Development of an IGF1R longevity variant mouse line using CRISPR/Cas9 genome editing.

Trends in biomedical research Pub Date : 2020-12-01 Epub Date: 2020-10-08 DOI:10.15761/jtbr.1000121
Yan Dou, Martin Darvas, Kavita Sharma, Julie Mathieu, John Morton, Heidi Tan, Carolina Soto-Palma, Luise A Angelini, Sara J McGowan, Laura J Niedernhofer, Yousin Suh, Paul D Robbins, Nir Barzilai, Warren C Ladiges
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Abstract

An insulin-like growth factor-1 receptor (IGF1R) variant in exon 6 (Arg-407-His) in Ashkenazi Jewish centenarians was previously found to be associated with reduced IGF1R activity. To further study this longevity associated IGF1R variant, we generated a novel mouse line carrying the R407H variant in exon 6 of the Igf1r gene by employing CRISPR/Cas9 genome editing technology. Here, we show that the Igf1r gene can be edited in mouse embryos by zygotic electroporation of Cas9 protein and a single-guide RNAs together with a single stranded oligonucleotide donor containing the desired key nucleotide changes at the Igf1r locus. Sequence analysis of F0 and F1 mice following targeted editing demonstrated the robustness of this approach in mice using CRISPR/Cas9 directed homologous recombination (HDR). Western blot analysis indicates that mice heterozygous for the variant have a significant decrease in IGF1R phosphorylation in various tissues, including skeletal muscle, compared to wildtype. In addition, depletion of IGF1R signaling specifically in skeletal muscle of progeroid Ercc1 -/Δ mice resulted in extended health span and median lifespan providing the rationale for long term lifespan studies in Igf1r hR407H variant mice. This mouse line will be a valuable genetic tool to help determine the impact of IGF1R signaling on aging and longevity. The CRISPR editing approach represents a prototype for generating additional longevity associated gene variant mouse lines to study relevance to human exceptional longevity.

Abstract Image

Abstract Image

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利用 CRISPR/Cas9 基因组编辑技术开发 IGF1R 长寿变异小鼠品系。
以前曾发现阿什肯纳兹犹太百岁老人的胰岛素样生长因子-1受体(IGF1R)第6外显子(Arg-407-His)变异与IGF1R活性降低有关。为了进一步研究这种与长寿相关的 IGF1R 变异,我们采用 CRISPR/Cas9 基因组编辑技术,产生了一种携带 Igf1r 基因第 6 外显子 R407H 变异的新型小鼠品系。在这里,我们展示了通过将 Cas9 蛋白和单导 RNA 与含有 Igf1r 基因座关键核苷酸变化的单链寡核苷酸供体一起进行子代电穿孔,可以在小鼠胚胎中编辑 Igf1r 基因。对定向编辑后的F0和F1小鼠进行的序列分析表明,这种方法在使用CRISPR/Cas9定向同源重组(HDR)的小鼠中具有稳健性。Western印迹分析表明,与野生型相比,变异体杂合的小鼠在各种组织(包括骨骼肌)中的IGF1R磷酸化显著降低。此外,对早衰型 Ercc1 -/Δ 小鼠骨骼肌中的 IGF1R 信号转导进行特异性清除可延长健康寿命和中位寿命,这为 Igf1r hR407H 变异小鼠的长期寿命研究提供了依据。该小鼠品系将成为一种宝贵的遗传工具,有助于确定 IGF1R 信号转导对衰老和寿命的影响。CRISPR 编辑方法是产生更多长寿相关基因变异小鼠品系的原型,以研究与人类超常寿命的相关性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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