在柏林肥胖小鼠中,Bbs7基因8内含子中含有ctcf元素的缺失是导致青少年肥胖的部分原因。

Florian Krause, Kourosh Mohebian, Manuel Delpero, Deike Hesse, Ralf Kühn, Danny Arends, Gudrun A Brockmann
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引用次数: 2

摘要

柏林肥胖小鼠近交系(BFMI)是青少年肥胖的模型。先前对BFMI与C57Bl/6N (B6N)杂交的研究发现,在3号染色体上存在导致青少年肥胖的隐性缺陷(jObes1)。Bbs7被确定为最可能的候选基因。比较序列分析显示BFMI小鼠Bbs7的8号内含子缺失1578 bp。ctcf元素位于此删除中。为了研究这种缺失的功能影响,使用CRISPR/Cas9将其引入B6N小鼠。获得两只含有目标缺失的小鼠(B6N Bbs7emI8∆1和Bbs7emI8∆2),随后与BFMI和B6N交配,产生两个适合互补的家族。定量磁共振测定遗传等位基因,测定体组成。发现了CRISPR/Cas9修饰的B6N bs7emi8∆1和bs7emi8∆2等位基因部分互补(13.1-15.1%)的证据。与携带B6N等位基因的小鼠相比,携带互补等位基因的小鼠的脂瘦比高23-27% (P(Bbs7emI8∆1)= 4.25 × 10-7;P(Bbs7emI8∆2)= 3.17 × 10-5)。与先前的研究结果一致,BFMI等位基因对B6N bs7emi8∆1和bs7emi8∆2等位基因也有隐性作用。然而,B6N bs7emi8∆1和bs7emi8∆2等位基因的效应量小于BFMI等位基因,因此仅表现为部分互补。研究结果表明,除了内含子8的缺失外,Bbs7附近还有其他变体或与之相互作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

A deletion containing a CTCF-element in intron 8 of the Bbs7 gene is partially responsible for juvenile obesity in the Berlin Fat Mouse.

A deletion containing a CTCF-element in intron 8 of the Bbs7 gene is partially responsible for juvenile obesity in the Berlin Fat Mouse.

A deletion containing a CTCF-element in intron 8 of the Bbs7 gene is partially responsible for juvenile obesity in the Berlin Fat Mouse.

The Berlin Fat Mouse Inbred (BFMI) line is a model for juvenile obesity. Previous studies on crosses between BFMI and C57Bl/6N (B6N) have identified a recessive defect causing juvenile obesity on chromosome 3 (jObes1). Bbs7 was identified as the most likely candidate gene for the observed effect. Comparative sequence analysis showed a 1578 bp deletion in intron 8 of Bbs7 in BFMI mice. A CTCF-element is located inside this deletion. To investigate the functional effect of this deletion, it was introduced into B6N mice using CRISPR/Cas9. Two mice containing the target deletion were obtained (B6N Bbs7emI8∆1 and Bbs7emI8∆2) and were subsequently mated to BFMI and B6N to generate two families suitable for complementation. Inherited alleles were determined and body composition was measured by quantitative magnetic resonance. Evidence for a partial complementation (13.1-15.1%) of the jObes1 allele by the CRISPR/Cas9 modified B6N Bbs7emI8∆1 and Bbs7emI8∆2 alleles was found. Mice carrying the complementation alleles had a 23-27% higher fat-to-lean ratio compared to animals which have a B6N allele (P(Bbs7emI8∆1) = 4.25 × 10-7; P(Bbs7emI8∆2) = 3.17 × 10-5). Consistent with previous findings, the recessive effect of the BFMI allele was also seen for the B6N Bbs7emI8∆1 and Bbs7emI8∆2 alleles. However, the effect size of the B6N Bbs7emI8∆1 and Bbs7emI8∆2 alleles was smaller than the BFMI allele, and thus showed only a partial complementation. Findings suggest additional variants near Bbs7 in addition to or interacting with the deletion in intron 8.

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