的预测长度为463 aa,而之前为489 aa。此外,我们发现亲本菌株之间的Glp1r多态性会改变氨基酸序列。在该模型中,Glp1r的变异可能通过基因的调控区或蛋白质编码区的变化而影响营养摄入。这些同类小鼠为研究控制食物摄入中的基因相互作用提供了强大的工具。

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