Porcine myogenesis in cloned wildtype and MYF5/MYOD/MYF6-null porcine embryo.

IF 5.1 1区 生物学 Q1 BIOLOGY Communications Biology Pub Date : 2025-02-11 DOI:10.1038/s42003-025-07648-1
Yong-Ho Choe, Satyabrata Das, Xiao Ma, Hyeonjeong Lee, Jacob R Sorensen, Daniel B Hoffman, Chan-Hee Jo, Casey P Johnson, Nicolette Cassel, Daniel J Garry, Sarah M Greising, Mary G Garry
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Abstract

The pig is an important animal model increasingly used for biomedical research, particularly in transplantation strategies involving xenotransplantation or the development of human organs in pig for exotransplantation. Pigs, however, are less characterized than other animal models. In this study, we produced wildtype (WT) pig embryos via somatic cell nuclear transfer (SCNT) technology and compared them to skeletal muscle null embryos (lacking MYF5/MYOD/MYF6) at embryonic day 41, 62, and 90, critical stages of porcine myogenesis. Magnetic resonance imaging (MRI) and histological analyses revealed progressive development of skeletal muscle in WT embryos but not in null embryos whereas development of viscera progressed equally in both groups. Molecular analyses highlighted dynamic changes in myogenic gene expression and myofiber formation, demonstrating an organized progression of myogenesis in WT embryos. Morphologically, the null embryos exhibited abnormalities, including marked edema and underdeveloped limbs. MRI revealed severe skeletal abnormalities, including the absence of ribs, sternum, and associated vertebral malformations. In addition, histological analysis confirmed the complete lack of myofiber formation. Immunohistochemical analysis revealed the absence of myogenic stem cells and muscle differentiation, and RNA sequencing demonstrated that the skeletal muscle development process was entirely disrupted in null embryos. Additionally, analysis of neuromuscular junctions (NMJs) in the null embryos revealed that functional NMJ formation was absent, consistent with the lack of skeletal muscle formation. Importantly, these defects culminated in embryonic lethality after day 62 in the null embryos. We determined that the myogenic regulatory gene cascade is crucial for porcine embryo development and viability. The deletion of skeletal muscle is essential for the creating a vacant niche to allow for complementation of null porcine embryos with human induced pluripotent stem cells. Characterization of this skeletal muscle null pig model provide an important platform for engineering humanized muscle in gene-edited pigs.

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克隆野生型和MYF5/MYOD/ myf6缺失猪胚胎的肌肉发生。
猪是一种重要的动物模型,越来越多地用于生物医学研究,特别是涉及异种移植或人类器官在猪体内发育用于外移植的移植策略。然而,与其他动物模型相比,猪的特征较少。在这项研究中,我们通过体细胞核移植(SCNT)技术制备了野生型(WT)猪胚胎,并在胚胎第41、62和90天(猪肌肉形成的关键阶段)将其与骨骼肌无胚(缺乏MYF5/MYOD/MYF6)进行了比较。磁共振成像(MRI)和组织学分析显示,WT胚胎骨骼肌的发育是渐进式的,而空胚则没有,而两组的内脏发育是相同的。分子分析强调了肌生成基因表达和肌纤维形成的动态变化,证明了WT胚胎中肌发生的有组织进展。形态学上,空胚表现出异常,包括明显的水肿和四肢发育不全。MRI显示严重的骨骼异常,包括肋骨、胸骨缺失和相关的椎体畸形。此外,组织学分析证实完全缺乏肌纤维形成。免疫组织化学分析显示,没有肌源性干细胞和肌肉分化,RNA测序表明,在空胚中,骨骼肌的发育过程完全中断。此外,null胚胎中神经肌肉连接(NMJs)的分析显示,功能性NMJ的形成缺失,与骨骼肌形成的缺失一致。重要的是,这些缺陷在第62天的胚胎死亡中达到顶峰。我们确定了肌生成调控基因级联对猪胚胎发育和生存能力至关重要。骨骼肌的缺失对于创造一个空缺的生态位是必不可少的,以便将猪胚胎与人类诱导的多能干细胞进行互补。该骨骼肌缺失猪模型的表征为基因编辑猪的人源化肌肉工程提供了重要平台。
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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来源期刊
Communications Biology
Communications Biology Medicine-Medicine (miscellaneous)
CiteScore
8.60
自引率
1.70%
发文量
1233
审稿时长
13 weeks
期刊介绍: Communications Biology is an open access journal from Nature Research publishing high-quality research, reviews and commentary in all areas of the biological sciences. Research papers published by the journal represent significant advances bringing new biological insight to a specialized area of research.
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