Fgf8 gene regulatory network and the isthmic organizer: an evolutionary perspective.

Rajeev Chandel, Andreas Hörnblad
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Abstract

The midbrain-hindbrain boundary (MHB), also known as the isthmic organizer (IsO), plays a critical role in the developmental patterning of the posterior midbrain and anterior hindbrain. Understanding the wiring of this organizer's deeply conserved gene regulatory network is of significant interest for both evolutionary and neurodevelopmental biology. Various secreted signalling molecules and transcription factors have been identified as being important components for the formation and function of the MHB. Among these, FGF8 is considered a primary mediator of IsO activity; it directs anterior-posterior patterning and promotes the specification and maintenance of the MHB. While the core gene regulatory network governing MHB development is well-characterized, the direct interactions between key regulatory genes and the cis-regulatory elements that control their spatiotemporal expression remain poorly understood. This review summarizes the current knowledge of the gene regulatory network underlying the formation of the vertebrate midbrain-hindbrain boundary. We focus in particular on Fgf8 and its regulatory landscape from an evolutionary perspective.

Fgf8基因调控网络与地峡组织者:一个进化的视角。
中脑-后脑边界(MHB),也被称为峡组织者(IsO),在中脑后部和后脑前部的发育模式中起着关键作用。了解这个组织者的深度保守的基因调控网络的线路对进化和神经发育生物学都有重要的意义。各种分泌的信号分子和转录因子已被确定为MHB形成和功能的重要组成部分。其中,FGF8被认为是IsO活性的主要中介;它指导前后模式,促进MHB的规范和维护。虽然调控MHB发育的核心基因调控网络已经得到了很好的表征,但关键调控基因与控制其时空表达的顺式调控元件之间的直接相互作用仍然知之甚少。本文综述了脊椎动物中脑-后脑边界形成的基因调控网络的最新研究进展。我们从进化的角度特别关注Fgf8及其调控格局。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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