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首页> 外文期刊>BMC Developmental Biology >Expression study of cadherin7 and cadherin20 in the embryonic and adult rat central nervous system
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Expression study of cadherin7 and cadherin20 in the embryonic and adult rat central nervous system

机译:cadherin7和cadherin20在胚胎和成年大鼠中枢神经系统中的表达研究。

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Background Vertebrate classic cadherins are divided into type I and type II subtypes, which are individually expressed in brain subdivisions (e.g., prosomeres, rhombomeres, and progenitor domains) and in specific neuronal circuits in region-specific manners. We reported previously the expression of cadherin19 (cad19) in Schwann cell precursors. Cad19 is a type II classic cadherin closely clustered on a chromosome with cad7 and cad20. The expression patterns of cad7 and cad20 have been reported previously in chick embryo but not in the developing and adult central nervous system of mammals. In this study, we identified rat cad7 and cad20 and analyzed their expression patterns in embryonic and adult rat brains. Results Rat cad7 protein showed 92% similarity to chick cad7, while rat cad20 protein had 76% similarity to Xenopus F-cadherin. Rat cad7 mRNA was initially expressed in the anterior neural plate including presumptive forebrain and midbrain regions, and then accumulated in cells of the dorsal neural tube and in rhombomere boundary cells of the hindbrain. Expression of rat cad20 mRNA was specifically localized in the anterior neural region and rhombomere 2 in the early neural plate, and later in longitudinally defined ventral cells of the hindbrain. The expression boundaries of cad7 and cad20 corresponded to those of region-specific transcription factors such as Six3, Irx3 and Otx2 in the neural plate, and Dbx2 and Gsh1 in the hindbrain. At later stages, the expression of cad7 and cad20 disappeared from neuroepithelial cells in the hindbrain, and was almost restricted to postmitotic cells, e.g. somatic motor neurons and precerebellar neurons. These results emphasized the diversity of cad7 and cad20 expression patterns in different vertebrate species, i.e. birds and rodents. Conclusion Taken together, our findings suggest that the expression of cad7 and cad20 demarcates the compartments, boundaries, progenitor domains, specific nuclei and specific neural circuits during mammalian brain development.
机译:背景脊椎动物经典钙粘蛋白分为I型和II型亚型,它们分别以脑细分(例如,前体,菱形和祖细胞域)和特定神经元回路中以区域特定的方式表达。我们以前报道过在施旺细胞前体中钙粘蛋白19(cad19)的表达。 Cad19是II型经典钙粘蛋白,紧密结合在带有cad7和cad20的染色体上。 cad7和cad20的表达模式先前已在鸡胚中报道,但在哺乳动物的发育中和成年中枢神经系统中尚未报道。在这项研究中,我们鉴定了大鼠cad7和cad20,并分析了它们在胚胎和成年大鼠脑中的表达模式。结果大鼠cad7蛋白与雏鸡cad7有92%的相似性,而大鼠cad20蛋白与非洲爪蟾F-cadherin有76%的相似性。大鼠cad7 mRNA最初在包括推测性前脑和中脑区域的前神经板中表达,然后在背神经管的细胞和后脑的菱形边界细胞中积累。大鼠cad20 mRNA的表达特异地位于早期神经板的前神经区域和rhombomere 2中,之后位于后脑的纵向腹侧细胞中。 cad7和cad20的表达边界对应于区域特异性转录因子,例如神经板中的Six3,Irx3和Otx2以及后脑中的Dbx2和Gsh1。在后期,cad7和cad20的表达从后脑的神经上皮细胞中消失,并且几乎局限于有丝分裂后的细胞,例如:躯体运动神经元和小脑前神经元。这些结果强调了在不同的脊椎动物物种,即鸟类和啮齿动物中,cad7和cad20表达模式的多样性。结论综上所述,我们的发现表明cad7和cad20的表达划定了哺乳动物大脑发育过程中的区室,边界,祖细胞域,特定核和特定神经回路。

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