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活体脊椎动物的室周器官的起源和发展。

Origin and development of circumventricular organs in living vertebrate.

机构信息

International Institute of Molecular and Cell Biology in Warsaw, Poland.

RIKEN Center for Biosystems Dynamics Research, Kobe, Japan.

出版信息

Semin Cell Dev Biol. 2020 Jun;102:13-20. doi: 10.1016/j.semcdb.2019.10.010. Epub 2019 Nov 6.

Abstract

The circumventricular organs (CVOs) function by mediating chemical communication between blood and brain across the blood-brain barrier. Their origin and developmental mechanisms involved are not understood in enough detail due to a lack of molecular markers common for CVOs. These rather small and inconspicuous organs are found in close vicinity to the third and fourth brain ventricles suggestive of ancient evolutionary origin. Recently, an integrated approach based on analysis of CVOs development in the enhancer-trap transgenic zebrafish led to an idea that almost all of CVOs could be highlighted by GFP expression in this transgenic line. This in turn suggested that an enhancer along with a set of genes it regulates may illustrate the first common element of developmental regulation of CVOs. It seems to be related to a mechanism of suppression of the canonical Wnt/ β-catenin signaling that functions in development of fenestrated capillaries typical for CVOs. Based on that observation the common molecular elements of the putative developmental mechanism of CVOs will be discussed in this review.

摘要

室周器官(CVOs)通过介导血脑屏障两侧的血液和大脑之间的化学通讯来发挥作用。由于缺乏 CVOs 共有的分子标记物,因此对其起源和发育机制的了解还不够详细。这些相对较小且不显眼的器官位于第三和第四脑室附近,暗示其具有古老的进化起源。最近,一种基于在增强子陷阱转基因斑马鱼中分析 CVOs 发育的综合方法提出了一个观点,即在这条转基因系中,几乎所有的 CVOs 都可以通过 GFP 表达来突出显示。这反过来又表明,一个增强子及其所调控的一组基因可能说明了 CVOs 发育调控的第一个共同要素。这似乎与抑制典型 CVOs 中存在的有孔毛细血管发育所必需的经典 Wnt/β-连环蛋白信号传导的机制有关。基于这一观察结果,本文将讨论 CVOs 假定发育机制的共同分子要素。

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