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在明显的细胞分化之前及分化过程中,视网膜祖细胞中的基因表达受到动态调控。

Gene expression is dynamically regulated in retinal progenitor cells prior to and during overt cellular differentiation.

作者信息

Dixit Rajiv, Tachibana Nobuhiko, Touahri Yacine, Zinyk Dawn, Logan Cairine, Schuurmans Carol

机构信息

Department of Biochemistry and Molecular Biology, University of Calgary, Calgary, AB, Canada; Hotchkiss Brain Institute, University of Calgary, Calgary, AB, Canada.

Department of Biochemistry and Molecular Biology, University of Calgary, Calgary, AB, Canada.

出版信息

Gene Expr Patterns. 2014 Jan;14(1):42-54. doi: 10.1016/j.gep.2013.10.003. Epub 2013 Oct 19.

Abstract

The retina is comprised of one glial and six neuronal populations that are generated from a multipotent pool of retinal progenitor cells (RPCs) during development. To give rise to these different cell types, RPCs undergo temporal identity transitions, displaying distinct gene expression profiles at different stages of differentiation. Little, however, is known about temporal differences in RPC identities prior to the onset of overt cellular differentiation, during the period when a retinal identity is gradually acquired. Here we examined the sequential onset of expression of regional markers (i.e., homeodomain transcription factors) and cell fate determinants (i.e., basic-helix-loop-helix transcription factors and neurogenic genes) in RPCs from the earliest appearance of a morphologically-distinct retina. By performing a comparative analysis of the expression of a panel of 27 homeodomain, basic-helix-loop-helix and Notch pathway genes between embryonic day (E) 8.75 and postnatal day (P) 9, we identified six distinct RPC molecular profiles. At E8.75, the earliest stage assayed, murine RPCs expressed five homeodomain genes and a single neurogenic gene (Pax6, Six3, Six6, Rx, Otx2, Hes1). This early gene expression profile was remarkably similar to that of 'early' RPCs in the amphibian ciliary marginal zone (CMZ), where RPCs are compartmentalised according to developmental stage, and homologs of Pax6, Six3 and Rx are expressed in the 'early' stem cell zone. As development proceeds, expression of additional homeodomain, bHLH and neurogenic genes was gradually initiated in murine RPCs, allowing distinct genetic profiles to also be defined at E9.5, E10.5, E12.5, E15.5 and P0. In addition, RPCs in the postnatal ciliary margin, where retinal stem cells are retained throughout life, displayed a unique molecular signature, expressing all of the early-onset genes as well as several late-onset markers, indicative of a 'mixed' temporal identity. Taken together, the identification of temporal differences in gene expression in mammalian RPCs during pre-neurogenic developmental stages leads to new insights into how regional identities are progressively acquired during development, while comparisons at later stages highlight the dynamic nature of gene expression in temporally distinct RPC pools.

摘要

视网膜由一种神经胶质细胞群和六种神经元细胞群组成,这些细胞群在发育过程中由多能视网膜祖细胞(RPC)产生。为了产生这些不同的细胞类型,RPC会经历时间身份转变,在分化的不同阶段表现出不同的基因表达谱。然而,在明显的细胞分化开始之前,即在逐渐获得视网膜身份的时期,关于RPC身份的时间差异却知之甚少。在这里,我们从形态学上明显不同的视网膜最早出现时开始,研究了RPC中区域标记物(即同源结构域转录因子)和细胞命运决定因子(即碱性螺旋环螺旋转录因子和神经源性基因)表达的顺序起始情况。通过对一组27个同源结构域、碱性螺旋环螺旋和Notch通路基因在胚胎期(E)8.75至出生后(P)9天之间的表达进行比较分析,我们确定了六种不同的RPC分子谱。在最早检测的阶段E8.75,小鼠RPC表达五个同源结构域基因和一个单一的神经源性基因(Pax6、Six3、Six6、Rx、Otx2、Hes1)。这种早期基因表达谱与两栖动物睫状边缘区(CMZ)中的“早期”RPC非常相似,在CMZ中,RPC根据发育阶段进行划分,Pax6、Six3和Rx的同源物在“早期”干细胞区表达。随着发育的进行,小鼠RPC中额外的同源结构域、bHLH和神经源性基因的表达逐渐开始,从而在E9.5、E10.5、E12.5、E15.5和P0时也能定义不同的基因谱。此外,在出生后的睫状边缘,视网膜干细胞终生保留,其中的RPC表现出独特的分子特征,表达所有早期起始基因以及几个晚期起始标记,表明其具有“混合”的时间身份。综上所述,对哺乳动物RPC在神经源性发育前期基因表达时间差异的鉴定,为发育过程中如何逐步获得区域身份提供了新的见解,而后期阶段的比较则突出了不同时间RPC池中基因表达的动态性质。

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