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Updated: Aug 19, 2026

Feeder-free Derivation of Melanocytes from Human Pluripotent Stem Cells
Published on: March 3, 2016
Cooperative and indispensable roles of endothelin 3 and KIT signalings in melanocyte development
Hitomi Aoki1, Tsutomu Motohashi, Naoko Yoshimura
1Department of Tissue and Organ Development, Regeneration and Advanced Medical Science, Gifu University Graduate School of Medicine, Gifu, Japan.
Abstract:
The development of melanocytes from neural crest-derived precursor cells depends on signaling by the receptor tyrosine kinase KIT and the G protein-coupled endothelin receptor B (EDNRB) pathways. Loss-of-function mutations in either of these two signaling receptor molecules cause a loss or a marked reduction in the number of melanocyte precursors in the embryo and finally lead to loss of the coat color. Using cultures of embryonic stem (ES) cells to induce melanocyte differentiation in vitro, we investigated the requirement for EDNRB signaling during the entire developmental process of the melanocyte, in association with that for KIT signaling. During the 21-day period necessary for the induction of mature melanocytes from undifferentiated ES cells, endothelin 3 (EDN3), a ligand for EDNRB, increased the number of melanocytes in proportion to the period during which it was present. We tested the compensatory effect of EDNRB signaling on KIT signaling in vivo by using Kit(W-LacZ)/Kit(W-LacZ) ES cells and confirmed that the ectopic expression of EDN3 in the skin reduced the white spotting of Kit(W57)/Kit(W57)mice. KIT ligand (KITL) and EDN3 worked synergistically to induce melanocyte differentiation in vitro; however, the complete lack of EDNRB signaling attained by the use of EDN3-/- ES cells and an EDNRB antagonist, BQ788, revealed that the resulting failure of melanocyte development was not compensated by the further activation of KIT signaling by adding KITL. Simultaneous blockade of EDNRB and KIT signalings eliminated melanocyte precursors completely, suggesting that the maintenance or survival of early melanocyte precursors at least required the existence of either EDNRB or KIT signalings.
Insights
Melanocyte development relies on KIT and endothelin receptor B (EDNRB) signaling. Both pathways are crucial for melanocyte precursor survival, with EDNRB signaling showing synergistic effects with KIT signaling.
Area of Science:
- Developmental Biology
- Cell Signaling
Background:
- Melanocyte development from neural crest precursors is regulated by KIT and EDNRB signaling pathways.
- Mutations in KIT or EDNRB lead to reduced melanocyte precursors and coat color loss.
Purpose of the Study:
- Investigate the role of EDNRB signaling in melanocyte development.
- Examine the interplay between EDNRB and KIT signaling during melanocyte differentiation.
Main Methods:
- Utilized embryonic stem (ES) cell cultures for in vitro melanocyte differentiation.
- Employed Kit(W-LacZ)/Kit(W-LacZ) ES cells and EDN3-/- ES cells.
- Administered EDNRB antagonist BQ788 and KIT ligand (KITL).
Main Results:
- Endothelin 3 (EDN3) increased melanocyte numbers during in vitro differentiation.
- Ectopic EDN3 reduced white spotting in Kit(W57)/Kit(W57) mice, indicating EDNRB signaling's compensatory effect.
- KITL and EDN3 showed synergistic effects on melanocyte differentiation.
- Complete EDNRB blockade prevented KITL from compensating, highlighting EDNRB's essential role.
- Simultaneous blockade of both pathways eliminated melanocyte precursors.
Conclusions:
- EDNRB and KIT signaling are both essential for melanocyte precursor survival.
- EDNRB signaling plays a critical, non-compensatable role in melanocyte development.
- Either EDNRB or KIT signaling is required for the maintenance and survival of early melanocyte precursors.
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