首页> 外文期刊>Developmental dynamics: an official publication of the American Association of Anatomists >Coordination of development and metabolism in the pre-midblastula transition zebrafish embryo.
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Coordination of development and metabolism in the pre-midblastula transition zebrafish embryo.

机译:中胚层前过渡斑马鱼胚胎中发育和代谢的协调。

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摘要

To define the mechanisms that coordinate early embryonic development and metabolism, we have examined the response of zebrafish embryos to anoxia before the midblastula transition. Our findings reveal that anoxic pre-midblastula transition embryos slow the cell cycle, arrest before the midblastula transition and can recover normally if restored to a normoxic environment. Analyses of respiratory rates reveal that pre-midblastula transition embryos are less reliant on oxidative phosphorylation than older embryos. Interestingly, arrest in anoxia occurs despite inhibition of zygotic transcription, revealing a central role for maternal factors in the response to energy limitation. Consistent with this concept, we demonstrate that the posttranslational energy-sensing AMP-activated protein kinase pathway is activated in anoxia in pre-midblastula transition embryos. Taken together, these findings demonstrate a maternal program capable of coordinating developmental rate and metabolism in the absence of transcription-based pathways or cell cycle checkpoints. Developmental Dynamics 237:1789-1798, 2008. (c) 2008 Wiley-Liss, Inc.
机译:为了定义协调早期胚胎发育和代谢的机制,我们检查了中胚层过渡之前斑马鱼胚胎对缺氧的反应。我们的发现表明,缺氧的中胚层前过渡胚会减缓细胞周期,在中胚层过渡前停滞,并且如果恢复到常氧环境也可以正常恢复。呼吸频率分析表明,中胚层前过渡期胚胎比年老胚胎对氧化磷酸化的依赖性更小。有趣的是,尽管抑制了合子转录,但仍发生了缺氧停滞,揭示了母体因素在能量限制反应中的核心作用。与此概念一致,我们证明翻译后能量感应AMP激活的蛋白激酶途径在中胚层前过渡胚胎的缺氧中被激活。综上所述,这些发现证明了在没有基于转录的途径或细胞周期检查点的情况下,能够协调发育速率和代谢的母体程序。 Developmental Dynamics 237:1789-1798,2008。(c)2008 Wiley-Liss,Inc.

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