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影响耳原基诱导过程中 Fgf 反应的条件。

Conditions that influence the response to Fgf during otic placode induction.

机构信息

Biology Department, Texas A&M University, College Station, TX 77843-3258, USA.

出版信息

Dev Biol. 2012 Apr 1;364(1):1-10. doi: 10.1016/j.ydbio.2012.01.022. Epub 2012 Feb 1.

Abstract

Despite the vital importance of Fgf for otic induction, previous attempts to study otic induction through Fgf misexpression have yielded widely varying and contradictory results. There are also discrepancies regarding the ability of Fgf to induce otic tissue in ectopic locations, raising questions about the sufficiency of Fgf and the degree to which other local factors enhance or restrict otic potential. Using heat shock-inducible transgenes to misexpress Fgf3 or Fgf8 in zebrafish, we found that the stage, distribution and level of misexpression strongly influence the response to Fgf. Fgf misexpression during gastrulation can inhibit or promote otic development, depending on context, whereas misexpression after gastrulation leads to expansion of otic markers throughout preplacodal ectoderm surrounding the head. Elevated Fgf also expands expression of the putative competence factor Foxi1, which is required for Fgf to expand other otic markers. Misexpression of downstream factors Pax2a or Pax8 also expands otic markers but cannot bypass the requirement for Fgf or Foxi1. Co-misexpression of Pax2/8 with Fgf8 potentiates formation of ectopic otic vesicles expressing a full range of otic markers. These findings document the variables critically affecting the response to Fgf and clarify the roles of foxi1 and pax2/8 in the otic response.

摘要

尽管 Fgf 对于耳原基诱导至关重要,但先前通过 Fgf 异位表达来研究耳原基诱导的尝试产生了广泛不同且相互矛盾的结果。此外,Fgf 在异位诱导耳组织的能力也存在差异,这引发了对 Fgf 是否充分以及其他局部因素增强或限制耳原基潜能的质疑。通过热休克诱导的转基因在斑马鱼中异位表达 Fgf3 或 Fgf8,我们发现表达的阶段、分布和水平强烈影响对 Fgf 的反应。在原肠胚形成期间异位表达 Fgf 可以抑制或促进耳原基发育,这取决于具体情况,而原肠胚形成后异位表达则导致头部周围前腭区外胚层中的耳原基标记物广泛扩张。升高的 Fgf 还扩展了假定的起始因子 Foxi1 的表达,这对于 Fgf 扩展其他耳原基标记物是必需的。下游因子 Pax2a 或 Pax8 的异位表达也会扩展耳原基标记物,但不能绕过对 Fgf 或 Foxi1 的需求。Fgf8 与 Pax2/8 的共异位表达增强了表达全套耳原基标记物的异位耳泡的形成。这些发现记录了对 Fgf 反应有重要影响的变量,并阐明了 foxi1 和 pax2/8 在耳原基反应中的作用。

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