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文昌鱼中酪氨酸激酶受体下游信号通路的作用因子。

Actors of the tyrosine kinase receptor downstream signaling pathways in amphioxus.

作者信息

Bertrand Stéphanie, Campo-Paysaa Florent, Camasses Alain, García-Fernàndez Jordi, Escrivà Héctor

机构信息

Departament de Genètica, Facultat de Biologia, Universitat de Barcelona, Av. Diagonal 645, edifici annex, planta, 08028 Barcelona, Spain.

出版信息

Evol Dev. 2009 Jan-Feb;11(1):13-26. doi: 10.1111/j.1525-142X.2008.00299.x.

Abstract

One of the major goals of evo-developmentalists is to understand how the genetic mechanisms controlling embryonic development have evolved to create the current diversity of bodyplans that we encounter in the animal kingdom. Tyrosine kinase receptors (RTKs) are transmembrane receptors present in all metazoans known to control several developmental processes. They act via the activation of various cytoplasmic signaling cascades, including the mitogen-activated protein kinase (MAPK), the PI3K/Akt, and the phospholipase C-gamma (PLCgamma)/protein kinase C (PKC) pathways. In order to address the evolution of these three pathways and their involvement during embryogenesis in chordates, we took advantage of the complete genome sequencing of a key evolutionarily positioned species, the cephalochordate amphioxus, and searched for the complete gene set of the three signaling pathways. We found that the amphioxus genome contains all of the most important modules of the RTK-activated cascades, and looked at the embryonic expression of two genes selected from each cascade. Our data suggest that although the PI3K/Akt pathway may have ubiquitous functions, the MAPK and the PLCgamma/PKC cascades may play specific roles in amphioxus development. Together with data known in vertebrates, the expression pattern of PKC in amphioxus suggests that the PLCgamma/PKC cascade was implicated in neural development in the ancestor of all chordates.

摘要

进化发育生物学家的主要目标之一是了解控制胚胎发育的遗传机制是如何演化的,从而造就了我们在动物王国中所见到的当前身体结构的多样性。酪氨酸激酶受体(RTKs)是所有后生动物中存在的跨膜受体,已知其控制多个发育过程。它们通过激活各种细胞质信号级联反应发挥作用,包括丝裂原活化蛋白激酶(MAPK)、PI3K/Akt以及磷脂酶C-γ(PLCγ)/蛋白激酶C(PKC)途径。为了研究这三条途径的进化以及它们在脊索动物胚胎发生过程中的作用,我们利用了一种关键的处于进化关键位置的物种——头索动物文昌鱼的全基因组测序结果,寻找这三条信号途径的完整基因集。我们发现文昌鱼基因组包含了RTK激活级联反应的所有最重要模块,并研究了从每个级联反应中挑选出的两个基因的胚胎表达情况。我们的数据表明,虽然PI3K/Akt途径可能具有普遍功能,但MAPK和PLCγ/PKC级联反应可能在文昌鱼发育中发挥特定作用。结合脊椎动物已知的数据,文昌鱼中PKC的表达模式表明,PLCγ/PKC级联反应与所有脊索动物祖先的神经发育有关。

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