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首页> 外文期刊>BMC Developmental Biology >Stable and bicistronic expression of two genes in somite- and lateral plate-derived tissues to study chick limb development
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Stable and bicistronic expression of two genes in somite- and lateral plate-derived tissues to study chick limb development

机译:用于研究鸡肢发育的两个基因在双侧板和侧板组织中的稳定和双顺反子表达

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Background Components of the limb musculoskeletal system have distinct mesoderm origins. Limb skeletal muscles originate from somites, while the skeleton and attachments (tendons and connective tissues) derive from limb lateral plate. Despite distinct mesoderm origins, the development of muscle, skeleton and attachments is highly coordinated both spatially and temporally to ensure complete function of the musculoskeletal system. A system to study molecular interactions between somitic-derived tissues (muscles) and lateral-plate-derived tissues (skeletal components and attachments) during limb development is missing. Results We designed a gene delivery system in chick embryos with the ultimate aim to study the interactions between the components of the musculoskeletal system during limb development. We combined the Tol2 genomic integration system with the viral T2A system and developed new vectors that lead to stable and bicistronic expression of two proteins at comparable levels in chick cells. Combined with limb somite and lateral plate electroporation techniques, two fluorescent reporter proteins were co-expressed in stoichiometric proportion in the muscle lineage (somitic-derived) or in skeleton and their attachments (lateral-plate-derived). In addition, we designed three vectors with different promoters to target muscle cells at different steps of the differentiation process. Conclusion Limb somite electroporation technique using vectors containing these different promoters allowed us to target all myogenic cells, myoblasts or differentiated muscle cells. These stable and promoter-specific vectors lead to bicistronic expression either in somitic-derived myogenic cells or lateral plate-derived cells, depending on the electroporation sites and open new avenues to study the interactions between myogenic cells and tendon or connective tissue cells during limb development.
机译:背景技术肢体肌肉骨骼系统的组件具有明显的中胚层起源。肢体骨骼肌起源于躯体,而骨骼和附件(肌腱和结缔组织)则起源于肢体外侧板。尽管中胚层起源不同,但肌肉,骨骼和附件的发育在空间和时间上高度协调,以确保肌肉骨骼系统的完整功能。缺少用于研究肢体发育过程中体细胞来源的组织(肌肉)和侧板来源的组织(骨骼成分和附件)之间的分子相互作用的系统。结果我们设计了一种在雏鸡胚胎中的基因传递系统,其最终目的是研究肢体发育过程中肌肉骨骼系统各组成部分之间的相互作用。我们将Tol2基因组整合系统与病毒T2A系统相结合,并开发了新的载体,可在鸡细胞中以可比的水平稳定和双顺反子表达两种蛋白质。结合肢体节肢和侧板电穿孔技术,两种荧光报告蛋白以化学计量比例在肌肉谱系(类体来源)或骨骼及其附件(侧板来源)中共表达。另外,我们设计了三种具有不同启动子的载体,以在分化过程的不同步骤靶向肌细胞。结论使用包含这些不同启动子的载体进行肢体节肢电穿孔技术使我们能够靶向所有成肌细胞,成肌细胞或分化的肌肉细胞。这些稳定且具有启动子特异性的载体可导致双顺反子在体源性成肌细胞或侧板源性细胞中表达,具体取决于电穿孔位点,并开辟了新途径来研究肢体发育过程中肌源性细胞与肌腱或结缔组织细胞之间的相互作用。

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