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钙连接蛋白是斑马鱼后侧线发育所必需的。

Calnexin is required for zebrafish posterior lateral line development.

作者信息

Hung I-Chen, Cherng Bor-Wei, Hsu Wen-Ming, Lee Shyh-Jye

机构信息

Institute of Zoology, National Taiwan University, Taipei, Taiwan, ROC.

出版信息

Int J Dev Biol. 2013;57(5):427-38. doi: 10.1387/ijdb.120166sl.

Abstract

The lateral line is a mechanosensory system in fish and amphibians to detect local water flow and pressure. Development of the posterior lateral line (PLL) originates from the migrating PLL primordium (PLLP). The PLLP deposits neuromasts on the trunk during migration to the tail. Molecular dissection revealed that PLL development is associated with genes mediating cell adhesion, morphogenesis, neurogenesis and development, but the regulatory signaling network is far from completion. To further investigate candidate regulatory genes for lateral line development, we found using whole-mount in situ hybridization that calnexin, an endoplasmic reticular (ER) calcium-binding protein gene, is expressed in PLL neuromasts. Knockdown of calnexin using antisense morpholino oligonucleotides resulted in a dose-dependent reduction in neuromasts and hair cells of the PLL. Using a transgenic claudin b:gfp line, we observed a notably reduced PLLP size, but no significant migration defect in calnexin morphants. Finally, we discovered that the reduced PLLP is associated with a reduction in cell proliferation and an increase in ER stress-dependent apoptosis. These results suggest that calnexin is essential for neuromast formation during lateral line development in the zebrafish.

摘要

侧线是鱼类和两栖动物的一种机械感觉系统,用于检测局部水流和压力。后侧线(PLL)的发育起源于迁移的后侧线原基(PLLP)。PLLP在向尾部迁移的过程中在躯干上沉积神经丘。分子剖析表明,PLL的发育与介导细胞黏附、形态发生、神经发生和发育的基因有关,但调控信号网络远未完善。为了进一步研究侧线发育的候选调控基因,我们通过全胚胎原位杂交发现,钙连接蛋白(一种内质网钙结合蛋白基因)在PLL神经丘中表达。使用反义吗啉代寡核苷酸敲低钙连接蛋白会导致PLL的神经丘和毛细胞呈剂量依赖性减少。利用转基因claudin b:gfp品系,我们观察到PLLP的大小显著减小,但在钙连接蛋白 morphant中没有明显的迁移缺陷。最后,我们发现减小的PLLP与细胞增殖减少和内质网应激依赖性凋亡增加有关。这些结果表明,钙连接蛋白对斑马鱼侧线发育过程中的神经丘形成至关重要。

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