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在胚胎中构建运动产生和运动感知的功能单元。

Building functional units of movement-generation and movement-sensation in the embryo.

作者信息

Hasson Peleg, Volk Talila, Salzberg Adi

机构信息

Department of Genetics and Developmental Biology, The Rappaport Faculty of Medicine and Research Institute, Technion-Israel Institute of Technology, Haifa, Israel.

出版信息

Int J Dev Biol. 2017;61(3-4-5):171-178. doi: 10.1387/ijdb.160279as.

Abstract

The musculoskeletal and proprioceptive sensory systems exhibit intricate crosstalk between force generation, force sensation and force transmission, all of which are critical for coordinated animal locomotion. Recent developmental studies of the musculoskeletal and proprioceptive units of the invertebrate Drosophila embryo, have revealed several common molecular and structural principles mediating the formation of each of these systems. These common principles, as well as the differences between the developmental programs of the two systems, are discussed. Interestingly, a molecular pathway triggered by the Neuregulin/Vein ligand-dependent activation of the epidermal growth factor receptor (EGFR) pathway, which upregulates the early growth response (EGR)-like transcription factor Stripe, is utilized not only by the Drosophila muscle-tendon and proprioceptive organ-ectoderm attachment, but also by their vertebrate counterparts. An additional theme that has been observed during the development of the musculoskeletal system in both invertebrates and vertebrates is the functional importance of the extracellular matrix and its adhesion receptors. The contribution of mechanical forces to proper junction formation between muscles and tendons and between the sensory cap/ligament cells and their epidermal attachment cells is discussed. The structural and genetic similarities between the musculoskeletal and the proprioceptive systems offer new perspectives as to their common developmental nature.

摘要

肌肉骨骼系统和本体感觉系统在力的产生、力的感知和力的传递之间表现出复杂的相互作用,所有这些对于动物的协调运动都至关重要。最近对无脊椎动物果蝇胚胎的肌肉骨骼和本体感觉单元的发育研究揭示了介导这些系统各自形成的几个共同的分子和结构原理。本文讨论了这些共同原理以及这两个系统发育程序之间的差异。有趣的是,由神经调节蛋白/静脉配体依赖性激活表皮生长因子受体(EGFR)途径触发的分子途径,该途径上调早期生长反应(EGR)样转录因子条纹,不仅被果蝇的肌腱和本体感觉器官-外胚层附着所利用,也被它们的脊椎动物对应物所利用。在无脊椎动物和脊椎动物的肌肉骨骼系统发育过程中观察到的另一个主题是细胞外基质及其粘附受体的功能重要性。本文讨论了机械力对肌肉与肌腱之间以及感觉帽/韧带细胞与其表皮附着细胞之间正确连接形成的贡献。肌肉骨骼系统和本体感觉系统之间的结构和遗传相似性为它们共同的发育本质提供了新的视角。

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