The Key Laboratory of Carbohydrate Chemistry and Biotechnology, Ministry of Education, Jiangnan University, Wuxi 214122, China; The Key Laboratory of Industrial Biotechnology, Ministry of Education, School of Biotechnology, Jiangnan University, Wuxi 214122, China; The Science Center for Future Foods, Jiangnan University, Wuxi 214122, China.
The Key Laboratory of Carbohydrate Chemistry and Biotechnology, Ministry of Education, Jiangnan University, Wuxi 214122, China; The Key Laboratory of Industrial Biotechnology, Ministry of Education, School of Biotechnology, Jiangnan University, Wuxi 214122, China.
Int J Biol Macromol. 2024 Apr;264(Pt 1):130501. doi: 10.1016/j.ijbiomac.2024.130501. Epub 2024 Mar 3.
Low-molecular-weight heparins (LMWHs), especially the specific-sized heparin oligosaccharides, are attractive for the therapeutic applications, while their synthesis remains challenging. In the present study, unsaturated even-numbered heparosan oligosaccharides were firstly prepared by cleaving high-molecular-weight heparosan using recombinant heparinase III (HepIII). The conversion rates of the unsaturated disaccharides, tetrasaccharides, hexasaccharides, octasaccharides, and decasaccharides were 33.9 %, 47.9 %, 78.7 %, 71.8 %, and 53.4 %, respectively. After processing the aforementioned heparosan oligosaccharides with the Δ4,5 unsaturated glycuronidase, saturated odd-numbered heparosan trisaccharides, pentasaccharides, heptasaccharides, and nonasaccharides were produced. It was observed that among them, the pentasaccharides were the smallest units of saturated odd-numbered oligosaccharides recognized by HepIII. These oligosaccharides were further catalyzed with bifunctional heparan sulfate N-deacetylase/N-sulfotransferase (NDST) under optimized reaction conditions. It was found that the tetrasaccharide was defined as the smallest recognition unit for NDST, obtaining the N-sulfonated heparosan tetrasaccharides, pentasaccharides, and hexasaccharides with a single sulfonate group, as well as N-sulfonated heparosan heptasaccharides, octasaccharides, and nonasaccharides with multiple sulfonate groups. These results provide an easy pathway for constructing a library of specific-sized N-sulfonated heparosan oligosaccharides that can be used as the substrates for the enzymatic synthesis of LMWHs and heparin oligosaccharides, shedding new light on the substrate preference of NDST.
低分子量肝素(LMWHs),特别是特定大小的肝素寡糖,因其在治疗应用方面的吸引力而备受关注,但其合成仍然具有挑战性。在本研究中,首次使用重组肝素酶 III(HepIII)切割高分子量肝素聚糖来制备不饱和偶数肝素聚糖寡糖。不饱和二糖、四糖、六糖、八糖和十糖的转化率分别为 33.9%、47.9%、78.7%、71.8%和 53.4%。在使用 Δ4,5 不饱和糖醛酸酶处理上述肝素聚糖寡糖后,产生了饱和奇数肝素聚糖三糖、五糖、七糖和九糖。结果表明,其中五糖是 HepIII 识别的饱和奇数寡糖的最小单位。这些寡糖在优化的反应条件下进一步与双功能硫酸乙酰肝素 N-脱乙酰基/N-磺基转移酶(NDST)进行催化。结果发现,四糖被定义为 NDST 的最小识别单位,得到了具有单个磺酸盐基团的 N-磺化肝素聚糖四糖、五糖和六糖,以及具有多个磺酸盐基团的 N-磺化肝素聚糖七糖、八糖和九糖。这些结果为构建特定大小的 N-磺化肝素聚糖寡糖文库提供了一种简便的途径,可作为 LMWHs 和肝素寡糖酶促合成的底物,为 NDST 的底物偏好提供了新的思路。