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Biagioni, S.

Publications and source records attributed to Biagioni, S..

2 recordsLinked to original sources

Dbx2, an aging-related homeobox gene, inhibits the proliferation of adult neural progenitors

The subventricular zone (SVZ) of the adult mouse brain contains quiescent neural stem cells, which can be activated (aNSCs) to generate transit amplifying progenitors (TAPs), neuroblasts (NBs) and newborn neurons. Neurogenesis declines during aging, as the aged SVZ niche causes transcriptomic changes that promote NSC quiescence and decrease proliferating neural/stem progenitor cells (NSPCs). The transcription factors mediating these changes, however, remain unclear. We previously found that the homeobox gene Dbx2 is upregulated in aged SVZ NSPCs and inhibits NSPC culture growth. Here, we report that Dbx2 is repressed by Epidermal Growth Factor Receptor signaling, which promotes NSPC proliferation and decreases in the aged SVZ. We show that Dbx2 inhibits NSPC proliferation by hindering the G2/M transition and elucidate the transcriptomic networks modulated by Dbx2, highlighting its role in the downregulation of the cell cycle molecular pathways. Accordingly, Dbx2 function is negatively correlated with the transcriptional signatures of proliferative NSPCs (aNSCs, TAPs and early NBs). These results point to Dbx2 as a molecular node relaying the anti-neurogenic input of the aged niche to the NSPC transcriptome.

developmental biology↗

Cellular redox metabolism is modulated by the distinct localization of cyclic nucleotide phosphodiesterase 5A isoforms

3-5 cyclic nucleotide phosphodiesterases (PDEs) are a family of evolutionary conserved cAMP and/or cGMP hydrolysing enzymes, components of transduction pathways regulating crucial aspects of cell life. Among them, cGMP-specific PDE5, being a regulator of vascular smooth muscle contraction, is the molecular target of several drugs used to treat erectile dysfunction and pulmonary hypertension. Production of full-length murine PDE5A isoforms in the milk-yeast Kluyveromyces lactis showed that the quaternary assembly of MmPDE5A1 is a mixture of dimers and tetramers, while MmPDE5A2 and MmPDE5A3 only assembled as dimers. We showed that the N-terminal peptide is responsible for the tetramer assembly of MmPDE5A1, while that of MmPDE5A2 for its mitochondrial localization. Overexpression of the three isoforms alters at different levels the cAMP/cGMP equilibrium as well as the NAD(P)+/NAD(P)H balance and induces a metabolic switch from oxidative to fermentative. In particular, the mitochondrial localization of MmPDE5A2 unveiled the existence of a cAMP-cGMP signaling cascade in this organelle, for which we propose a metabolic model that could explain the role of PDE5 in some cardiomyopathies and some of the side effects of its inhibitors.

cell biology↗