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EGFL7 loss correlates with increased VEGF-D expression, upregulating hippocampal adult neurogenesis and improving spatial learning and memory

Neural stem cells reside in the subgranular zone, a specialized neurogenic niche of the hippocampus. Throughout adulthood, these cells give rise to neurons in the dentate gyrus, playing an important role in learning and memory. Given that these core cognitive processes are disrupted in numerous dise...

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Autores principales: Barth, Kathrin, Vasić, Verica, McDonald, Brennan, Heinig, Nora, Wagner, Marc-Christoph, Schumann, Ulrike, Röhlecke, Cora, Bicker, Frank, Schumann, Lana, Radyushkin, Konstantin, Baumgart, Jan, Tenzer, Stefan, Zipp, Frauke, Meinhardt, Matthias, Alitalo, Kari, Tegeder, Irmgard, Schmidt, Mirko H. H.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer International Publishing 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9886625/
https://www.ncbi.nlm.nih.gov/pubmed/36715759
http://dx.doi.org/10.1007/s00018-023-04685-z
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author Barth, Kathrin
Vasić, Verica
McDonald, Brennan
Heinig, Nora
Wagner, Marc-Christoph
Schumann, Ulrike
Röhlecke, Cora
Bicker, Frank
Schumann, Lana
Radyushkin, Konstantin
Baumgart, Jan
Tenzer, Stefan
Zipp, Frauke
Meinhardt, Matthias
Alitalo, Kari
Tegeder, Irmgard
Schmidt, Mirko H. H.
author_facet Barth, Kathrin
Vasić, Verica
McDonald, Brennan
Heinig, Nora
Wagner, Marc-Christoph
Schumann, Ulrike
Röhlecke, Cora
Bicker, Frank
Schumann, Lana
Radyushkin, Konstantin
Baumgart, Jan
Tenzer, Stefan
Zipp, Frauke
Meinhardt, Matthias
Alitalo, Kari
Tegeder, Irmgard
Schmidt, Mirko H. H.
author_sort Barth, Kathrin
collection PubMed
description Neural stem cells reside in the subgranular zone, a specialized neurogenic niche of the hippocampus. Throughout adulthood, these cells give rise to neurons in the dentate gyrus, playing an important role in learning and memory. Given that these core cognitive processes are disrupted in numerous disease states, understanding the underlying mechanisms of neural stem cell proliferation in the subgranular zone is of direct practical interest. Here, we report that mature neurons, neural stem cells and neural precursor cells each secrete the neurovascular protein epidermal growth factor-like protein 7 (EGFL7) to shape this hippocampal niche. We further demonstrate that EGFL7 knock-out in a Nestin-CreERT2-based mouse model produces a pronounced upregulation of neurogenesis within the subgranular zone. RNA sequencing identified that the increased expression of the cytokine VEGF-D correlates significantly with the ablation of EGFL7. We substantiate this finding with intraventricular infusion of VEGF-D upregulating neurogenesis in vivo and further show that VEGF-D knock-out produces a downregulation of neurogenesis. Finally, behavioral studies in EGFL7 knock-out mice demonstrate greater maintenance of spatial memory and improved memory consolidation in the hippocampus by modulation of pattern separation. Taken together, our findings demonstrate that both EGFL7 and VEGF-D affect neurogenesis in the adult hippocampus, with the ablation of EGFL7 upregulating neurogenesis, increasing spatial learning and memory, and correlating with increased VEGF-D expression. SUPPLEMENTARY INFORMATION: The online version contains supplementary material available at 10.1007/s00018-023-04685-z.
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spelling pubmed-98866252023-02-01 EGFL7 loss correlates with increased VEGF-D expression, upregulating hippocampal adult neurogenesis and improving spatial learning and memory Barth, Kathrin Vasić, Verica McDonald, Brennan Heinig, Nora Wagner, Marc-Christoph Schumann, Ulrike Röhlecke, Cora Bicker, Frank Schumann, Lana Radyushkin, Konstantin Baumgart, Jan Tenzer, Stefan Zipp, Frauke Meinhardt, Matthias Alitalo, Kari Tegeder, Irmgard Schmidt, Mirko H. H. Cell Mol Life Sci Original Article Neural stem cells reside in the subgranular zone, a specialized neurogenic niche of the hippocampus. Throughout adulthood, these cells give rise to neurons in the dentate gyrus, playing an important role in learning and memory. Given that these core cognitive processes are disrupted in numerous disease states, understanding the underlying mechanisms of neural stem cell proliferation in the subgranular zone is of direct practical interest. Here, we report that mature neurons, neural stem cells and neural precursor cells each secrete the neurovascular protein epidermal growth factor-like protein 7 (EGFL7) to shape this hippocampal niche. We further demonstrate that EGFL7 knock-out in a Nestin-CreERT2-based mouse model produces a pronounced upregulation of neurogenesis within the subgranular zone. RNA sequencing identified that the increased expression of the cytokine VEGF-D correlates significantly with the ablation of EGFL7. We substantiate this finding with intraventricular infusion of VEGF-D upregulating neurogenesis in vivo and further show that VEGF-D knock-out produces a downregulation of neurogenesis. Finally, behavioral studies in EGFL7 knock-out mice demonstrate greater maintenance of spatial memory and improved memory consolidation in the hippocampus by modulation of pattern separation. Taken together, our findings demonstrate that both EGFL7 and VEGF-D affect neurogenesis in the adult hippocampus, with the ablation of EGFL7 upregulating neurogenesis, increasing spatial learning and memory, and correlating with increased VEGF-D expression. SUPPLEMENTARY INFORMATION: The online version contains supplementary material available at 10.1007/s00018-023-04685-z. Springer International Publishing 2023-01-30 2023 /pmc/articles/PMC9886625/ /pubmed/36715759 http://dx.doi.org/10.1007/s00018-023-04685-z Text en © The Author(s) 2023, corrected publication 2023 https://creativecommons.org/licenses/by/4.0/Open AccessThis article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons licence, and indicate if changes were made. The images or other third party material in this article are included in the article's Creative Commons licence, unless indicated otherwise in a credit line to the material. If material is not included in the article's Creative Commons licence and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this licence, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Original Article
Barth, Kathrin
Vasić, Verica
McDonald, Brennan
Heinig, Nora
Wagner, Marc-Christoph
Schumann, Ulrike
Röhlecke, Cora
Bicker, Frank
Schumann, Lana
Radyushkin, Konstantin
Baumgart, Jan
Tenzer, Stefan
Zipp, Frauke
Meinhardt, Matthias
Alitalo, Kari
Tegeder, Irmgard
Schmidt, Mirko H. H.
EGFL7 loss correlates with increased VEGF-D expression, upregulating hippocampal adult neurogenesis and improving spatial learning and memory
title EGFL7 loss correlates with increased VEGF-D expression, upregulating hippocampal adult neurogenesis and improving spatial learning and memory
title_full EGFL7 loss correlates with increased VEGF-D expression, upregulating hippocampal adult neurogenesis and improving spatial learning and memory
title_fullStr EGFL7 loss correlates with increased VEGF-D expression, upregulating hippocampal adult neurogenesis and improving spatial learning and memory
title_full_unstemmed EGFL7 loss correlates with increased VEGF-D expression, upregulating hippocampal adult neurogenesis and improving spatial learning and memory
title_short EGFL7 loss correlates with increased VEGF-D expression, upregulating hippocampal adult neurogenesis and improving spatial learning and memory
title_sort egfl7 loss correlates with increased vegf-d expression, upregulating hippocampal adult neurogenesis and improving spatial learning and memory
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9886625/
https://www.ncbi.nlm.nih.gov/pubmed/36715759
http://dx.doi.org/10.1007/s00018-023-04685-z
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