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Bockelmann, E.

Publications and source records attributed to Bockelmann, E..

2 recordsLinked to original sources

Vegfc-Vegfr3-Dependent Lymphatic Sprouting Requires Apelin Signaling

While Vegfc-Vegfr3 signaling is the primary driver of lymphangiogenesis, the role of G protein-coupled receptors (GPCRs), the most successful class of druggable targets in the human genome, remains far less understood. A previous study has implicated Apelin signaling and its receptor Apelin receptor (Aplnr), a class A GPCR, in lymphatic development, yet the underlying cellular and molecular mechanisms remain unclear. Here, we show that Apelin signaling is indispensable for Vegfc-Vegfr3-dependent lymphatic sprouting and promotes lymphatic endothelial cell (LEC) migration without affecting LEC specification. Loss of Apelin signaling resulted in defective sprouting of ECs from the posterior cardinal vein (PCV) and subsequent failure of lymphatic vessel formation. Conversely, Apelin overexpression induces ectopic endothelial extensions from the PCV, an effect that is suppressed by reducing Vegfr3 signaling. Mechanistically, we show that Vegfc signaling through ERK activation regulates Aplnr expression. We propose that the specific upregulation of Aplnrb in LECs renders them migration-competent, establishing Apelin signaling as a critical and non-redundant regulator of lymphatic sprouting. Overall, our results reveal a tightly coordinated signaling axis between growth factor and GPCR pathways that governs lymphatic endothelial behavior.

developmental biology↗

Generation of adult hippocampal neural stem cells occurs in the early postnatal dentate gyrus and depends on cyclin D2

In the hippocampus, lifelong neurogenesis is maintained by a pool of multipotent adult neural stem cells (aNSCs) residing in the subgranular zone of the dentate gyrus (DG). Yet, the mechanisms guiding the transition of NSCs from developmental to adult remain unclear. By using nestin-reporter mice deficient for D2, a cyclin expressed mainly postnatally, we show that the aNSC pool is established through D2-dependent proliferation during the first two weeks of life. The absence of D2 allows the normal development of the DG until birth but prevents the postnatal formation of radial glia-like aNSCs. Additionally, retroviral fate mapping demonstrates that aNSCs are born on-site from precursors located in the DG shortly after birth. Altogether, our data suggest that aNSCs are a population distinct from developmental NSCs and thus imply that adult hippocampal neurogenesis is not a mere continuation of development.

neuroscience↗