Publication:
Sertoli cell-specific ablation of miR-17-92 cluster significantly alters whole testis transcriptome without apparent phenotypic effects.

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Date

2018-05-07

Authors

Hurtado, Alicia
Real, Francisca M
Palomino, Rogelio
Carmona, Francisco David
Burgos, Miguel
Jimenez, Rafael
Barrionuevo, Francisco J

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Public Library of Science
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MicroRNAs are frequently organized into polycistronic clusters whose transcription is controlled by a single promoter. The miR-17-92 cluster is expressed in most embryonic and postnatal organs. It is a potent oncogene associated to several types of cancer and it is involved in several important developmental processes. In the testis, expression of the miR-17-92 cluster in the germ cells is necessary to maintain normal spermatogenesis. This cluster is also expressed in Sertoli cells (the somatic cells of the seminiferous tubules), which require miRNAs for correct cell development and survival. To study the possible role of miR-17-92 in Sertoli cell development and function and, in order to overcome the postnatal lethality of miR-17-92-/ mice, we conditionally deleted it in embryonic Sertoli cells shortly after the sex determination stage using an Amh-Cre allele. Mutant mice developed apparently normal testes and were fertile, but their testis transcriptomes contained hundreds of moderately deregulated genes, indicating that testis homeostasis is tightly controlled in mammals and that miR-17-92 expression in Sertoli cells contribute to maintain normal gene expression levels, but is unnecessary for testis development and function. Our results show that significant deregulation of hundreds of genes might have no functional consequences.

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MeSH Terms

Animals
Blood-Testis Barrier
Cell Cycle Proteins
Claudins
Genotype
Germ Cells
Male
Mice
Mice, Knockout
MicroRNAs
Nuclear Proteins
Phosphate-Binding Proteins
Proliferating Cell Nuclear Antigen
SOX9 Transcription Factor
Sertoli Cells
Testis
Transcriptome

DeCS Terms

Transcriptoma
Testículo
Ratones noqueados
Proteínas de unión a fosfato
Proteínas de ciclo celular
Proteínas Nucleares
MicroARNs
Genotipo
Factor de transcripción SOX9
Células de Sertoli
Células germinativas
Claudinas
Hematotesticular
Antígeno nuclear de célula en proliferación barrera

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Citation

Hurtado A, Real FM, Palomino R, Carmona FD, Burgos M, Jiménez R, et al. Sertoli cell-specific ablation of miR-17-92 cluster significantly alters whole testis transcriptome without apparent phenotypic effects. PLoS One. 2018 May 24;13(5):e0197685.