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1.
Dev Biol ; 385(2): 433-47, 2014 Jan 15.
Artigo em Inglês | MEDLINE | ID: mdl-24211655

RESUMO

In mammalian ES cells, the transcription factors Klf4 and Klf2 contribute to maintenance of pluripotency and self-renewal and are regulated by Pou5f1/Oct4. In the early zebrafish embryo Pou5f1/Oct4 is necessary for expression of three Klf2/4 family members, klf2a, klf2b and klf17 (previously klf4b), similar to the regulation reported for mammalian ES cells. In this study, we analyzed blastula and gastrula stage Klf regulatory networks and their influence on zebrafish embryonic patterning. We show that Pou5f1 acts in combination with region-specific factors to activate klf2a, klf2b, and klf17 in the superficial cell layer of the embryo. In addition, Pou5f1 acts together with the BMP signaling pathway to activate and maintain expression of klf2a and klf2b in a ventral ectodermal domain. We used microarray expression profiles of klf2a, klf2b and klf17 knockdown and overexpression embryos to identify Klf target genes, which reveals that Klfs participate in specification of the extraembryonic enveloping layer (EVL). We discuss mechanistic implications of simultaneous activation of transcriptional targets by ubiquitous, like Pou5f1, and region-specific inducers, emerging as a common regulatory motif in early development.


Assuntos
Blástula/embriologia , Ectoderma/embriologia , Redes Reguladoras de Genes , Fatores de Transcrição Kruppel-Like/genética , Fator 3 de Transcrição de Octâmero/fisiologia , Proteínas de Peixe-Zebra/fisiologia , Peixe-Zebra/embriologia , Animais , Blástula/metabolismo , Proteínas Morfogenéticas Ósseas/metabolismo , Ectoderma/metabolismo , Transdução de Sinais
2.
Science ; 341(6149): 1005-9, 2013 Aug 30.
Artigo em Inglês | MEDLINE | ID: mdl-23950494

RESUMO

The development of multicellular animals is initially controlled by maternal gene products deposited in the oocyte. During the maternal-to-zygotic transition, transcription of zygotic genes commences, and developmental control starts to be regulated by zygotic gene products. In Drosophila, the transcription factor Zelda specifically binds to promoters of the earliest zygotic genes and primes them for activation. It is unknown whether a similar regulation exists in other animals. We found that zebrafish Pou5f1, a homolog of the mammalian pluripotency transcription factor Oct4, occupies SOX-POU binding sites before the onset of zygotic transcription and activates the earliest zygotic genes. Our data position Pou5f1 and SOX-POU sites at the center of the zygotic gene activation network of vertebrates and provide a link between zygotic gene activation and pluripotency control.


Assuntos
Regulação da Expressão Gênica no Desenvolvimento , Fator 3 de Transcrição de Octâmero/metabolismo , Ativação Transcricional , Proteínas de Peixe-Zebra/metabolismo , Peixe-Zebra/embriologia , Zigoto/metabolismo , Animais , Sítios de Ligação , DNA Polimerase II/metabolismo , Fator 3 de Transcrição de Octâmero/genética , Células-Tronco Pluripotentes/citologia , Células-Tronco Pluripotentes/fisiologia , Fatores de Transcrição SOXB1/metabolismo , Proteínas de Xenopus/metabolismo , Peixe-Zebra/genética , Proteínas de Peixe-Zebra/genética
3.
Dev Biol ; 356(2): 323-36, 2011 Aug 15.
Artigo em Inglês | MEDLINE | ID: mdl-21621531

RESUMO

Pou5f1/Oct-4 in mice is required for maintenance of embryonic pluripotent cell populations. Zebrafish pou5f1 maternal-zygotic mutant embryos (spiel ohne grenzen; MZspg) lack endoderm and have gastrulation and dorsoventral patterning defects. A contribution of Pou5f1 to the control of bmp2b, bmp4 and vox expression has been suggested, however the mechanisms remained unclear and are investigated in detail here. Low-level overexpression of a Pou5f1-VP16 activator fusion protein can rescue dorsalization in MZspg mutants, indicating that Pou5f1 acts as a transcriptional activator during dorsoventral patterning. Overexpression of larger quantities of Pou5f1-VP16 can ventralize wild-type embryos, while overexpression of a Pou5f1-En repressor fusion protein can dorsalize embryos. Lack of Pou5f1 causes a transient upregulation of fgf8a expression after mid-blastula transition, providing a mechanism for delayed activation of bmp2b in MZspg embryos. Overexpression of the Pou5f1-En repressor induces fgf8, suggesting an indirect mechanism of Pou5f1 control of fgf8a expression. Transcription of vox is strongly activated by Pou5f1-VP16 even when translation of zygotically expressed transcripts is experimentally inhibited by cycloheximide. In contrast, bmp2b and bmp4 are not activated under these conditions. We show that Pou5f1 binds to phylogenetically conserved Oct/Pou5f1 sites in the vox promoter, both in vivo (ChIP) and in vitro. Our data reveals a set of direct and indirect interactions of Pou5f1 with the BMP dorsoventral patterning network that serve to fine-tune dorsoventral patterning mechanisms and coordinate patterning with developmental timing.


Assuntos
Padronização Corporal , Fatores de Crescimento de Fibroblastos/genética , Proteínas de Homeodomínio/genética , Fator 3 de Transcrição de Octâmero/fisiologia , Proteínas Repressoras/genética , Proteínas de Peixe-Zebra/genética , Proteínas de Peixe-Zebra/fisiologia , Peixe-Zebra/embriologia , Animais , Sítios de Ligação , Proteína Morfogenética Óssea 2/genética , Proteína Morfogenética Óssea 7/genética , Cicloeximida/farmacologia , Regulação da Expressão Gênica no Desenvolvimento , Fator 3 de Transcrição de Octâmero/metabolismo , Filogenia , Transdução de Sinais , Ativação Transcricional , Proteínas de Peixe-Zebra/metabolismo
4.
Mol Syst Biol ; 6: 354, 2010.
Artigo em Inglês | MEDLINE | ID: mdl-20212526

RESUMO

The transcription factor POU5f1/OCT4 controls pluripotency in mammalian ES cells, but little is known about its functions in the early embryo. We used time-resolved transcriptome analysis of zebrafish pou5f1 MZspg mutant embryos to identify genes regulated by Pou5f1. Comparison to mammalian systems defines evolutionary conserved Pou5f1 targets. Time-series data reveal many Pou5f1 targets with delayed or advanced onset of expression. We identify two Pou5f1-dependent mechanisms controlling developmental timing. First, several Pou5f1 targets are transcriptional repressors, mediating repression of differentiation genes in distinct embryonic compartments. We analyze her3 gene regulation as example for a repressor in the neural anlagen. Second, the dynamics of SoxB1 group gene expression and Pou5f1-dependent regulation of her3 and foxD3 uncovers differential requirements for SoxB1 activity to control temporal dynamics of activation, and spatial distribution of targets in the embryo. We establish a mathematical model of the early Pou5f1 and SoxB1 gene network to demonstrate regulatory characteristics important for developmental timing. The temporospatial structure of the zebrafish Pou5f1 target networks may explain aspects of the evolution of the mammalian stem cell networks.


Assuntos
Regulação da Expressão Gênica no Desenvolvimento , Redes Reguladoras de Genes/genética , Fator 3 de Transcrição de Octâmero/genética , Fator 3 de Transcrição de Octâmero/metabolismo , Proteínas de Peixe-Zebra/genética , Proteínas de Peixe-Zebra/metabolismo , Peixe-Zebra/embriologia , Peixe-Zebra/genética , Animais , Sequência de Bases , Fatores de Transcrição Hélice-Alça-Hélice Básicos/genética , Fatores de Transcrição Hélice-Alça-Hélice Básicos/metabolismo , Padronização Corporal/genética , Diferenciação Celular/genética , Sequência Conservada , Elementos Facilitadores Genéticos/genética , Evolução Molecular , Perfilação da Expressão Gênica , Camundongos , Modelos Genéticos , Dados de Sequência Molecular , Mutação/genética , Proteínas Repressoras/genética , Proteínas Repressoras/metabolismo , Fatores de Transcrição SOXB1/genética , Fatores de Transcrição SOXB1/metabolismo , Fatores de Tempo , Zigoto/metabolismo
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