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在斑马鱼左右轴特化过程中,两个额外的中线屏障与中线 lefty1 表达一起发挥作用,以维持不对称的 Nodal 信号。

Two additional midline barriers function with midline lefty1 expression to maintain asymmetric Nodal signaling during left-right axis specification in zebrafish.

机构信息

Department of Molecular Biology, Princeton University, Princeton, NJ 08544, USA.

出版信息

Development. 2011 Oct;138(20):4405-10. doi: 10.1242/dev.071092.

Abstract

Left-right (L/R) patterning is crucial for the proper development of all vertebrates and requires asymmetric expression of nodal in the lateral plate mesoderm (LPM). The mechanisms governing asymmetric initiation of nodal have been studied extensively, but because Nodal is a potent activator of its own transcription, it is also crucial to understand the regulation required to maintain this asymmetry once it is established. The 'midline barrier', consisting of lefty1 expression, is a conserved mechanism for restricting Nodal activity to the left. However, the anterior and posterior extremes of the LPM are competent to respond to Nodal signals yet are not adjacent to this barrier, suggesting that lefty1 is not the only mechanism preventing ectopic Nodal activation. Here, we demonstrate the existence of two additional midline barriers. The first is a 'posterior barrier' mediated by Bmp signaling that prevents nodal propagation through the posterior LPM. In contrast to previous reports, we find that Bmp represses Nodal signaling independently of lefty1 expression and through the activity of a ligand other than Bmp4. The 'anterior barrier' is mediated by lefty2 expression in the left cardiac field and prevents Nodal activation from traveling across the anterior limit of the notochord and propagating down the right LPM. Both barriers appear to be conserved across model systems and are thus likely to be present in all vertebrates.

摘要

左右(L/R)模式对于所有脊椎动物的正常发育至关重要,需要在侧方中胚层(LPM)中不对称表达 nodal。已经广泛研究了控制 nodal 不对称起始的机制,但由于 Nodal 是其自身转录的有效激活剂,因此了解一旦建立了这种不对称性所需的调节也至关重要。由 lefty1 表达组成的“中线屏障”是限制 Nodal 活性局限于左侧的保守机制。然而,LPM 的前后极端都有能力响应 Nodal 信号,但它们不与这个屏障相邻,这表明 lefty1 不是防止异位 Nodal 激活的唯一机制。在这里,我们证明了存在另外两个中线屏障。第一个是由 Bmp 信号介导的“后屏障”,可防止 nodal 通过后 LPM 传播。与之前的报告相反,我们发现 Bmp 通过除 Bmp4 之外的其他配体独立于 lefty1 表达来抑制 Nodal 信号。“前屏障”由左心区的 lefty2 表达介导,可防止 Nodal 激活穿过脊索的前界限并沿右侧 LPM 向下传播。这两个屏障似乎在模型系统中都是保守的,因此很可能存在于所有脊椎动物中。

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本文引用的文献

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