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Pigment cell lineage-specific expression activity of the ascidian tyrosinase-related gene

Solitary ascidian tadpole larvae develop two types of black pigment cells in the major sensory organs of the brain. Such pigment cells have been demonstrated to express the melanogenic genes, tyrosinase and Tyrp/TRP (tyrosinase-related protein). To understand the genetic and developmental mechanisms...

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Published in:Gene 2004-05, Vol.332, p.61-69
Main Authors: Toyoda, Reiko, Kasai, Akiko, Sato, Shigeru, Wada, Shuichi, Saiga, Hidetoshi, Ikeo, Kazuho, Gojobori, Takashi, Numakunai, Takaharu, Yamamoto, Hiroaki
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container_title Gene
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creator Toyoda, Reiko
Kasai, Akiko
Sato, Shigeru
Wada, Shuichi
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Ikeo, Kazuho
Gojobori, Takashi
Numakunai, Takaharu
Yamamoto, Hiroaki
description Solitary ascidian tadpole larvae develop two types of black pigment cells in the major sensory organs of the brain. Such pigment cells have been demonstrated to express the melanogenic genes, tyrosinase and Tyrp/TRP (tyrosinase-related protein). To understand the genetic and developmental mechanisms underlying the differentiation of chordate pigment cells, we examined the function of the promoter region of Tyrp/TRP gene, an ascidian ( Halocynthia roretzi) tyrosinase family gene. The expression of the gene in pigment cell lineage starts at the early–mid gastrula stages. To identify the transcriptional regulatory region of the gene allowing cell-type-specific expression, a deletion series of the HrTyrp 5′ flanking region fused to a lacZ reporter gene was constructed and microinjected into ascidian fertilized eggs. The region of 73 bp in HrTyrp was identified as sufficient for expression in pigment cell-precursors of tailbud stage embryos. It is noteworthy that there is no M-box element highly conserved in the promoters for vertebrate tyrosinase family genes such as tyrosinase, Tyrp1/TRP-1 and Tyrp2/TRP-2 ( Dct). Although the regulatory system of ascidian pigment-cell development is likely to contain most factors critical to vertebrate pigment-cell development, there might be critical differences in the mode of regulation, such as the developmental timing of interactions of factors, proteins and genes, involved in pigment cell differentiation and pigmentation.
doi_str_mv 10.1016/j.gene.2004.01.030
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It is noteworthy that there is no M-box element highly conserved in the promoters for vertebrate tyrosinase family genes such as tyrosinase, Tyrp1/TRP-1 and Tyrp2/TRP-2 ( Dct). Although the regulatory system of ascidian pigment-cell development is likely to contain most factors critical to vertebrate pigment-cell development, there might be critical differences in the mode of regulation, such as the developmental timing of interactions of factors, proteins and genes, involved in pigment cell differentiation and pigmentation.</abstract><cop>Netherlands</cop><pub>Elsevier B.V</pub><pmid>15145055</pmid><doi>10.1016/j.gene.2004.01.030</doi><tpages>9</tpages></addata></record>
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ispartof Gene, 2004-05, Vol.332, p.61-69
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1879-0038
language eng
recordid cdi_proquest_miscellaneous_71933412
source Elsevier
subjects 5' Flanking Region - genetics
Animals
Ascidia
Base Sequence
Cell Lineage
Ciona intestinalis - genetics
DNA - chemistry
DNA - genetics
Embryo, Nonmammalian - enzymology
Embryo, Nonmammalian - metabolism
Evolution, Molecular
Gene Expression Regulation, Developmental
Gene Expression Regulation, Enzymologic
Intramolecular Oxidoreductases - genetics
Melanin
Melanocyte
Melanocytes - cytology
Melanocytes - metabolism
Microphthalmia
Mitf
Molecular Sequence Data
Monophenol Monooxygenase - genetics
Oxidoreductases
Pigmentation - genetics
Promoter
Promoter Regions, Genetic - genetics
Proteins - genetics
Sequence Analysis, DNA
Transcription Initiation Site
Tyrosinase-related protein
Urochordata - embryology
Urochordata - enzymology
Urochordata - genetics
title Pigment cell lineage-specific expression activity of the ascidian tyrosinase-related gene
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