首页> 外文期刊>The Biochemical Journal >Biosynthesis of heparan sulphate with diverse structures and functions: two alternatively spliced forms of human heparan sulphate 6-0-sulphotransferase-2 having different expression patterns and properties
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Biosynthesis of heparan sulphate with diverse structures and functions: two alternatively spliced forms of human heparan sulphate 6-0-sulphotransferase-2 having different expression patterns and properties

机译:具有多种结构和功能的硫酸乙酰肝素的生物合成:两种交替剪接形式的人硫酸乙酰肝素6-0-sulphotransferase-2,具有不同的表达方式和特性

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摘要

Heparan sulphate 6-O-sulphotransferase (HS6ST) catalyses the transfer of sulphate from adenosine 3'-phosphate, 5'-phosphosulphate to the 6th position of the N-sulphoglucosamine residue in HS. We previously described the occurrence of three isoforms of mouse HS6ST, mHS6ST-1, -2, and -3 [Habuchi, Tanaka, Habuchi, Yoshida, Suzuki, Ban and Kimata (2000) J. Biol. Chem. 275, 2859-2868]. In the present study, we have characterized HS6ST-2 and HS6ST-1 human isologues, including their chromosomal localizations. In the process of their cDNA cloning, we found two forms of HS6ST-2: the original (hHS6ST-2) and a short form (hHS6ST-2S) with 40 amino acids deleted. Both hHS6ST-2 and hHS6ST-2S catalysed the same sulphation reaction, but their preferences for sulphation sites in HS substrates were different. Dot-blot analysis of the two forms showed that the original form was exclusively expressed in adult and foetal brain tissues, whereas the short form was expressed preferentially in ovary, placenta and foetal kidney, suggesting that the expression of two forms of hHS6ST-2 is strictly regulated to yield tissue-dependent differences in the fine structure of HS. A refined analysis of their reaction products has led us to another finding, that HS6STs could also transfer sulphate to N-sulphoglucosamine residues located at the non-reducing terminal of HS with high affinity. [References: 49]
机译:硫酸乙酰肝素6-O-硫转移酶(HS6ST)催化硫酸从腺苷3'-磷酸,5'-磷酸硫酸盐转移到HS中N-磺基葡萄糖胺残基的第6位。我们先前描述了小鼠HS6ST,mHS6ST-1,-2和-3的三种同工型的发生[Habuchi,Tanaka,Habuchi,Yoshida,Suzuki,Ban和Kimata(2000)J.化学275,2859-2868]。在本研究中,我们已经鉴定了HS6ST-2和HS6ST-1人类同系物,包括它们的染色体定位。在其cDNA克隆过程中,我们发现了两种形式的HS6ST-2:原始形式(hHS6ST-2)和短形式(hHS6ST-2S),其中缺失了40个氨基酸。 hHS6ST-2和hHS6ST-2S均催化相同的硫酸化反应,但它们对HS底物中硫酸化位点的偏好不同。对这两种形式的斑点印迹分析表明,原始形式仅在成人和胎儿脑组织中表达,而短形式优先在卵巢,胎盘和胎儿肾脏中表达,这表明两种形式的hHS6ST-2的表达为严格调节以产生HS精细结构的组织依赖性差异。对它们的反应产物的精细分析使我们得出了另一个发现,即HS6STs还可以以高亲和力将硫酸盐转移到位于HS非还原末端的N-磺基葡糖胺残基。 [参考:49]

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