School of Life Science and Technology, Weifang Medical University, 7166 Baotong West Street, Weifang, 261053, China.
Sci Rep. 2023 Nov 17;13(1):20112. doi: 10.1038/s41598-023-47493-y.
Heparin (HP) and heparan sulfate (HS) are multifunctional polysaccharides widely used in clinical therapy. Heparinases (Hepases) are enzymes that specifically catalyse HP and HS degradation, and they are valuable tools for studying the structure and function of these polysaccharides and for preparing low molecular weight heparins. In this study, by searching the NCBI database, a novel enzyme named PCHepII was discovered in the genome of the marine bacterium Puteibacter caeruleilacuae. Heterologously expressed PCHepII in Escherichia coli (BL21) has high expression levels and good solubility, active in sodium phosphate buffer (pH 7.0) at 20°C. PCHepII exhibits an enzyme activity of 254 mU/mg towards HP and shows weak degradation capacity for HS. More importantly, PCHepII prefers to catalyse the high-sulfated regions of HP and HS rather than the low-sulfated regions. Although PCHepII functions primarily as an endolytic Hepase, it mainly generates disaccharide products during the degradation of HP substrates over time. Investigations reveal that PCHepII exhibits a preference for catalysing the degradation of small substrates, especially HP tetrasaccharides. The catalytic sites of PCHepII include the residues His, Tyr, and His, which play crucial roles in the catalytic process. The study and characterization of PCHepII can potentially benefit research and applications involving HP/HS, making it a promising enzyme.
肝素 (HP) 和硫酸乙酰肝素 (HS) 是广泛应用于临床治疗的多功能多糖。肝素酶 (Hepases) 是特异性催化 HP 和 HS 降解的酶,它们是研究这些多糖结构和功能以及制备低分子量肝素的有价值的工具。在这项研究中,通过搜索 NCBI 数据库,在海洋细菌 Puteibacter caeruleilacuae 的基因组中发现了一种名为 PCHepII 的新型酶。在大肠杆菌 (BL21) 中异源表达的 PCHepII 具有高表达水平和良好的可溶性,在 20°C 的磷酸钠缓冲液 (pH 7.0) 中具有活性。PCHepII 对 HP 的酶活性为 254 mU/mg,对 HS 的降解能力较弱。更重要的是,PCHepII 更喜欢催化 HP 和 HS 的高硫酸化区域,而不是低硫酸化区域。尽管 PCHepII 主要作为内切 Hepase 发挥作用,但随着时间的推移,它在 HP 底物的降解过程中主要产生二糖产物。研究表明,PCHepII 优先催化小底物的降解,特别是 HP 四糖。PCHepII 的催化位点包括残基 His、Tyr 和 His,它们在催化过程中起着至关重要的作用。对 PCHepII 的研究和表征可能有益于 HP/HS 的研究和应用,使其成为一种有前途的酶。