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视网膜特异性基因QR1在分化过程中的转录发育调控:POU家族因子的参与。

Developmental control of transcription of a retina-specific gene, QR1, during differentiation: involvement of factors from the POU family.

作者信息

Pierani A, Pouponnot C, Calothy G

机构信息

Unité de Recherche Associée 1443 du Centre National de la Recherche Scientifique, Institut Curie, Centre Universitaire, Orsay, France.

出版信息

Mol Cell Biol. 1995 Feb;15(2):642-52. doi: 10.1128/MCB.15.2.642.

Abstract

Developmental control of gene expression often results from the coupling of growth arrest with the establishment of differentiation programs. QR1 is a gene specifically expressed in retinas during the late phase of embryogenesis. At this stage neuroectodermal precursors have reached terminal mitosis and are undergoing differentiation into distinct cell types. Transcription of the QR1 gene is tightly regulated during retinal development: this gene is expressed between embryonic day 9 (ED9) and ED17 and is completely repressed at hatching in quail. Moreover, QR1 transcription is downregulated when postmitotic neural retina cells are induced to proliferate by pp60v-src. We studied the stage-dependent transcriptional control of this gene during quail neural retina (QNR) cell development. Transient transfection experiments with QR1/CAT constructs at various stages of development showed that a region located between -935 and -1265 bp upstream of the transcription start site is necessary to promote transcription in retina cells during the late phase of embryonal development (QNR9, corresponding to ED9). By in vivo footprinting assays we identified at least two elements that are occupied by DNA-protein complexes in QNR cells: the A and B boxes. The A box allows formation of several biochemically distinct complexes: C1, C2, C3, and C4. Formation of the C2 complex mainly during early stages (ED7) and of C2, C3, and C4 complexes during postnatal life correlates with repression of QR1 transcription, whereas the C1 complex is strongly induced at ED11 when the QR1 gene is expressed. We previously showed that C1 was involved in downregulation of QR1 transcription by pp60v-src. Several complexes are also formed on the B box. We show that these complexes are exclusively present in neural tissues and that they involve members of the POU family of transcription factors. Mutations of each one of the two regions which abolish the binding of the C1 factor(s) on the A box and of the POU factor(s) on the B box also prevent stimulation of QR1 transcription in QNR9. Therefore, both elements appear to be required for the stage-specific transcription of the QR1 gene. We also show that the regulatory region from position -1265 to position -935 is able to confer stage-specific transcription upon a heterologous promoter (thymidine kinase). Indeed, this region stimulates transcription in differentiating retinas (QNR9) and represses transcription in terminally differentiated retinas (QNR17, corresponding to postnatal life). Our results suggest that cell growth regulation and developmental control are coordinated through the A and B boxes in regulating QR1 transcription during retinal differentiation.

摘要

基因表达的发育控制通常源于生长停滞与分化程序建立的耦合。QR1是一个在胚胎发育后期视网膜中特异性表达的基因。在此阶段,神经外胚层前体细胞已进入终末有丝分裂,并正在分化为不同的细胞类型。QR1基因的转录在视网膜发育过程中受到严格调控:该基因在胚胎第9天(ED9)至ED17之间表达,在鹌鹑孵化时完全被抑制。此外,当有丝分裂后的神经视网膜细胞被pp60v-src诱导增殖时,QR1转录会下调。我们研究了鹌鹑神经视网膜(QNR)细胞发育过程中该基因的阶段依赖性转录控制。在发育的各个阶段用QR1/CAT构建体进行瞬时转染实验表明,转录起始位点上游-935至-1265 bp之间的区域对于在胚胎发育后期(QNR9,对应于ED9)促进视网膜细胞中的转录是必需的。通过体内足迹分析,我们在QNR细胞中鉴定出至少两个被DNA-蛋白质复合物占据的元件:A盒和B盒。A盒允许形成几种生化性质不同的复合物:C1、C2、C3和C4。C2复合物主要在早期阶段(ED7)形成,而C2、C3和C4复合物在出生后形成,这与QR1转录的抑制相关,而C1复合物在QR1基因表达的ED11时被强烈诱导。我们之前表明C1参与了pp60v-src对QR1转录的下调。B盒上也形成了几种复合物。我们表明这些复合物仅存在于神经组织中,并且它们涉及POU转录因子家族的成员。消除A盒上C1因子结合以及B盒上POU因子结合的两个区域中的每一个的突变也会阻止QNR9中QR1转录的刺激。因此,这两个元件似乎都是QR1基因阶段特异性转录所必需的。我们还表明,从-1265位到-935位的调控区域能够赋予异源启动子(胸苷激酶)阶段特异性转录。事实上,该区域在分化的视网膜(QNR9)中刺激转录,而在终末分化的视网膜(QNR17,对应于出生后)中抑制转录。我们的结果表明,在视网膜分化过程中,细胞生长调节和发育控制通过A盒和B盒在调节QR1转录中相互协调。

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