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首页> 外文期刊>Developmental biology >Restraint of Fgf8 signaling by retinoic acid signaling is required for proper heart and forelimb formation.
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Restraint of Fgf8 signaling by retinoic acid signaling is required for proper heart and forelimb formation.

机译:视黄酸信号传导对Fgf8信号的抑制是正常心脏和前肢形成所必需的。

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摘要

Cardiomelic or heart-hand syndromes include congenital defects affecting both the forelimb and heart, suggesting a hypothesis where similar signals may coordinate their development. In support of this hypothesis, we have recently defined a mechanism by which retinoic acid (RA) signaling acts on the forelimb progenitors to indirectly restrict cardiac cell number. However, we still do not have a complete understanding of the mechanisms downstream of RA signaling that allow for the coordinated development of these structures. Here, we test the hypothesis that appropriate Fgf signaling in the cardiac progenitor field downstream of RA signaling is required for the coordinated development of the heart and forelimb. Consistent with this hypothesis, we find that increasing Fgf signaling can autonomously increase cardiac cell number and non-autonomously inhibit forelimb formation over the same time period that embryos are sensitive to loss of RA signaling. Furthermore, we find that Fgf8a, which is expressed in the cardiac progenitors, is expanded into the posterior in RA signaling-deficient zebrafish embryos. Reducing Fgf8a function in RA signaling-deficient embryos is able to rescue both heart and forelimb development. Together, these results are the first to directly support the hypothesis that RA signaling is required shortly after gastrulation in the forelimb field to temper Fgf8a signaling in the cardiac field, thus coordinating the development of the heart and forelimb.
机译:心律或心手综合症包括影响前肢和心脏的先天性缺陷,这提示了一个类似信号可能协调其发育的假说。为了支持该假设,我们最近定义了一种机制,视黄酸(RA)信号作用于前肢祖细胞,从而间接限制心脏细胞的数量。但是,我们仍然对RA信号传导下游机制的协调机制尚不完全了解。在这里,我们测试的假设是,心脏和前肢的协调发展需要RA信号下游的心脏祖细胞场中适当的Fgf信号。与此假设一致,我们发现,在胚胎对RA信号丢失敏感的同一时间段内,增加的Fgf信号可以自主增加心脏细胞数量,并且非自主地抑制前肢形成。此外,我们发现在心脏祖细胞中表达的Fgf8a在RA信号缺失的斑马鱼胚胎中扩展到后方。减少RA信号缺陷型胚胎中的Fgf8a功能能够挽救心脏和前肢的发育。在一起,这些结果是第一个直接支持这一假设的先例,该假设是在前肢田胃化后不久需要RA信号传导来调节心脏场中Fgf8a信号传导,从而协调心脏和前肢的发育。

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