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Cardiac looping and the vertebrate left-right axis: antagonism of left-sided Vg1 activity by a right-sided ALK2-dependent BMP pathway.

机译:心脏循环和脊椎动物的左右轴:由右侧ALK2依赖性BMP途径对左侧Vg1活性的拮抗作用。

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The rightward looping of the primary heart tube is dependent upon upstream patterning events that establish the vertebrate left-right axis. In Xenopus, a left-sided Vg1 signaling pathway has been implicated in instructing cells to adopt a 'left-sided identity'; however, it is not known whether 'right-sided identity' is acquired by a default pathway or by antagonism of Vg1 signaling. Here, we propose that an antagonistic, BMP/ALK2/Smad-mediated signaling pathway is active on the right side of the Xenopus embryo. Truncated ALK2 receptor expression on the right side of the blastula elicits heart reversals and altered nodal expression. Consistent with these findings, constitutively active ALK2 (CA-ALK2) receptor expression on the left side of the blastula also elicits heart reversals and altered nodal expression. Coexpression of CA-ALK2 with mature Vg1 ligand results in predominantly left-sided nodal expression patterns and normal heart looping, demonstrating that the ALK2 pathway can 'rescue' left-right reversals that otherwise occur following right-sided misexpression of mature Vg1 ligand alone. Results with chimeric precursor proteins indicate that the mature domain of BMP ligands can mimic the ability of the ALK2 signaling pathway to antagonize the Vg1 pathway. Consistent with the observed antagonism between BMP and Vg1 ligands, left-sided ectopic expression of Xolloid results in heart reversals. Moreover, ectopic expression of Smad1 or Smad7 identified two downstream modulators of the BMP/ALK2 signaling pathway that also can regulate cardiac orientation. Collectively, these results define a BMP/ALK2-mediated pathway on the right side of the Xenopus embryo and, moreover, suggest that left-right patterning preceding cardiac morphogenesis involves the activation of two distinct and antagonistic, left- and right-sided TGF(beta)-related signaling pathways.
机译:主心管的向右循环取决于建立脊椎动物左右轴的上游构图事件。在非洲爪蟾中,左侧的Vg1信号通路已被暗示指示细胞采取“左侧身份”。然而,尚不清楚“默认身份”是通过默认途径还是通过对Vg1信号的拮抗来获得。在这里,我们建议在非洲爪蟾胚胎的右侧有一个拮抗的BMP / ALK2 / Smad介导的信号通路。囊胚右侧截短的ALK2受体表达引起心脏逆转并改变淋巴结表达。与这些发现一致,在囊胚左侧的组成性活性ALK2(CA-ALK2)受体表达也引起心脏逆转并改变了结节表达。 CA-ALK2与成熟Vg1配体的共表达会导致主要为左侧的淋巴结表达模式和正常的心脏循环,这表明ALK2途径可以“挽救”左右反转,否则在单独的成熟Vg1配体的右侧错误表达后就会发生。嵌合前体蛋白的结果表明,BMP配体的成熟结构域可以模仿ALK2信号通路拮抗Vg1通路的能力。与观察到的BMP和Vg1配体之间的拮抗作用一致,Xolloid的左侧异位表达导致心脏逆转。此外,Smad1或Smad7的异位表达确定了BMP / ALK2信号通路的两个下游调节剂,它们也可以调节心脏方向。总的来说,这些结果在非洲爪蟾胚胎的右侧定义了一种BMP / ALK2介导的途径,此外,还表明在心脏形态发生之前的左右模式涉及两种不同的,拮抗的,左侧和右侧TGF( β)相关的信号通路。

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