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首页> 外文期刊>Development >Tsukushi cooperates with VG1 to induce primitive streak and Hensen's node formation in the chick embryo.
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Tsukushi cooperates with VG1 to induce primitive streak and Hensen's node formation in the chick embryo.

机译:Tsukushi与VG1协同诱导雏鸡胚胎中的原始条纹和Hensen结节形成。

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Three classes of signaling molecule, VG1, WNT and BMP, play crucial roles in axis formation in the chick embryo. Although VG1 and WNT signals have a pivotal function in inducing the primitive streak and Hensen's node in the embryo midline, their action is complemented by that of BMP antagonists that protect the prospective axial tissue from the inhibitory influence of BMPs secreted from the periphery. We have previously reported that a secreted factor, chick Tsukushi (TSK), is expressed in the primitive streak and Hensen's node, where it works as a BMP antagonist. Here, we describe a new crucial function for TSK in promoting formation of the primitive streak and Hensen's node by positively regulating VG1 activity. We provide evidence that TSK directly binds VG1 in vitro, and that TSK and VG1 functionally interact in axis formation, as shown by biological assays performed in chick and Xenopus embryos. Furthermore, we show that alternative splicing of TSK RNA leads to the formation of two isoforms (TSKA,originally designated as TSK, and TSKB) that differ in their C-terminal region. Biochemical and biological assays indicate that TSKB is a much weaker BMP antagonist than TSKA, although both isoforms efficiently interact with VG1. Remarkably, although both TSKA and TSKB are expressed throughout the early extending primitive streak, their expression patterns diverge during gastrulation. TSKA expression concentrates in Hensen's node, a well-known source of anti-BMP signals, whereas TSKB accumulates in the middle primitive streak (MPS), a region known to work as a node-inducing center where VG1 expression is also specifically localized. Loss-of-function experiments demonstrate that TSKB, but not TSKA, function is required in the MPS for induction of Hensen's node. Taken together, these results indicate that TSK isoforms play a crucial role in chick axis formation by locally modulating VG1 and BMP activities during gastrulation.
机译:VG1,WNT和BMP这三类信号分子在雏鸡胚轴形成中起关键作用。尽管VG1和WNT信号在诱导胚胎中线的原始条纹和Hensen结中起关键作用,但它们的作用得到了BMP拮抗剂的补充,BMP拮抗剂可以保护预期的轴向组织免受周围分泌的BMP的抑制作用。我们之前曾报道过,分泌因子小鸡筑紫(TSK)在原始条带和Hensen结中表达,在这里它是BMP拮抗剂。在这里,我们描述了TSK通过积极调节VG1活性来促进原始条纹和Hensen结形成的新关键功能。我们提供的证据表明,TSK在体外直接结合VG1,并且TSK和VG1在轴形成中功能相互作用,如在雏鸡和非洲爪蟾胚胎中进行的生物学检测所表明的。此外,我们表明,TSK RNA的选择性剪接导致形成两个同工型(TSKA,最初称为TSK和TSKB),它们的C端区域不同。生化和生物学分析表明,TSKB是比TSKA弱得多的BMP拮抗剂,尽管这两种同工型都能有效地与VG1相互作用。值得注意的是,尽管TSKA和TSKB在整个早期延伸的原始条纹中均表达,但它们的表达模式在胃形成过程中有所不同。 TSKA的表达集中在Hensen的节点上,后者是著名的抗BMP信号源,而TSKB则积累在中间原始条带(MPS)中,该区域被称为节点诱导中心,VG1的表达也专门定位在该区域。功能丧失实验表明,MPS需要使用TSKB(而不是TSKA)功能来诱导Hensen结。综上所述,这些结果表明,TSK亚型在鸡胚形成过程中通过局部调节VG1和BMP活性在雏鸡轴形成中起关键作用。

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