Cadwallader Adam B, Yost H Joseph
Huntsman Cancer Institute, Center for Children, Department of Oncological Sciences, University of Utah, Salt Lake City, Utah 84112, USA.
Dev Dyn. 2006 Dec;235(12):3423-31. doi: 10.1002/dvdy.20991.
Heparan sulfate (HS) is an unbranched chain of repetitive disaccharides, which specifically binds ligands when attached to the cell surface or secreted extracellularly. HS chains contain sulfated domains termed the HS fine structure, which gives HS specific binding affinities for extracellular ligands. HS 3-O-sulfotransferases (3-OST) catalyze the transfer of sulfate groups to the 3-O position of glucosamine residues of HS, a rare, but essential HS chain modification required for HS fine structure. We report here the first characterization and developmental expression analysis of the 3-OST gene family in a vertebrate. There are eight 3-OST genes in zebrafish: seven genes with homology to known 3-OST genes in mouse and human, as well as a novel, 3-OST-7. A phylogenetic comparison of human, mouse, and zebrafish indicates the 3-OST family can be subdivided into two distinct subgroups. We examined the mRNA expression patterns in several tissues/organs throughout early zebrafish development, including early cleavage stages, somites, brain, internal body organ primordial, and pectoral fin development. The 3-OST gene family has both specifically expressed and ubiquitously expressed genes, suggesting in vivo functional differences exist between members of this family.
硫酸乙酰肝素(HS)是由重复二糖组成的无分支链,当附着于细胞表面或分泌到细胞外时,它能特异性结合配体。HS链包含被称为HS精细结构的硫酸化结构域,这赋予了HS对细胞外配体的特异性结合亲和力。HS 3-O-磺基转移酶(3-OST)催化硫酸基团转移到HS的氨基葡萄糖残基的3-O位置,这是一种罕见但对HS精细结构至关重要的HS链修饰。我们在此报告脊椎动物中3-OST基因家族的首次特征描述和发育表达分析。斑马鱼中有八个3-OST基因:七个与小鼠和人类中已知的3-OST基因具有同源性的基因,以及一个新的3-OST-7。对人类、小鼠和斑马鱼的系统发育比较表明,3-OST家族可分为两个不同的亚组。我们研究了斑马鱼早期发育过程中几个组织/器官中的mRNA表达模式,包括早期卵裂阶段、体节、脑、体内器官原基和胸鳍发育。3-OST基因家族既有特异性表达的基因,也有普遍表达的基因,这表明该家族成员之间存在体内功能差异。