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Updated: Nov 11, 2025

Stimulation of Notch Signaling in Mouse Osteoclast Precursors
Published on: February 28, 2017
Distant activation of Notch signaling induces stem cell niche assembly
Andriy S Yatsenko1, Halyna R Shcherbata1
1Institute of Cell Biochemistry, Hannover Medical School, Hannover, Germany.
Abstract:
Here we show that multiple modes of Notch signaling activation specify the complexity of spatial cellular interactions necessary for stem cell niche assembly. In particular, we studied the formation of the germline stem cell niche in Drosophila ovaries, which is a two-step process whereby terminal filaments are formed first. Then, terminal filaments signal to the adjacent cap cell precursors, resulting in Notch signaling activation, which is necessary for the lifelong acquisition of stem cell niche cell fate. The genetic data suggest that in order to initiate the process of stem cell niche assembly, Notch signaling is activated among non-equipotent cells via distant induction, where germline Delta is delivered to somatic cells located several diameters away via cellular projections generated by primordial germ cells. At the same time, to ensure the robustness of niche formation, terminal filament cell fate can also be induced by somatic Delta via cis- or trans-inhibition. This exemplifies a double security mechanism that guarantees that the germline stem cell niche is formed, since it is indispensable for the adjacent germline precursor cells to acquire and maintain stemness necessary for successful reproduction. These findings contribute to our understanding of the formation of stem cell niches in their natural environment, which is important for stem cell biology and regenerative medicine.
Insights
Notch signaling activation orchestrates stem cell niche assembly through complex cellular interactions. This study reveals a dual mechanism ensuring germline stem cell niche formation in Drosophila ovaries for reproduction.
Area of Science:
- Developmental Biology
- Stem Cell Biology
- Cell Signaling
Background:
- Stem cell niches are crucial microenvironments that regulate stem cell behavior.
- Notch signaling is a conserved pathway involved in cell-fate determination and tissue development.
- Understanding niche formation is vital for regenerative medicine.
Purpose of the Study:
- To elucidate the mechanisms of Notch signaling in germline stem cell niche assembly.
- To investigate the spatial cellular interactions during niche formation in Drosophila ovaries.
- To identify the roles of germline and somatic Delta in niche development.
Main Methods:
- Genetic analysis in Drosophila melanogaster.
- Live imaging of cellular interactions and signaling.
- Analysis of gene expression patterns related to Notch signaling.
Main Results:
- Multiple modes of Notch signaling activation were identified.
- Germline Delta, delivered via cellular projections, induces Notch signaling in distant somatic cells.
- Somatic Delta contributes to niche robustness through cis- and trans-inhibition.
- A double security mechanism ensures germline stem cell niche formation.
Conclusions:
- Notch signaling plays a complex, multi-modal role in stem cell niche assembly.
- Distant induction and feedback inhibition by Delta ensure robust niche formation.
- Findings provide insights into stem cell biology and potential regenerative medicine applications.
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