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Discovering genes and microRNAs involved in human lung development unveils IGFBP3/miR-34a dynamics and their relevance for alveolar differentiation.
Acosta-Plasencia, Melissa; Castellano, Joan J; Díaz, Tania; He, Yangyi; Marrades, Ramón M; Navarro, Alfons.
Afiliación
  • Acosta-Plasencia M; Molecular Oncology and Embryology Laboratory, Human Anatomy and Embryology Unit, Department of Surgery and Medical Specializations, Faculty of Medicine and Health Sciences, Universitat de Barcelona (UB), c. Casanova 143, 08036, Barcelona, Spain.
  • Castellano JJ; Molecular Oncology and Embryology Laboratory, Human Anatomy and Embryology Unit, Department of Surgery and Medical Specializations, Faculty of Medicine and Health Sciences, Universitat de Barcelona (UB), c. Casanova 143, 08036, Barcelona, Spain.
  • Díaz T; Herbert Irving Comprehensive Cancer Center, Columbia University, New York, NY, 10032, USA.
  • He Y; Molecular Oncology and Embryology Laboratory, Human Anatomy and Embryology Unit, Department of Surgery and Medical Specializations, Faculty of Medicine and Health Sciences, Universitat de Barcelona (UB), c. Casanova 143, 08036, Barcelona, Spain.
  • Marrades RM; Molecular Oncology and Embryology Laboratory, Human Anatomy and Embryology Unit, Department of Surgery and Medical Specializations, Faculty of Medicine and Health Sciences, Universitat de Barcelona (UB), c. Casanova 143, 08036, Barcelona, Spain.
  • Navarro A; School of Basic Medical Sciences, Chengdu University, Chengdu, 610106, China.
Stem Cell Res Ther ; 15(1): 263, 2024 Aug 26.
Article en En | MEDLINE | ID: mdl-39183355
ABSTRACT

BACKGROUND:

During pseudoglandular stage of the human lung development the primitive bronchial buds are initially conformed by simple tubules lined by endoderm-derived epithelium surrounded by mesenchyme, which will progressively branch into airways and start to form distal epithelial saculles. For first time alveolar type II (AT2) pneumocytes appears. This study aims to characterize the genes and microRNAs involved in this differentiation process and decipher its role in the starting alveolar differentiation.

METHODS:

Gene and microRNA profiling was performed in human embryonic lungs from 7 to 12 post conception weeks (pcw). Protein expression location of candidate genes were analyzed by immunofluorescense in embryonic lung tissue sections. mRNA/miRNA target pairs were identified using computational approaches and their expression was studied in purified epithelial/mesenchymal cell populations and in isolated tips and stalks from the bronchial tree. Additionally, silencing experiments in human embryonic lung mesenchymal cells and in human embryonic tip-derived lung organoids were performed, as well as organoid differentiation studies. AT2 cell markers were studied by qRT-PCR and by immunofluorescence. The TGFB-ß phosphorylated pathways was analyzed with membrane protein arrays. Lung explants were cultured in air/liquid interface with/without peptides.

RESULTS:

We identified 88 differentially expressed genes, including IGFBP3. Although IGFBP3 mRNA was detected in both epithelial and mesenchymal populations, the protein was restricted to the epithelium, indicating post-transcriptional regulation preventing IGFBP3 protein expression in the mesenchyme. MicroRNA profiling identified miR-34a as an IGFBP3 regulator. miR-34a was up-regulated in mesenchymal cells, and its silencing in human embryonic lung mesenchymal cells increased IGFBP3 levels. Additionally, IGFBP3 expression showed a marked downregulation from 7 to 12 pcw, suggesting its involvement in the differentiation process. The differentiation of human tip-derived lung embryonic organoids showed a drastic reduction in IGFBP3, supported by the scRNAseq data. IGFBP3 silencing in organoids activated an alveolar-like differentiation process characterized by stem cell markers downregulation and upregulation of AT2 markers. This process was mediated by TGFß signalling inhibition and BMP pathway activation.

CONCLUSIONS:

The IGFBP3/miR-34a axis restricts IGFBP3 expression in the embryonic undifferentiated lung epithelium, and the progressive downregulation of IGFBP3 during the pseudoglandular stage is required for alveolar differentiation.
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Texto completo: 1 Banco de datos: MEDLINE Asunto principal: Diferenciación Celular / Proteína 3 de Unión a Factor de Crecimiento Similar a la Insulina / MicroARNs / Pulmón Límite: Humans Idioma: En Revista: Stem Cell Res Ther Año: 2024 Tipo del documento: Article País de afiliación: España

Texto completo: 1 Banco de datos: MEDLINE Asunto principal: Diferenciación Celular / Proteína 3 de Unión a Factor de Crecimiento Similar a la Insulina / MicroARNs / Pulmón Límite: Humans Idioma: En Revista: Stem Cell Res Ther Año: 2024 Tipo del documento: Article País de afiliación: España