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Connexin26-mediated transfer of laterality cues in Xenopus

机译:连接蛋白26介导的非洲爪蟾侧向线索的转移

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A cilia-driven leftward flow of extracellular fluid breaks bilateral symmetry in the dorsal midline of the neurula stage vertebrate embryo. The left-specific Nodal signaling cascade in the lateral plate mesoderm (LPM) is key to asymmetric morphogenesis and placement of organs during subsequent development. The nature of the initial asymmetric cue(s) as well as the transfer of information from the midline to the left side has remained elusive. Gap junctional communication has been previously involved in Xenopus left-right (LR) development, however a function at cleavage stages was inferred from inhibitor experiments. Here we show by heptanol-mediated block of connexin function that flow stages during neurulation represent the critical time window. Flow in Xenopus occurs at the gastrocoel roof plate (GRP), a ciliated sheath of cells of mesodermal fate transiently positioned within the dorsal epithelial lining of the forming archenteron. We reasoned that endodermal cells immediately adjacent to the GRP are important for transfer of asymmetry. A systematic screen identified two connexin genes, Cx26 and Cx32, which were co-expressed in these lateral endodermal cells. Gain- and loss-of-function experiments pinpointed Cx26 as the critical connexin for LR development, while Cx32 had no effect on laterality. Importantly, GRP morphology, ciliation and flow were not affected in Cx26 morphants. Our results demonstrate a decisive role of Cx26 in the transfer of laterality cues from the GRP to the left LPM, providing a novel access to the identification of the initial asymmetric signal generated by flow.
机译:纤毛驱动的细胞外液向左流动破坏了神经期脊椎动物胚胎的背中线的双侧对称性。侧板中胚层(LPM)中的左特异性Nodal信号级联是后续发育过程中器官的不对称形态发生和放置的关键。最初的不对称提示的性质以及信息从中线到左侧的传递仍然难以捉摸。之前,非洲爪蟾左右(LR)的发展涉及间隙连接通讯,但是从抑制剂实验中可以得出卵裂期的功能。在这里,我们通过庚醇介导的连接蛋白功能阻滞显示,在神经形成过程中的流动阶段代表了关键的时间窗口。非洲爪蟾中的血流发生在胃小肠顶板(GRP)上,该小肠是中胚层命运的纤毛状鞘细胞,暂时定位在形成肠壁的背上皮内。我们认为紧邻GRP的内胚层细胞对于不对称转移很重要。系统的筛选确定了两个连接蛋白基因Cx26和Cx32,它们在这些外侧内胚层细胞中共表达。功能获得和功能丧失实验将Cx26精确定位为LR发育的关键连接蛋白,而Cx32对横向性没有影响。重要的是,Cx26 morphant中不影响GRP形态,纤溶和流动。我们的结果证明了Cx26在从GRP到左侧LPM的侧向性提示传递中的决定性作用,为识别由流动产生的初始非对称信号提供了一种新颖的途径。

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