Life Sciences Institute, Zhejiang University, Hangzhou 310058, China.
Protein Cell. 2012 Dec;3(12):950-61. doi: 10.1007/s13238-012-2056-z. Epub 2012 Jul 21.
Heparinase III (HepIII) is a 73-kDa polysaccharide lyase (PL) that degrades the heparan sulfate (HS) polysaccharides at sulfate-rare regions, which are important co-factors for a vast array of functional distinct proteins including the well-characterized antithrombin and the FGF/FGFR signal transduction system. It functions in cleaving metazoan heparan sulfate (HS) and providing carbon, nitrogen and sulfate sources for host microorganisms. It has long been used to deduce the structure of HS and heparin motifs; however, the structure of its own is unknown. Here we report the crystal structure of the HepIII from Bacteroides thetaiotaomicron at a resolution of 1.6 Å. The overall architecture of HepIII belongs to the (α/α)₅ toroid subclass with an N-terminal toroid-like domain and a C-terminal β-sandwich domain. Analysis of this high-resolution structure allows us to identify a potential HS substrate binding site in a tunnel between the two domains. A tetrasaccharide substrate bound model suggests an elimination mechanism in the HS degradation. Asn260 and His464 neutralize the carboxylic group, whereas Tyr314 serves both as a general base in C-5 proton abstraction, and a general acid in a proton donation to reconstitute the terminal hydroxyl group, respectively. The structure of HepIII and the proposed reaction model provide a molecular basis for its potential practical utilization and the mechanism of its eliminative degradation for HS polysaccarides.
肝素酶 III(HepIII)是一种 73kDa 的多糖裂解酶(PL),可在硫酸稀有区域降解硫酸乙酰肝素(HS)多糖,这些区域是多种功能不同的蛋白质的重要辅因子,包括众所周知的抗凝血酶和 FGF/FGFR 信号转导系统。它在切割后生动物肝素硫酸(HS)和为宿主微生物提供碳、氮和硫酸盐源方面发挥作用。它长期以来一直被用于推断 HS 和肝素基序的结构;然而,其自身的结构仍然未知。在这里,我们报道了来自拟杆菌属的 HepIII 的晶体结构,分辨率为 1.6Å。HepIII 的整体结构属于(α/α)₅toroid 亚类,具有 N 端 toroid 样结构域和 C 端β-三明治结构域。对这个高分辨率结构的分析使我们能够在两个结构域之间的隧道中识别出一个潜在的 HS 底物结合位点。四糖底物结合模型表明 HS 降解中的消除机制。Asn260 和 His464 中和了羧酸基团,而 Tyr314 分别作为 C-5 质子离域的碱和质子供体中的酸,以重建末端羟基。HepIII 的结构和提出的反应模型为其潜在的实际利用及其 HS 多糖消除降解的机制提供了分子基础。