Yin Jun, Xia Jian-Hong, Du Xin-Zheng, Liu Jun, Zhou Li, Hong Yun-Han, Gui Jian-Fang
State Key Laboratory of Freshwater Ecology and Biotechnology, Wuhan Center for Developmental Biology, Institute of Hydrobiology, Chinese Academy of Sciences, Graduate School of the Chinese Academy of Sciences, Wuhan, China.
Int J Dev Biol. 2007;51(8):761-9. doi: 10.1387/ijdb.072346jy.
Midkine (Mdk) genes have been revealed to have different expression patterns in vertebrates and therefore, additional studies on Mdk expression patterns are required in more species. In this study, CagMdkb has been cloned and characterized from a SMART cDNA library of 10-somite stage embryos of Carassius auratus gibelio. Its full length cDNA is 1091 bp and encodes a sequence of 147 amino acids, which shows 97.3% identity to zebrafish Mdkb on the amino acid level. RT-PCR analysis reveals that CagMdkb is first transcribed in gastrula embryos and maintains a relatively stable expression level during subsequent embryogenesis. Western blot analysis reveals a 19 kDa maternal CagMdkb protein band and the zygotic CagMdkb protein is expressed from gastrula stage. At around 10 somite stage, the 19 kDa CagMdkb is processed to another protein band of about 17 kDa, which might be the secreted form with the 21-residue signal peptide removed. With immunofluorescence analysis, maternal CagMdkb protein was found to be localized in each blastamere cell of early embryos. The zygotic CagMdkb positive fluorescence signal was detected from a pair of large neurons at 18-somite stage. At the later stages, CagMdkb protein was also extended to numerous small neurons in the forebrain, midbrain and hindbrain, as well as to nerve fibers in the spinal cord. Co-localization with 3A10 antibody revealed CagMdkb immunoreactivity on developing Mauthner neurons, a member of reticulospinal neurons. In addition, ectopic expression of CagMdkb in early embryos of gibel carp and zebrafish suppressed head formation and CagMdkb function was found to depend on secretory activity. All these findings indicate that CagMdkb plays an important role in neural development during gibel carp embryogenesis and there is functional conservation of Mdkb in fish head formation.
已发现中期因子(Midkine,Mdk)基因在脊椎动物中具有不同的表达模式,因此,需要在更多物种中对Mdk的表达模式进行进一步研究。在本研究中,已从银鲫10体节期胚胎的SMART cDNA文库中克隆并鉴定了CagMdkb。其全长cDNA为1091 bp,编码一个由147个氨基酸组成的序列,该序列在氨基酸水平上与斑马鱼Mdkb的同一性为97.3%。RT-PCR分析表明,CagMdkb在原肠胚期胚胎中首次转录,并在随后的胚胎发育过程中保持相对稳定的表达水平。蛋白质印迹分析显示出一条19 kDa的母源性CagMdkb蛋白条带,合子型CagMdkb蛋白从原肠胚期开始表达。在大约10体节期,19 kDa的CagMdkb被加工成另一条约17 kDa的蛋白条带,这可能是去除了21个氨基酸信号肽的分泌形式。通过免疫荧光分析发现,母源性CagMdkb蛋白定位于早期胚胎的每个卵裂球细胞中。在18体节期,从一对大神经元中检测到合子型CagMdkb阳性荧光信号。在后期,CagMdkb蛋白也扩展到前脑、中脑和后脑的许多小神经元以及脊髓中的神经纤维。与3A10抗体共定位显示,CagMdkb在发育中的Mauthner神经元(网状脊髓神经元的一员)上具有免疫反应性。此外,CagMdkb在银鲫和斑马鱼早期胚胎中的异位表达抑制了头部形成,并且发现CagMdkb的功能依赖于分泌活性。所有这些发现表明,CagMdkb在银鲫胚胎发育过程中的神经发育中起重要作用,并且Mdkb在鱼头形成中具有功能保守性。