Nguyen Thao Kim Nu, Arungundram Sailaja, Tran Vy My, Raman Karthik, Al-Mafraji Kanar, Venot Andre, Boons Geert-Jan, Kuberan Balagurunathan
Department of Bioengineering, University of Utah, Salt Lake City, Utah 84112, USA.
Mol Biosyst. 2012 Feb;8(2):609-14. doi: 10.1039/c1mb05221g. Epub 2011 Nov 24.
Heparan sulfate (HS) glucosaminyl 3-O-sulfotranferases sulfate the C3-hydroxyl group of certain glucosamine residues on heparan sulfate. Six different 3-OST isoforms exist, each of which can sulfate very distinct glucosamine residues within the HS chain. Among these isoforms, 3-OST1 has been shown to play a role in generating ATIII-binding HS anticoagulants whereas 3-OST2, 3-OST3, 3-OST4 and 3OST-6 have been shown to play a vital role in generating gD-binding HS chains that permit the entry of herpes simplex virus type 1 into cells. 3-OST5 has been found to generate both ATIII- and gD-binding HS motifs. Previous studies have examined the substrate specificities of all the 3-OST isoforms using HS polysaccharides. However, very few studies have examined the contribution of the epimer configuration of neighboring uronic acid residues next to the target site to 3-OST action. In this study, we utilized a well-defined synthetic oligosaccharide library to examine the substrate specificity of 3-OST3a and compared it to 3-OST1. We found that both 3-OST1 and 3-OST3a preferentially sulfate the 6-O-sulfated, N-sulfoglucosamine when an adjacent iduronyl residue is located to its reducing side. On the other hand, 2-O-sulfation of this uronyl residue can inhibit the action of 3-OST3a on the target residue. The results reveal novel substrate sites for the enzyme actions of 3-OST3a. It is also evident that both these enzymes have promiscuous and overlapping actions that are differentially regulated by iduronyl 2-O-sulfation.
硫酸乙酰肝素(HS)葡萄糖胺3 - O - 磺基转移酶可将硫酸基团转移至硫酸乙酰肝素上特定葡萄糖胺残基的C3 - 羟基。存在六种不同的3 - OST同工型,每种同工型都能使HS链内非常不同的葡萄糖胺残基硫酸化。在这些同工型中,3 - OST1已被证明在生成抗凝血酶III(ATIII)结合的HS抗凝血剂中起作用,而3 - OST2、3 - OST3、3 - OST4和3 - OST - 6已被证明在生成允许单纯疱疹病毒1型进入细胞的gD结合HS链中起关键作用。已发现3 - OST5可生成ATIII和gD结合的HS基序。先前的研究使用HS多糖研究了所有3 - OST同工型的底物特异性。然而,很少有研究考察靶位点旁边相邻糖醛酸残基的差向异构体构型对3 - OST作用的影响。在本研究中,我们利用一个定义明确的合成寡糖文库来研究3 - OST3a的底物特异性,并将其与3 - OST1进行比较。我们发现,当相邻的艾杜糖醛酸残基位于其还原侧时,3 - OST1和3 - OST3a都优先使6 - O - 硫酸化的N - 磺基葡萄糖胺硫酸化。另一方面,该糖醛酸残基的2 - O - 硫酸化可抑制3 - OST3a对靶残基的作用。结果揭示了3 - OST3a酶作用的新底物位点。同样明显的是,这两种酶都有混杂且重叠的作用,这些作用受到艾杜糖醛酸2 - O - 硫酸化的差异调节。