Phagocytosing differentiated cell-fragments is a novel mechanism for controlling somatic stem cell differentiation
Shohei Wakao1, Yo Oguma2, Yoshihiro Kushida2
1Department of Stem Cell Biology and Histology, Tohoku University Graduate School of Medicine, 2-1, Seiryo-Machi, Aoba-Ku, Sendai, 980-8575, Japan. wakao@med.tohoku.ac.jp.
Abstract:
Stem cells undergo cytokine-driven differentiation, but this process often takes longer than several weeks to complete. A novel mechanism for somatic stem cell differentiation via phagocytosing 'model cells' (apoptotic differentiated cells) was found to require only a short time frame. Pluripotent-like Muse cells, multipotent mesenchymal stem cells (MSCs), and neural stem cells (NSCs) phagocytosed apoptotic differentiated cells via different phagocytic receptor subsets than macrophages. The phagocytosed-differentiated cell-derived contents (e.g., transcription factors) were quickly released into the cytoplasm, translocated into the nucleus, and bound to promoter regions of the stem cell genomes. Within 24 ~ 36 h, the cells expressed lineage-specific markers corresponding to the phagocytosed-differentiated cells, both in vitro and in vivo. At 1 week, the gene expression profiles were similar to those of the authentic differentiated cells and expressed functional markers. Differentiation was limited to the inherent potential of each cell line: triploblastic-, adipogenic-/chondrogenic-, and neural-lineages in Muse cells, MSCs, and NSCs, respectively. Disruption of phagocytosis, either by phagocytic receptor inhibition via small interfering RNA or annexin V treatment, impeded differentiation in vitro and in vivo. Together, our findings uncovered a simple mechanism by which differentiation-directing factors are directly transferred to somatic stem cells by phagocytosing apoptotic differentiated cells to trigger their rapid differentiation into the target cell lineage.
Insights
Somatic stem cells rapidly differentiate by phagocytosing (engulfing) apoptotic cells, transferring differentiation factors. This novel mechanism bypasses lengthy cytokine-driven processes, enabling quick lineage specification.
Area of Science:
- Cell Biology
- Developmental Biology
- Stem Cell Research
Background:
- Cytokine-driven stem cell differentiation is a lengthy process, often taking weeks.
- A new mechanism for rapid somatic stem cell differentiation has been identified.
Purpose of the Study:
- To investigate a novel mechanism of rapid somatic stem cell differentiation.
- To elucidate the role of phagocytosis in stem cell differentiation.
Main Methods:
- Muse cells, mesenchymal stem cells (MSCs), and neural stem cells (NSCs) were used.
- Cells phagocytosed apoptotic differentiated cells via distinct receptor subsets.
- Inhibition of phagocytosis was achieved using small interfering RNA and annexin V.
Main Results:
- Phagocytosis of apoptotic cells led to rapid transfer of differentiation factors into stem cell nuclei.
- Within 24–36 hours, stem cells expressed lineage-specific markers.
- Gene expression profiles at 1 week resembled authentic differentiated cells.
- Differentiation potential was limited to the inherent lineage of each stem cell type.
Conclusions:
- Somatic stem cells can rapidly differentiate by phagocytosing apoptotic cells.
- This process involves direct transfer of differentiation-directing factors.
- Phagocytosis is crucial for this rapid differentiation mechanism.
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