Sensory cells often adopt specific morphologies that aid in the detection of external stimuli. Merkel cells encode gentle touch stimuli in vertebrate skin and adopt a reproducible shape characterized by spiky actin-rich microvilli that emanate from the cell surface. The mechanisms by which Merkel cells acquire this stereotyped morphology from keratinocyte progenitors are unknown. Here, we establish that dendritic Merkel cells (dMCs) express atonal homolog 1a (atoh1a), extend dynamic filopodial processes, and arise in transient waves during zebrafish skin development and regeneration. We find that dMCs share molecular similarities with both basal keratinocytes and Merkel cells, yet display mesenchymal-like behaviors, including local cell motility and proliferation within the epidermis. Furthermore, dMCs can directly adopt the mature, microvilliated Merkel cell morphology through substantial remodeling of the actin cytoskeleton. Loss of Ectodysplasin A signaling alters the morphology of dMCs and Merkel cells within specific skin regions. Our results show that dMCs represent an intermediate state in the Merkel cell maturation program and identify Ectodysplasin A signaling as a key regulator of Merkel cell morphology.
Dendritic atoh1a+ cells serve as Merkel cell precursors during skin development and regeneration.
树突状 atoh1a+ 细胞在皮肤发育和再生过程中作为默克尔细胞的前体
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作者:Craig Evan W, Black Erik C, Fernandes Samantha Z, Ferdous Ahlan S, Goo Camille E A, Sargent Sheridan M, Quitevis Elgene J A, Swearer Avery Angell, Yee Nathaniel G, Shin Jimann, Solnica-Krezel Lilianna, Rasmussen Jeffrey P
| 期刊: | Development | 影响因子: | 3.600 |
| 时间: | 2025 | 起止号: | 2025 Oct 15; 152(20):dev204810 |
| doi: | 10.1242/dev.204810 | 研究方向: | 发育与干细胞、细胞生物学 |
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