斑马鱼早期胃肠中 Wnt 和 Fgf 的运输和梯度形成。

2区 生物学 Q1 Biochemistry, Genetics and Molecular Biology Current Topics in Developmental Biology Pub Date : 2024-01-01 Epub Date: 2023-12-27 DOI:10.1016/bs.ctdb.2023.12.003
Emma J Cooper, Steffen Scholpp
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引用次数: 0

摘要

在胚胎发育过程中,胃形成对具有多种分化能力的多胚层的形成至关重要。这些细胞通过接触被称为形态发生因子的信号分子来接受指令。形态发生体从源组织分泌,形成浓度梯度,从而在接受组织中形成独特的模式。本综述重点讨论斑马鱼发育过程中的形态发生因子 Wnt 和 Fgf。Wnt 已被证明在整个胃形成过程中发挥关键作用,包括在前胸模式化和神经后化中。Fgf 也是一个重要的信号,有助于内卷和中胚层的规格化。研究还发现,这两种形态发生因子在神经诱导等过程中发挥着微妙的协同作用。因此,必须严格控制 Wnts 和 Fgfs 的信号范围,以锁定正确的靶细胞。Fgf 和 Wnts 以高度调节的方式向本地细胞和远处的细胞发出信号,这就需要特定的传播机制,以便在短距离和长距离上高效、精确地发出信号。目前已发现多种运输机制有助于产生稳定的形态发生器梯度,包括短程扩散、被称为细胞核的丝状扩展和细胞外囊泡,主要是外泌体。这些机制针对其运输的形态发生器和预期的信号范围。这篇综述文章讨论了这两种形态发生系统的扩散机制有何不同,以及对旁分泌信号的影响,进而讨论了组织形态的形成。
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Transport and gradient formation of Wnt and Fgf in the early zebrafish gastrula.

Within embryonic development, the occurrence of gastrulation is critical in the formation of multiple germ layers with many differentiative abilities. These cells are instructed through exposure to signalling molecules called morphogens. The secretion of morphogens from a source tissue creates a concentration gradient that allows distinct pattern formation in the receiving tissue. This review focuses on the morphogens Wnt and Fgf in zebrafish development. Wnt has been shown to have critical roles throughout gastrulation, including in anteroposterior patterning and neural posterisation. Fgf is also a vital signal, contributing to involution and mesodermal specification. Both morphogens have also been found to work in finely balanced synergy for processes such as neural induction. Thus, the signalling range of Wnts and Fgfs must be strictly controlled to target the correct target cells. Fgf and Wnts signal to local cells as well as to cells in the distance in a highly regulated way, requiring specific dissemination mechanisms that allow efficient and precise signalling over short and long distances. Multiple transportation mechanisms have been discovered to aid in producing a stable morphogen gradient, including short-range diffusion, filopodia-like extensions called cytonemes and extracellular vesicles, mainly exosomes. These mechanisms are specific to the morphogen that they transport and the intended signalling range. This review article discusses how spreading mechanisms in these two morphogenetic systems differ and the consequences on paracrine signalling, hence tissue patterning.

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来源期刊
CiteScore
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自引率
0.00%
发文量
91
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