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首页> 外文期刊>Developmental biology >The ATP-sensitive K(+)-channel (K(ATP)) controls early left-right patterning in Xenopus and chick embryos.
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The ATP-sensitive K(+)-channel (K(ATP)) controls early left-right patterning in Xenopus and chick embryos.

机译:ATP敏感的K(+)通道(K(ATP))控制非洲爪蟾和雏鸡胚胎的早期左右模式。

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摘要

Consistent left-right asymmetry requires specific ion currents. We characterize a novel laterality determinant in Xenopus laevis: the ATP-sensitive K(+)-channel (K(ATP)). Expression of specific dominant-negative mutants of the Xenopus Kir6.1 pore subunit of the K(ATP) channel induced randomization of asymmetric organ positioning. Spatio-temporally controlled loss-of-function experiments revealed that the K(ATP) channel functions asymmetrically in LR patterning during very early cleavage stages, and also symmetrically during the early blastula stages, a period when heretofore largely unknown events transmit LR patterning cues. Blocking K(ATP) channel activity randomizes the expression of the left-sided transcription of Nodal. Immunofluorescence analysis revealed that XKir6.1 is localized to basal membranes on the blastocoel roof and cell-cell junctions. A tight junction integrity assay showed that K(ATP) channels are required for proper tight junction function in early Xenopus embryos. We also present evidence that this function may be conserved to the chick, as inhibition of K(ATP) in the primitive streak of chick embryos randomizes the expression of the left-sided gene Sonic hedgehog. We propose a model by which K(ATP) channels control LR patterning via regulation of tight junctions.
机译:一致的左右不对称性需要特定的离子电流。我们表征非洲爪蟾的新型侧向性决定因素:ATP敏感的K(+)通道(K(ATP))。非洲爪蟾Kir6.1孔亚基的K(ATP)通道的特定显性负阴性突变体的表达诱导不对称器官定位的随机化。时空控制的功能丧失实验表明,K(ATP)通道在很早的卵裂期就在LR模式中不对称地起作用,并且在囊胚早期也就对称地起作用,而在此之前,迄今很大程度上未知的事件传递了LR模式提示。阻断K(ATP)通道活性使Nodal左侧转录的表达随机化。免疫荧光分析显示,XKir6.1定位于囊胚顶和细胞间连接处的基底膜。紧密连接完整性测定表明,在非洲爪蟾早期胚胎中,适当的紧密连接功能需要K(ATP)通道。我们还提供了证据,该功能可能保留给小鸡,因为对小鸡胚胎原始条纹中的K(ATP)的抑制使左侧基因Sonic猬的表达随机化。我们提出了一个模型,通过该模型,K(ATP)通道可通过紧密连接的调节来控制LR模式。

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