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Serotonin has early, cilia-independent roles in Xenopus left-right patterning

机译:5-羟色胺在非洲爪蟾左右模式中具有早期纤毛独立的作用

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Consistent left-right (LR) patterning of the heart and viscera is a crucial part of normal embryogenesis. Because errors of laterality form a common class of birth defects, it is important to understand the molecular mechanisms and stage at which LR asymmetry is initiated. Frog embryos are a system uniquely suited to analysis of the mechanisms involved in orientation of the LR axis because of the many genetic and pharmacological tools available for use and the fate-map and accessibility of early blastomeres. Two major models exist for the origin of LR asymmetry and both implicate pre-nervous serotonergic signaling. In the first, the charged serotonin molecule is instructive for LR patterning; it is redistributed asymmetrically along the LR axis and signals intracellularly on the right side at cleavage stages. A second model suggests that serotonin is a permissive factor required to specify the dorsal region of the embryo containing chiral cilia that generate asymmetric fluid flow during neurulation, a much later process. We performed theory-neutral experiments designed to distinguish between these models. The results uniformly support a role for serotonin in the cleavage-stage embryo, long before the appearance of cilia, in ventral right blastomeres that do not contribute to the ciliated organ.
机译:心脏和内脏一致的左右(LR)模式是正常胚胎发生的关键部分。由于侧向误差是一类常见的先天缺陷,因此了解LR不对称引发的分子机制和阶段非常重要。由于许多可用的遗传和药理学工具以及早期卵裂球的命运图谱和可及性,青蛙胚胎是一个独特的系统,非常适合分析LR轴定向中涉及的机制。对于LR不对称的起源,存在两个主要模型,并且都暗示了神经前血清素能信号传导。首先,带电的血清素分子对LR构图具有指导意义。它沿着LR轴不对称地重新分布,并在卵裂期的右侧在细胞内发出信号。第二种模型表明,血清素是确定含有手性纤毛的胚胎背侧区域所需要的允许因子,手性纤毛在神经形成过程中会产生不对称的流体流动,这是一个很晚的过程。我们进行了与理论无关的实验,旨在区分这些模型。结果一致地支持5-羟色胺在早于纤毛出现之前的卵裂期胚胎中的腹侧右卵裂球中的作用,而卵裂球对纤毛器官无贡献。

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