A gene regulatory network combining Pax3/7, Sox10 and Mitf generates diverse pigment cell types in medaka and zebrafish

Author:

Miyadai Motohiro1,Takada Hiroyuki1,Shiraishi Akiko1,Kimura Tetsuaki2,Watakabe Ikuko3,Kobayashi Hikaru1,Nagao Yusuke1,Naruse Kiyoshi2,Higashijima Shin-ichi3,Shimizu Takashi1,Kelsh Robert N.4ORCID,Hibi Masahiko1ORCID,Hashimoto Hisashi1ORCID

Affiliation:

1. Laboratory of Biological Science, Division of Natural Science, Graduate School of Science, Nagoya University 1 , Nagoya 464-8602 , Japan

2. Laboratory of Bioresources, National Institute for Basic Biology 2 , Okazaki 444-8585 , Japan

3. National Institutes of Natural Sciences, Exploratory Research Center on Life and Living Systems, National Institute for Basic Biology 3 , Okazaki 444-8787 , Japan

4. University of Bath 4 Department of Life Sciences , , Bath BA2 7AY , UK

Abstract

ABSTRACT Neural crest cells generate numerous derivatives, including pigment cells, and are a model for studying how fate specification from multipotent progenitors is controlled. In mammals, the core gene regulatory network for melanocytes (their only pigment cell type) contains three transcription factors, Sox10, Pax3 and Mitf, with the latter considered a master regulator of melanocyte development. In teleosts, which have three to four pigment cell types (melanophores, iridophores and xanthophores, plus leucophores e.g. in medaka), gene regulatory networks governing fate specification are poorly understood, although Mitf function is considered conserved. Here, we show that the regulatory relationships between Sox10, Pax3 and Mitf are conserved in zebrafish, but the role for Mitf is more complex than previously emphasized, affecting xanthophore development too. Similarly, medaka Mitf is necessary for melanophore, xanthophore and leucophore formation. Furthermore, expression patterns and mutant phenotypes of pax3 and pax7 suggest that Pax3 and Pax7 act sequentially, activating mitf expression. Pax7 modulates Mitf function, driving co-expressing cells to differentiate as xanthophores and leucophores rather than melanophores. We propose that pigment cell fate specification should be considered to result from the combinatorial activity of Mitf with other transcription factors.

Funder

Japan Society for the Promotion of Science

Publisher

The Company of Biologists

Subject

Developmental Biology,Molecular Biology

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