Liu J, Shriver Z, Blaiklock P, Yoshida K, Sasisekharan R, Rosenberg R D
Department of Biology, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, USA.
J Biol Chem. 1999 Dec 31;274(53):38155-62. doi: 10.1074/jbc.274.53.38155.
3-O-Sulfation of glucosamine by heparan sulfate D-glucosaminyl 3-O-sulfotransferase (3-OST-1) is the key modification in anticoagulant heparan sulfate synthesis. However, the heparan sulfates modified by 3-OST-2 and 3-OST-3A, isoforms of 3-OST-1, do not have anticoagulant activity, although these isoforms transfer sulfate to the 3-OH position of glucosamine residues. In this study, we characterize the substrate specificity of purified 3-OST-3A at the tetrasaccharide level. The 3-OST-3A enzyme was purified from Sf9 cells infected with recombinant baculovirus containing 3-OST-3A cDNA. Two 3-OST-3A-modified tetrasaccharides were purified from the 3-O-(35)S-sulfated heparan sulfate that was digested by heparin lyases. These tetrasaccharides were analyzed using nitrous acid and enzymatic degradation combined with matrix-assisted laser desorption/ionization-mass spectrometry. Two novel tetrasaccharides were discovered with proposed structures of DeltaUA2S-GlcNS-IdoUA2S-[(35)S]GlcNH(2)3S and DeltaUA2S-GlcNS-IdoUA2S-[3-(35)S]GlcNH(2)3S6S . The results demonstrate that 3-OST-3A sulfates N-unsubstituted glucosamine residues, and the 3-OST-3A modification sites are probably located in defined oligosaccharide sequences. Our study suggests that oligosaccharides with N-unsubstituted glucosamine are precursors for sulfation by 3-OST-3A. The intriguing linkage between N-unsubstituted glucosamine and the 3-O-sulfation by 3-OST-3A may provide a clue to the potential biological functions of 3-OST-3A-modified heparan sulfate.
硫酸乙酰肝素D - 葡糖胺3 - O - 磺基转移酶(3 - OST - 1)对葡糖胺进行3 - O - 硫酸化是抗凝硫酸乙酰肝素合成中的关键修饰。然而,由3 - OST - 1的同工型3 - OST - 2和3 - OST - 3A修饰的硫酸乙酰肝素不具有抗凝活性,尽管这些同工型将硫酸基团转移至葡糖胺残基的3 - OH位置。在本研究中,我们在四糖水平上表征了纯化的3 - OST - 3A的底物特异性。3 - OST - 3A酶从感染了含3 - OST - 3A cDNA的重组杆状病毒的Sf9细胞中纯化得到。从经肝素裂解酶消化的3 - O - (35)S - 硫酸化硫酸乙酰肝素中纯化出两种3 - OST - 3A修饰的四糖。使用亚硝酸和酶促降解结合基质辅助激光解吸/电离质谱对这些四糖进行分析。发现了两种新型四糖,其推测结构为ΔUA2S - GlcNS - IdoUA2S - [(35)S]GlcNH(2)3S和ΔUA2S - GlcNS - IdoUA2S - [3 -(35)S]GlcNH(2)3S6S。结果表明3 - OST - 3A使N - 未取代的葡糖胺残基硫酸化,且3 - OST - 3A的修饰位点可能位于特定的寡糖序列中。我们的研究表明,具有N - 未取代葡糖胺的寡糖是3 - OST - 3A硫酸化的前体。N - 未取代葡糖胺与3 - OST - 3A的3 - O - 硫酸化之间有趣的联系可能为3 - OST - 3A修饰的硫酸乙酰肝素的潜在生物学功能提供线索。