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脊椎动物视网膜中光感受器命运的决定

Photoreceptor Fate Determination in the Vertebrate Retina.

作者信息

Wang Sui, Cepko Constance L

机构信息

Department of Genetics and Department of Ophthalmology, Harvard Medical School, Boston, Massachusetts, United States 2Howard Hughes Medical Institute, Boston, Massachusetts, United States.

出版信息

Invest Ophthalmol Vis Sci. 2016 Apr 1;57(5):ORSFe1-6. doi: 10.1167/iovs.15-17672.

Abstract

Photoreceptors are highly specialized primary sensory neurons that sense light and initiate vision. This critical role is well demonstrated by the fact that visual impairment accompanies photoreceptor loss or dysfunction in many human diseases. With the remarkable advances in stem cell research, one therapeutic approach is to use stem cells to generate photoreceptors and then engraft them into diseased eyes. Knowledge of the molecular mechanisms that control photoreceptor genesis during normal development can greatly aid in the production of photoreceptor cells for this approach. This article will discuss advances in our understanding of the molecular mechanisms that regulate photoreceptor fate determination during development. Recent lineage studies have shown that there are distinct retinal progenitor cells (RPCs) that produce specific combinations of daughter cell types, including photoreceptors and other types of retinal cells. Gene regulatory networks, in which transcription factors interact via cis-regulatory DNA elements, have been discovered that operate within distinct RPCs, and/or newly postmitotic cells, to direct the choice of photoreceptor fate.

摘要

光感受器是高度特化的初级感觉神经元,可感知光线并启动视觉。许多人类疾病中,随着光感受器丧失或功能障碍会出现视力损害,这一事实充分证明了光感受器的这一关键作用。随着干细胞研究的显著进展,一种治疗方法是利用干细胞生成光感受器,然后将其植入患病眼睛。了解正常发育过程中控制光感受器发生的分子机制,对于通过这种方法生产光感受器细胞有极大帮助。本文将讨论我们对发育过程中调节光感受器命运决定的分子机制的理解进展。最近的谱系研究表明,存在不同的视网膜祖细胞(RPC),它们产生特定组合的子细胞类型,包括光感受器和其他类型的视网膜细胞。已经发现基因调控网络,其中转录因子通过顺式调控DNA元件相互作用,在不同的RPC和/或新的有丝分裂后细胞内发挥作用,以指导光感受器命运的选择。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fc33/5992959/ad5bb81fc827/i1552-5783-57-5-ORSFe1-f01.jpg

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