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首页> 外文期刊>Current Biology: CB >Serotonin signaling is a very early step in patterning of the left-right axis in chick and frog embryos
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Serotonin signaling is a very early step in patterning of the left-right axis in chick and frog embryos

机译:血清素信号传导是雏鸡和青蛙胚胎左右轴构图的非常早期的步骤

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摘要

Background: Consistent left-right (LR) asymmetry is a fascinating problem in developmental and evolutionary biology. Conservation of early LR patterning steps among vertebrates as well as involvement of nonprotein small-molecule messengers are very poorly understood. Serotonin (5-HT) is a key neurotransmitter with crucial roles in physiology and cognition. We tested the hypothesis that LR patterning required prenervous serotonin signaling and characterized the 5-HT pathway in chick and frog embryos.Results: A pharmacological screen implicated endogenous signaling through receptors R3 and R4 and the activity of monoamine oxidase (MAO) in the establishment of correct sidedness of asymmetric gene expression and of the viscera in Xenopus embryos. HPLC and immunohistochemistry analysis indicates that Xenopus eggs contain a maternal supply of serotonin that is progressively degraded during cleavage stages. Serotonin's dynamic localization in frog embryos requires gap junctional communication and H,K-ATPase function. Microinjection of loss- and gain-of-function constructs into the right ventral blastomere randomizes asymmetry. In chick embryos, R3 and R4 activity is upstream of the asymmetry of Sonic hedgehog expression. MAO is asymmetrically expressed in the node.Conclusions: Serotonin is present in very early chick and frog embryos. 5-HT pathway function is required for normal asymmetry and is upstream of asymmetric gene expression. The microinjection data reveal asymmetry existing in frog embryos by the 4-cell stage and suggest novel intracellular 5-HT mechanisms. These functional and localization data identify a novel role for the neurotransmitter serotonin and implicate prenervous serotonergic signaling as an obligate aspect of very early left-right patterning conserved to two vertebrate species.
机译:背景:一致的左右(LR)不对称性是发育和进化生物学中一个令人着迷的问题。脊椎动物中早期LR构图步骤的保守性以及非蛋白小分子信使的参与还知之甚少。血清素(5-HT)是一种关键的神经递质,在生理和认知中起着至关重要的作用。我们检验了以下假设:LR模式需要神经素5-羟色胺信号传导并表征雏鸡和青蛙胚胎中的5-HT信号通路。爪蟾胚胎中不对称基因表达和内脏的正确方面。 HPLC和免疫组织化学分析表明,非洲爪蟾卵中含有母体血清素,该母体在切割阶段会逐渐降解。血清素在青蛙胚胎中的动态定位需要间隙连接通讯和H,K-ATPase功能。将功能丧失和获得功能的构建物显微注射到右侧腹卵裂球中可随机化不对称性。在雏鸡胚胎中,R3和R4活性是Sonic刺猬表达不对称的上游。结论:血清5-羟色胺存在于非常早期的雏鸡和蛙类胚胎中。 5-HT通路功能是正常不对称所必需的,并且是不对称基因表达的上游。显微注射数据揭示了青蛙胚胎在4细胞阶段存在的不对称性,并提出了新的细胞内5-HT机制。这些功能和定位数据确定了神经递质5-羟色胺的新作用,并暗示了神经紧张性5-羟色胺能信号传导是两个脊椎动物非常保守的左右模式的专一方面。

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