首页> 外文期刊>Molecular cell >Left-right asymmetric expression of lefty2 and nodal is induced by a signaling pathway that includes the transcription factor FAST2.
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Left-right asymmetric expression of lefty2 and nodal is induced by a signaling pathway that includes the transcription factor FAST2.

机译:lefty2和节点的左右不对称表达是由包含转录因子FAST2的信号传导途径诱导的。

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摘要

The left-right (L-R) asymmetric expression of lefty2 and nodal is controlled by a left side-specific enhancer (ASE). The transcription factor FAST2, which can mediate signaling by TGF beta and activin, has now been identified as a protein that binds to a conserved sequence in ASE. These FAST2 binding sites were both essential and sufficient for L-R asymmetric gene expression. The Fast2 gene is bilaterally expressed when nodal and lefty2 are expressed on the left side. TGF beta and activin can activate the ASE activity in a FAST2-dependent manner, while Nodal can do so in the presence of an EGF-CFC protein. These results suggest that the asymmetric expression of lefty2 and nodal is induced by a left side-specific TGF beta-related factor, which is most likely Nodal itself.
机译:lefty2和节点的左右(L-R)不对称表达受左侧特异性增强子(ASE)的控制。转录因子FAST2可以介导TGFβ和激活素的信号传导,现已被鉴定为与ASE中保守序列结合的蛋白质。这些FAST2结合位点对于L-R不对称基因表达既必不可少,又足够。当节点和lefty2在左侧表达时,Fast2基因在两侧表达。 TGFβ和激活素可以FAST2依赖的方式激活ASE活性,而Nodal可以在EGF-CFC蛋白存在的情况下激活ASE活性。这些结果表明lefty2和节点的不对称表达是由左侧特定的TGFβ相关因子诱导的,这很可能是节点本身。

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