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1.
Development ; 146(21)2019 11 01.
Artigo em Inglês | MEDLINE | ID: mdl-31676551

RESUMO

The freshwater polyp Hydra provides a potent model system for investigating the conditions that promote wound healing, reactivation of a developmental process and, ultimately, regeneration of an amputated body part. Hydra polyps can also be dissociated to the single cell level and can regenerate a complete body axis from aggregates, behaving as natural organoids. In recent years, the ability to exploit Hydra has been expanded with the advent of new live-imaging approaches, genetic manipulations that include stable transgenesis, gene silencing and genome editing, and the accumulation of high-throughput omics data. In this Primer, we provide an overview of Hydra as a model system for studying regeneration, highlighting recent results that question the classical self-enhancement and long-range inhibition model supposed to drive Hydra regeneration. We underscore the need for integrative explanations incorporating biochemical as well as mechanical signalling.


Assuntos
Regulação da Expressão Gênica no Desenvolvimento , Hydra/citologia , Hydra/fisiologia , Modelos Biológicos , Regeneração/fisiologia , Animais , Edição de Genes , Inativação Gênica , Homeostase , Organoides , Filogenia , Transdução de Sinais , Células-Tronco/citologia , Transgenes , Proteínas Wnt/metabolismo , beta Catenina/metabolismo
2.
Nat Commun ; 10(1): 312, 2019 01 18.
Artigo em Inglês | MEDLINE | ID: mdl-30659200

RESUMO

Polyps of the cnidarian Hydra maintain their adult anatomy through two developmental organizers, the head organizer located apically and the foot organizer basally. The head organizer is made of two antagonistic cross-reacting components, an activator, driving apical differentiation and an inhibitor, preventing ectopic head formation. Here we characterize the head inhibitor by comparing planarian genes down-regulated when ß-catenin is silenced to Hydra genes displaying a graded apical-to-basal expression and an up-regulation during head regeneration. We identify Sp5 as a transcription factor that fulfills the head inhibitor properties: leading to a robust multiheaded phenotype when knocked-down in Hydra, acting as a transcriptional repressor of Wnt3 and positively regulated by Wnt/ß-catenin signaling. Hydra and zebrafish Sp5 repress Wnt3 promoter activity while Hydra Sp5 also activates its own expression, likely via ß-catenin/TCF interaction. This work identifies Sp5 as a potent feedback loop inhibitor of Wnt/ß-catenin signaling, a function conserved across eumetazoan evolution.


Assuntos
Hydra/genética , Peptídeos e Proteínas de Sinalização Intercelular/genética , Proteína Wnt3/genética , beta Catenina/genética , Animais , Evolução Biológica , Padronização Corporal/genética , Regulação da Expressão Gênica no Desenvolvimento , Cabeça/crescimento & desenvolvimento , Cabeça/fisiologia , Hydra/crescimento & desenvolvimento , Peptídeos e Proteínas de Sinalização Intercelular/metabolismo , Planárias/genética , Interferência de RNA , Regeneração/fisiologia , Transdução de Sinais , Proteína Wnt3/metabolismo , Peixe-Zebra/embriologia , Peixe-Zebra/genética , beta Catenina/metabolismo
3.
Genome Biol ; 12(8): R76, 2011 Aug 16.
Artigo em Inglês | MEDLINE | ID: mdl-21846378

RESUMO

BACKGROUND: Planarian flatworms can regenerate their head, including a functional brain, within less than a week. Despite the enormous potential of these animals for medical research and regenerative medicine, the mechanisms of regeneration and the molecules involved remain largely unknown. RESULTS: To identify genes that are differentially expressed during early stages of planarian head regeneration, we generated a de novo transcriptome assembly from more than 300 million paired-end reads from planarian fragments regenerating the head at 16 different time points. The assembly yielded 26,018 putative transcripts, including very long transcripts spanning multiple genomic supercontigs, and thousands of isoforms. Using short-read data from two platforms, we analyzed dynamic gene regulation during the first three days of head regeneration. We identified at least five different temporal synexpression classes, including genes specifically induced within a few hours after injury. Furthermore, we characterized the role of a conserved Runx transcription factor, smed-runt-like1. RNA interference (RNAi) knockdown and immunofluorescence analysis of the regenerating visual system indicated that smed-runt-like1 encodes a transcriptional regulator of eye morphology and photoreceptor patterning. CONCLUSIONS: Transcriptome sequencing of short reads allowed for the simultaneous de novo assembly and differential expression analysis of transcripts, demonstrating highly dynamic regulation during head regeneration in planarians.


Assuntos
Genoma Helmíntico , Proteínas de Helminto/genética , Planárias/genética , Regeneração/genética , Transcriptoma , Animais , Padronização Corporal/genética , Encéfalo/crescimento & desenvolvimento , Subunidades alfa de Fatores de Ligação ao Core/genética , Subunidades alfa de Fatores de Ligação ao Core/metabolismo , Regulação da Expressão Gênica no Desenvolvimento , Cabeça/crescimento & desenvolvimento , Proteínas de Helminto/metabolismo , Hibridização In Situ , Planárias/metabolismo , Interferência de RNA , Análise de Sequência de RNA , Transdução de Sinais , Fatores de Transcrição/genética , Fatores de Transcrição/metabolismo
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