Komada Munekazu
Division of Cell Biology and Neuroscience, Department of Morphological and Physiological Sciences, and Research and Education Program for Life Science, University of Fukui, Fukui, Japan.
Congenit Anom (Kyoto). 2012 Jun;52(2):72-7. doi: 10.1111/j.1741-4520.2012.00368.x.
Sonic hedgehog (Shh) acts as a morphogen in normal development of various vertebrate tissues and organs. Shh signaling is essential for patterning and cell-fate specification, particularly in the central nervous system. Shh signaling plays different roles depending on its concentration, area, and timing of exposure. During the development of the neocortex, a low level of Shh is expressed in the neural stem/progenitor cells as well as in mature neurons in the dorsal telencephalon. Shh signaling in neocortex development has been shown to regulate cell cycle kinetics of radial glial cells and intermediate progenitor cells, thereby maintaining the proliferation, survival and differentiation of neurons in the neocortex. During the development of the telencephalon, endogenous Shh signaling is involved in the transition of slow-cycling neural stem cells to fast-cycling neural progenitor cells. It seems that high-level Shh signaling in the ventral telencephalon is essential for ventral specification, while low-level Shh signaling in the dorsal telencephalon plays important roles in the fine-tuning of cell cycle kinetics. The Shh levels and multiple functions of Shh signaling are important for proper corticogenesis in the developing brain. The present paper discusses the roles of Shh signaling in the proliferation and differentiation of neural stem/progenitor cells.
音猬因子(Shh)在各种脊椎动物组织和器官的正常发育中作为一种形态发生素发挥作用。Shh信号通路对于模式形成和细胞命运特化至关重要,尤其是在中枢神经系统中。Shh信号通路根据其浓度、作用区域和暴露时间发挥不同的作用。在新皮质发育过程中,低水平的Shh在神经干/祖细胞以及端脑背侧的成熟神经元中表达。新皮质发育中的Shh信号通路已被证明可调节放射状胶质细胞和中间祖细胞的细胞周期动力学,从而维持新皮质中神经元的增殖、存活和分化。在端脑发育过程中,内源性Shh信号通路参与慢循环神经干细胞向快循环神经祖细胞的转变。似乎端脑腹侧的高水平Shh信号通路对于腹侧特化至关重要,而端脑背侧的低水平Shh信号通路在细胞周期动力学的微调中发挥重要作用。Shh的水平和Shh信号通路的多种功能对于发育中大脑的正常皮质发生至关重要。本文讨论了Shh信号通路在神经干/祖细胞增殖和分化中的作用。