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Tissue-specific expression of Cas9 has no impact on whole-body metabolism in four transgenic mouse lines

机译:Cas9的组织特异性表达对四种转基因小鼠线的全身代谢没有影响

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Objective CRISPR/Cas9 technology has revolutionized gene editing and fast tracked our capacity to manipulate genes of interest for the benefit of both research and therapeutic applications. Whilst many advances have, and continue to be made in this area, perhaps the most utilized technology to date has been the generation of knockout cells, tissues and animals. The advantages of this technology are many fold, however some questions still remain regarding the effects that long term expression of foreign proteins such as Cas9, have on mammalian cell function. Several studies have proposed that chronic overexpression of Cas9, with or without its accompanying guide RNAs, may have deleterious effects on cell function and health. This is of particular concern when applying this technology in vivo, where chronic expression of Cas9 in tissues of interest may promote disease-like phenotypes and thus confound the investigation of the effects of the gene of interest. Although these concerns remain valid, no study to our knowledge has yet to demonstrate this directly. Methods In this study we used the lox-stop-lox (LSL) spCas9 ROSA26 transgenic (Tg) mouse line to generate four tissue-specific Cas9-Tg models that express Cas9 in the heart, liver, skeletal muscle or adipose tissue. We performed comprehensive phenotyping of these mice up to 20-weeks of age and subsequently performed molecular analysis of their organs. Results We demonstrate that Cas9 expression in these tissues had no detrimental effect on whole body health of the animals, nor did it induce any tissue-specific effects on whole body energy metabolism, liver health, inflammation, fibrosis, heart function or muscle mass. Conclusions Our data suggests that these models are suitable for studying the tissue specific effects of gene deletion using the LSL-Cas9-Tg model, and that phenotypes observed utilizing these models can be confidently interpreted as being gene specific, and not confounded by the chronic overexpression of Cas9.
机译:客观CRISPR / CAS9技术已经彻底改变了基因编辑和快速跟踪我们操纵感兴趣基因的能力,以便为研究和治疗应用提供利益。虽然许多进展,并且在这一领域继续进行,但可能是迄今为止最具利用的技术一直是敲除细胞,组织和动物的产生。该技术的优点是许多折叠,然而一些问题仍然存在关于外国蛋白质如Cas9,如Cas9,对哺乳动物细胞功能的影响。一些研究提出,Cas9的慢性过表达,有或没有伴随导向RNA,可能对细胞功能和健康产生有害影响。当在体内应用这种技术时,这是特别关注的,其中Cas9在感兴趣的组织中的Cas9的慢性表达可以促进疾病的表型,从而混淆对感兴趣基因的影响的调查。虽然这些问题仍然有效,但对我们的知识没有研究尚未直接证明这一点。该研究的方法我们使用了LOX-STOP-LOX(LSL)SPCAS9 ROSA26转基因(TG)鼠标线来产生四种组织特异性CAS9-TG模型,其表达心脏,肝脏,骨骼肌或脂肪组织中的CAS9。我们对这些小鼠进行了全面的表型,最多20周龄,随后对其器官进行了分子分析。结果我们证明,这些组织中的Cas9表达对动物的全身健康没有不利影响,也没有诱导全身能量代谢,肝脏健康,炎症,纤维化,心脏功能或肌肉质量的任何组织特异性效果。结论我们的数据表明,这些模型适用于使用LSL-CAS9-TG模型研究基因缺失的组织特异性效果,并且利用这些模型观察到的表型可以被自信地解释为特异性的基因,而不是被慢性过度表达的基因诱惑Cas9。

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