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骨骼肌的决定与分化:一个核心调控网络及其背景的故事

Skeletal muscle determination and differentiation: story of a core regulatory network and its context.

作者信息

Yun K, Wold B

机构信息

Biology Division 156-29, California Institute of Technology, Pasadena, CA 91125, USA.

出版信息

Curr Opin Cell Biol. 1996 Dec;8(6):877-89. doi: 10.1016/s0955-0674(96)80091-3.

Abstract

Regulation of skeletal muscle determination and differentiation in vertebrates centers on a core regulatory network which is composed of two families of transcription factors, the MyoD group basic helix-loop-helix (bHLH) muscle regulatory factors (MRFs) and the myocyte enhancer factor 2 (MEF2) group of MADS-box regulators. Members of this network interact with each other genetically and physically, and together they cooperate to positively regulate transcription of downstream muscle-specific differentiation genes. During development, the myogenic network can be activated or repressed in response to patterning signals, some of which have recently been identified. Once activated, the powerful myogenic activity of the core network can be modulated and held in check by a remarkably large group of negative regulators that operate on network components by diverse mechanisms. Recent discoveries highlight extensive parallels between myogenesis and peripheral neurogenesis in the structures of their respective regulatory networks and in the interaction of their bHLH networks with other regulatory circuits. Comparisons with Drosophila indicate that these ensembles of interacting molecular circuits have been highly conserved during evolution.

摘要

脊椎动物骨骼肌决定和分化的调控集中在一个核心调控网络上,该网络由两类转录因子组成,即MyoD家族的碱性螺旋-环-螺旋(bHLH)肌肉调节因子(MRFs)和MADS盒调节因子的肌细胞增强因子2(MEF2)家族。该网络的成员在遗传和物理上相互作用,它们共同协作以正向调节下游肌肉特异性分化基因的转录。在发育过程中,肌源性网络可根据模式信号被激活或抑制,其中一些模式信号最近已被确定。一旦被激活,核心网络强大的肌源性活性可被一大群负调节因子调节并控制,这些负调节因子通过多种机制作用于网络组件。最近的发现突出了肌生成和外周神经生成在各自调控网络结构以及它们的bHLH网络与其他调控回路相互作用方面的广泛相似之处。与果蝇的比较表明,这些相互作用的分子回路组合在进化过程中得到了高度保守。

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