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器官大小调控中的河马信号通路。

Hippo signaling in organ size control.

作者信息

Pan Duojia

机构信息

Department of Molecular Biology and Genetics, Johns Hopkins University School of Medicine, Baltimore, Maryland 21205, USA.

出版信息

Genes Dev. 2007 Apr 15;21(8):886-97. doi: 10.1101/gad.1536007.

Abstract

The control of organ (or organism) size is a fundamental aspect of life that has long captured human imagination. What makes an elephant grow a million times larger than a mouse? How do our two hands develop independently of each other yet reach very similar size? How does a liver precisely regenerate its original mass when two-thirds of it is removed? The recent discovery of a novel signaling network in Drosophila, known as the Hippo (Hpo) pathway, might provide an important entry point to these fascinating questions. The Hpo pathway consists of several negative growth regulators acting in a kinase cascade that ultimately phosphorylates and inactivates Yorkie (Yki), a transcriptional coactivator that positively regulates cell growth, survival, and proliferation. Components of the Hpo pathway are highly conserved throughout evolution, suggesting that this pathway may function as a global regulator of tissue homeostasis in all metazoan animals. Here, I provide a historical review of this potent growth-regulatory pathway and highlight outstanding questions that will likely be the focus of future investigation.

摘要

器官(或生物体)大小的控制是生命的一个基本方面,长期以来一直吸引着人类的想象力。是什么让大象比老鼠大一百万倍?我们的两只手是如何独立发育却又长得非常相似的大小?当肝脏被切除三分之二时,它是如何精确地再生到原来的质量的?最近在果蝇中发现的一种新的信号网络,即河马(Hpo)通路,可能为这些引人入胜的问题提供一个重要的切入点。Hpo通路由几个负生长调节因子组成,它们在一个激酶级联反应中起作用,最终磷酸化并使Yorkie(Yki)失活,Yorkie是一种转录共激活因子,可正向调节细胞生长、存活和增殖。Hpo通路的组成部分在整个进化过程中高度保守,这表明该通路可能作为所有后生动物组织稳态的全局调节因子发挥作用。在这里,我对这条强大的生长调节通路进行了历史回顾,并突出了一些可能成为未来研究重点的悬而未决的问题。

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