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Functional analysis of thyroid hormone receptor beta in Xenopus tropicalis founders using CRISPR-Cas

机译:使用CRISPR-Cas对热带非洲爪蟾创始人的甲状腺激素受体β进行功能分析

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Amphibians provide an ideal model to study the actions of thyroid hormone (TH) in animal development because TH signaling via two TH receptors, TRα and TRβ, is indispensable for amphibian metamorphosis. However, specific roles for the TRβ isoform in metamorphosis are poorly understood. To address this issue, we generatedtrβ-disruptedXenopus tropicalistadpoles using the CRISPR-Cas system.We first established a highly efficient and rapid workflow for gene disruption in the founder generation (F0) by injecting sgRNA and Cas9 ribonucleoprotein. Most embryos showed severe mutant phenotypes carrying high somatic mutation rates. Utilizing this founder analysis system, we examined the role oftrβin metamorphosis.trβ-disrupted pre-metamorphic tadpoles exhibited mixed responsiveness to exogenous TH. Specifically, gill resorption and activation of several TH-response genes, includingtrβitself and two protease genes, were impaired. However, hind limb outgrowth and induction of the TH-response genes,klf9andfra-2, were not affected by loss oftrβ. Surprisingly,trβ-disrupted tadpoles were able to undergo spontaneous metamorphosis normally, except for a slight delay in tail resorption. These results indicate TRβ is not required but contributes to the timing of resorptive events of metamorphosis.
机译:两栖动物为研究甲状腺激素(TH)在动物发育中的作用提供了理想的模型,因为通过两个TH受体TRα和TRβ传递的TH信号对于两栖动物的变态是必不可少的。然而,对于TRβ同工型在变态中的特定作用了解甚少。为了解决这个问题,我们使用CRISPR-Cas系统生成了被trβ破坏的非洲爪蟾。我们首先通过注入sgRNA和Cas9核糖核酸蛋白建立了一个快速,高效的工作流程,以破坏创始代(F0)中的基因。大多数胚胎表现出携带高体细胞突变率的严重突变表型。利用该创始人分析系统,我们研究了trβ在变态中的作用。trβ破坏的前变态t对外源TH表现出混合反应。具体而言,g的吸收和激活几个TH反应基因,包括trβitself和两个蛋白酶基因受到损害。然而,trβ的丢失并没有影响后肢的生长和TH反应基因klf9和fra-2的诱导。出人意料的是,除了尾巴吸收略微延迟外,trβ破坏的t能够正常地自发变态。这些结果表明TRβ不是必需的,但有助于变态的再吸收事件的时间。

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