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CRISPR/Cas9-mediated sheep MSTN gene knockout and promote sSMSCs differentiation

机译:CRISPR / CAS9介导的绵羊MSTN基因敲除并促进SSMSCS差异化

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Myostatin (MSTN) is an important gene involved in the regulation of embryonic muscle cells and adult muscle development; it has a good application prospect in transgenic animal production by improving the yield of muscle. The purpose of this study is to construct MSTN gene knockout vector using clustered regularly interspaced short palindromic repeats (CRISPR)/CRISPR-associated protein 9 (Cas9). The knockout efficiency was evaluated in sheep ear fibroblasts (SEFs) by cleavage activity of transcription of guide RNA (gRNA), luciferase-single-strand annealing assay, T7 endonuclease I assay (T7E1), and TA clone sequence (10/38); and above all, detection showed that the cleavage activity of CRISPR/Cas9-mediated MSTN reached 29%. MSTN-Cas9/gRNA4 was transfected into sheep skeletal muscle satellite cell (sSMSC) to confirm the function of MSTN in myotomes formation induced by starvation in low-serum medium. The results showed that myotubes formation efficiency were 11.2 +/- 1.3% and 19.5 +/- 2.1% in the control group and knockout group, respectively. The average length of myotomes was 22 +/- 5.3 and 47 +/- 3.6m, displaying that MSTN knockout can promote sSMSC differentiation in number and length. The unlabeled MSTN-Cas9/gRNA4 was transfected into SEFs and monoclonal positive cells was obtained after 48hours transfection. The MSTN-positive cells were used as donor cells to perform somatic cell nuclear transplantation to produce transgenic sheep. A total of 20 embryos were transplanted into surrogate mothers, four of them normally produce offspring. The genomic DNA of surviving lambs were used as a template, three positive individuals were identified by T7E1 digestion. All the results demonstrated that the CRISPR/Cas9 system has the potential to become an important and applicable gene engineering tool in animal breeding.
机译:Myostatin(MSTN)是参与胚胎肌细胞和成人肌肉发育的调控的重要基因;通过提高肌肉产量,它具有转基因动物生产具有良好的应用前景。本研究的目的是使用聚类定期间隙的短语重复(CRISPR)/ CRISPR相关蛋白质9(CAS9)来构建MSTN基因敲除载体。通过引导RNA(GRNA),荧光素酶 - 单链退火(T7E1)和Ta克隆序列(10/38)的转录,通过切割的转录活性在绵羊耳成纤维细胞(SEFS)中评价敲除效率。最重要的是,检测显示CRISPR / CAS9介导的MSTN的切割活性达到29%。将MSTN-CAS9 / GRNA4转染到绵羊骨骼肌卫星电池(SSMSC)中,以确认MSTN在低血清培养基中饥饿诱导的肌肌瘤形成的功能。结果表明,对照组和淘汰组的肌管形成效率分别为11.2 +/- 1.3%和19.5 +/- 2.1%。肌肌瘤的平均长度为22 +/- 5.3和47 +/- 3.6M,显示MSTN敲除可以促进数量和长度的SSMSC差异。将未标记的MSTN-CAS9 / GRNA4转染到SEF中,在48小时转染后获得单克隆阳性细胞。 MSTN阳性细胞用作供体细胞以进行体细胞核移植以产生转基因绵羊。总共20胚胎移植到替代母亲中,其中四个通常产生后代。将存活的羔羊的基因组DNA用作模板,通过T7E1消化鉴定了三种阳性个体。所有结果表明CRISPR / CAS9系统有可能成为动物育种中重要且适用的基因工程工具。

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