首页> 外文OA文献 >Two Golgi-resident 3′-Phosphoadenosine 5′-Phosphosulfate Transporters Play Distinct Roles in Heparan Sulfate Modifications and Embryonic and Larval Development in Caenorhabditis elegans*
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Two Golgi-resident 3′-Phosphoadenosine 5′-Phosphosulfate Transporters Play Distinct Roles in Heparan Sulfate Modifications and Embryonic and Larval Development in Caenorhabditis elegans*

机译:两个高尔基体居民3'-磷酸腺苷5'-磷酸硫酸盐转运蛋白在秀丽隐杆线虫的硫酸乙酰肝素修饰和胚胎和幼虫发育中起着不同的作用*

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摘要

Synthesis of extracellular sulfated molecules requires active 3′-phosphoadenosine 5′-phosphosulfate (PAPS). For sulfation to occur, PAPS must pass through the Golgi membrane, which is facilitated by Golgi-resident PAPS transporters. Caenorhabditis elegans PAPS transporters are encoded by two genes, pst-1 and pst-2. Using the yeast heterologous expression system, we characterized PST-1 and PST-2 as PAPS transporters. We created deletion mutants to study the importance of PAPS transporter activity. The pst-1 deletion mutant exhibited defects in cuticle formation, post-embryonic seam cell development, vulval morphogenesis, cell migration, and embryogenesis. The pst-2 mutant exhibited a wild-type phenotype. The defects observed in the pst-1 mutant could be rescued by transgenic expression of pst-1 and hPAPST1 but not pst-2 or hPAPST2. Moreover, the phenotype of a pst-1;pst-2 double mutant were similar to those of the pst-1 single mutant, except that larval cuticle formation was more severely defected. Disaccharide analysis revealed that heparan sulfate from these mutants was undersulfated. Gene expression reporter analysis revealed that these PAPS transporters exhibited different tissue distributions and subcellular localizations. These data suggest that pst-1 and pst-2 play different physiological roles in heparan sulfate modification and development.
机译:细胞外硫酸化分子的合成需要活性3'-磷酸腺苷5'-磷酸酯(PAPS)。为了发生硫酸化,PAPS必须穿过高尔基体膜,而高尔基体PAPS转运体会促进这种情况。秀丽隐杆线虫PAPS转运蛋白由两个基因pst-1和pst-2编码。使用酵母异源表达系统,我们将PST-1和PST-2表征为PAPS转运蛋白。我们创建了缺失突变体,以研究PAPS转运蛋白活性的重要性。 pst-1缺失突变体在表皮形成,胚后接缝细胞发育,外阴形态发生,细胞迁移和胚胎发生方面表现出缺陷。 pst-2突变体表现出野生型的表型。在pst-1突变体中观察到的缺陷可以通过pst-1和hPAPST1的转基因表达得以挽救,而pst-2或hPAPST2则不能。此外,pst-1; pst-2双重突变体的表型与pst-1单一突变体的表型相似,不同之处在于幼虫表皮形成的缺陷更为严重。双糖分析显示,来自这些突变体的硫酸乙酰肝素被硫酸盐不足。基因表达记者分析表明,这些PAPS转运蛋白表现出不同的组织分布和亚细胞定位。这些数据表明,pst-1和pst-2在硫酸乙酰肝素的修饰和发育中起着不同的生理作用。

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