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Wnt and BMP signaling govern lineage segregation of melanocytes in theavian embryo

机译:Wnt和BMP信号支配theavian胚胎中黑素细胞的谱系分离

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摘要

Recent studies show that specification of some neural crest lineages occurs prior to or at the time of migration from the neural tube. We investigated what signaling events establish the melanocyte lineage, which has been shown to migrate from the trunk neural tube after the neuronal and glial lineages. Using in situ hybridization, we find that, although Wnts are expressed in the dorsal neural tube throughout the time when neural crest cells are migrating, the Wnt inhibitor cfrzb-1 is expressed in the neuronal and glial precursors and not in melanoblasts. This expression pattern suggests that Wnt signaling may be involved in specifying the melanocyte lineage. We further report that Wnt-3a-conditioned medium dramatically increases the number of pigment cells in quail neural crest cultures while decreasing the number of neurons and glial cells, without affecting proliferation. Conversely, BMP-4 is expressed in the dorsal neural tube throughout the time when neural crest cells are migrating, but is decreased coincident with the timing of melanoblast migration. This expression pattern suggests that BMP signaling may be involved in neural and glial cell differentiation or repression of melanogenesis. Purified BMP-4 reduces the number of pigment cells in culture while increasing the number of neurons and glial cells, also without affecting proliferation. Our data suggest that Wnt signaling specifies melanocytes at the expense of the neuronal and glial lineages, and further, that Wnt and BMP signaling have antagonistic functions in the specification of the trunk neural crest.
机译:最近的研究表明,某些神经c谱系发生在从神经管迁移之前或之时。我们调查了哪些信号传递事件建立了黑色素细胞谱系,这已显示在神经元和神经胶质谱系后从躯干神经管迁移。使用原位杂交,我们发现,尽管在整个神经c细胞迁移的整个过程中,Wnts在背侧神经管中表达,但Wnt抑制剂cfrzb-1在神经元和神经胶质前体中表达,而不在黑素细胞中表达。此表达模式表明Wnt信号传导可能参与指定黑素细胞谱系。我们进一步报告Wnt-3a条件培养基大大增加了鹌鹑神经rest培养物中色素细胞的数量,同时减少了神经元和神经胶质细胞的数量,而没有影响增殖。相反,BMP-4在整个神经c细胞迁移的整个过程中都在背神经管中表达,但随着黑素细胞迁移的时间而降低。这种表达模式表明BMP信号可能参与神经和神经胶质细胞的分化或黑色素生成的抑制。纯化的BMP-4减少了培养物中色素细胞的数量,同时增加了神经元和神经胶质细胞的数量,也没有影响增殖。我们的数据表明Wnt信号以神经元和神经胶质谱系为代价来指定黑素细胞,此外,Wnt和BMP信号在躯干神经neural的规范中具有拮抗作用。

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