Alternative splicing changes are associated with pre-birth adaptation during lung development
Fidalgo, M. F.; Fonseca, C. G.; Caldas, P.; Raposo, A. A.; Balboni, T.; Rita Grosso, A.; Vasconcelos, F. F.; Franco, C. A.
Show abstract
Gas exchanges are ensured by lung alveoli, which are mainly composed by epithelial alveolar type 1 (AT1), alveolar type 2 (AT2) and capillary endothelial cells (ECs). Alveologenesis starts during late embryonic development and continues after birth and relies on extensive biochemical crosstalk between these cell types. How this crosstalk is modulated to anticipate and accommodate the radical changes occurring at birth is still unclear. We investigated the alternative splicing (AS) changes occurring during lung development at the embryonic to postnatal transition by performing RNAseq of mouse lungs at distinct developmental stages. We found that most of the AS changes occur at the embryonic to postnatal transition. In addition, we identified hnRNP A1, Cpeb4 and Elavl2/HuB as putative splicing regulators of this transition. We show that the AS of a major pro- angiogenic chemokine, vascular endothelial growth factor A (VEGFA), is differentially regulated at this transition. Remarkably, we found that there is a switch from the predominance of Vegfa 164 to Vegfa 188 just before birth specifically in AT1 cells, whilst in other cell populations Vegfa does not undergo AS changes. Moreover, we identified a novel Vegfa isoform generated by the retention of intron 5, Vegfa i5. Our results reveal a cell type-specific regulation of Vegfa AS that may constitute a pre- birth adaptation mechanism of the epithelial-endothelial crosstalk, which may be fundamental for the adaptation to breathing and may have implications for pathological conditions.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- PRDM3/16 Regulate Chromatin Accessibility Required for NKX2-1 Mediated Alveolar Epithelial Differentiation and Function 96%
- High-parametric protein maps reveal the spatial organization in early-developing human lung 96%
- Activation of JUN in fibroblasts promotes pro-fibrotic programme and modulates protective immunity 95%
Similar papers in this journal
- Diverse homeostatic and immunomodulatory roles of immune cells in the developing mouse lung revealed at single cell resolution 96%
- Airway Basal Cells Show Regionally Distinct Potential to Undergo Metaplastic Differentiation 96%
- Defective mesenchymal Bmpr1a-mediated BMP signaling causes congenital pulmonary cysts 95%
Similar papers in this journal
- Patterning the embryonic pulmonary mesenchyme 94%
- Spatiotemporally organized immunomodulatory response to SARS-CoV-2 virus in primary human broncho-alveolar epithelia 94%
- Integrative Analysis of Spatial Transcriptome with Single-cell Transcriptome and Single-cell Epigenome in Mouse Lungs after Immunization 94%
Similar papers in this journal
- ΔNp63 drives dysplastic alveolar remodeling and restricts epithelial plasticity upon severe lung injury 95%
- Single-cell and spatial transcriptomics reveal the pathogenesis of chronic granulomatous disease in a natural model 94%
- Single nuclei multiomic analyses identify human cardiac lymphatic endothelial cells associated with coronary arteries in the epicardium 94%
Similar papers in this journal
- Dynamic Hippo pathway activity underlies mesenchymal differentiation during lung alveolar morphogenesis 96%
- Morphogenic, molecular, and cellular adaptations for unidirectional airflow in the chicken lung 94%
- Identification of a myofibroblast differentiation program during neonatal lung development 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.