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横纹肌球蛋白重链基因是太平洋牡蛎幼虫肌发生的关键调节因子。

Striated myosin heavy chain gene is a crucial regulator of larval myogenesis in the pacific oyster Crassostrea gigas.

机构信息

Key Laboratory of Mariculture, Ministry of Education, Ocean University of China, Qingdao 266003, China.

Key Laboratory of Mariculture, Ministry of Education, Ocean University of China, Qingdao 266003, China; Laboratory for Marine Fisheries Science and Food Production Processes, Qingdao National Laboratory for Marine Science and Technology, Qingdao 266237, China.

出版信息

Int J Biol Macromol. 2021 May 15;179:388-397. doi: 10.1016/j.ijbiomac.2021.03.022. Epub 2021 Mar 6.

Abstract

Pacific oyster (Crassostrea gigas), the most productive economical bivalve mollusc, is identified as an attractive model for developmental studies due to its classical mosaic developmental pattern. Myosin heavy chain is a structural and functional component of myosin, the key muscle protein of thick filament. Here, full length cDNA of striated myosin heavy chains in C. gigas (CgSmhc) was obtained, and the expression profiles were examined in different development stage. CgSmhc had a high expression level in trochophore and D-shaped stage during embryo-larval stage. In adult, CgSmhc was a muscle-specific gene and primarily expressed in muscle tissues. Then, activity of 5' flanking region of CgSmhc were examined through an reconstructed EGFP vector. The results indicated that 3098 bp 5'-flanking region of CgSmhc owned various conserved binding sites of myogenesis-related regulatory elements, and the 2000 bp 5'-flanking sequence was sufficient to induce the CgSmhc expression. Subsequently, the CRISPR/Cas9-mediated target disruption of CgSmhc was generated by co-injection of Cas9mRNA and CgSmhc-sgRNAs into one-cell stage embryos of C. gigas. Loss of CgSmhc had a visible effect on the sarcomeric organization of thin filaments in larval musculature, indicating that CgSmhc was required during larval myogenesis to regulate the correct assembly of sarcomere.

摘要

太平洋牡蛎(Crassostrea gigas)是最具生产力的经济双壳贝类,因其经典的镶嵌式发育模式而被确定为发育研究的有吸引力的模型。肌球蛋白重链是肌球蛋白的结构和功能组成部分,肌球蛋白是粗丝的关键肌肉蛋白。在这里,获得了太平洋牡蛎横纹肌球蛋白重链(CgSmhc)的全长 cDNA,并在不同发育阶段检查了其表达谱。在胚胎-幼虫阶段,CgSmhc 在担轮幼虫和 D 形期具有高表达水平。在成体中,CgSmhc 是一种肌肉特异性基因,主要在肌肉组织中表达。然后,通过重建的 EGFP 载体检查 CgSmhc 5'侧翼区的活性。结果表明,CgSmhc 的 3098bp 5'-侧翼区拥有各种与肌发生相关的调节元件的保守结合位点,2000bp 5'-侧翼序列足以诱导 CgSmhc 表达。随后,通过将 Cas9mRNA 和 CgSmhc-sgRNAs 共注射到太平洋牡蛎的单细胞期胚胎中,生成了 CgSmhc 的 CRISPR/Cas9 介导的靶向缺失。CgSmhc 的缺失对幼虫肌肉中的细肌丝肌节组织有明显影响,表明 CgSmhc 在幼虫肌发生过程中对于调节肌节的正确组装是必需的。

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