Interaction of recombinant human lactoferrin and SARS-CoV-2 virus to heparin-protein conjugate

IF 0.1 Q4 MULTIDISCIPLINARY SCIENCES
D. Semenov, I. Vashkevich, A. S. Vladyko, O. Sviridov
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Abstract

The advantages of the complex of recombinant human lactoferrin (rhLF) with europium ions have been used to establish quantitative parameters of specific interaction of rhLF with immobilized heparin-protein conjugate as a model of cell-surface heparan sulfate proteoglycans. Heparin coupled through terminal formyl by reductive amination to an inert protein was adsorbed through the protein part in the wells of a polystyrene microplate. The rhLF–Eu3+ complex obtained from native rhLF contains 0.8 mol of lanthanide ion per mol of protein (40 % saturation level). Equilibrium in the heterophase binding system is established within 1 min at room temperature, and the calculated association constant of the rhLF-heparin complex is 2.1 × 107 M–1. The reversible and saturable character of binding rhLF labeled by Eu3+ at the active site to heparin was confirmed by the transition of rhLF–Eu3+ into the liquid phase when a 1000-fold molar excess of unlabeled rhLF was added to the system. Based on the affinity of rhLF for glycosaminoglycan, a blocking effect of this protein on the binding of the SARS-CoV-2 virus to the immobilized heparin-protein conjugate that imitates proteoglycan on the host cell surface was revealed. Pretreatment of the adsorbed conjugate with a solution of rhLF (10 µg per well) reduces the specific binding of 100 ng of viral particles added to the well by approximately 80 %. The presented results allow one, in particular, to evaluate the integrity of the structure and activity of rhLF as a possible substance in food supplements and pharmaceuticals and may be useful in developing combined drugs for corona virus infection.
重组人乳铁蛋白与SARS-CoV-2病毒对肝素蛋白偶联物的相互作用
利用重组人乳铁蛋白(rhLF)与铕离子配合物的优势,建立了rhLF与固定化肝素-蛋白偶联物特异性相互作用的定量参数,作为细胞表面硫酸肝素蛋白聚糖的模型。在聚苯乙烯微孔板的孔中,通过端甲酰基还原胺化偶联的肝素通过蛋白质部分吸附成惰性蛋白。从天然rhLF中得到的rhLF - eu3 +配合物每mol蛋白质含有0.8 mol镧系离子(40%饱和水平)。在室温下,异相结合体系在1 min内建立平衡,计算出rhlf -肝素复合物的结合常数为2.1 × 107 M-1。通过在体系中加入1000倍摩尔过量的未标记rhLF后,rhLF - Eu3+进入液相的转变,证实了在活性位点被Eu3+标记的rhLF与肝素结合的可逆性和饱和性。基于rhLF对糖胺聚糖的亲和力,揭示了该蛋白对SARS-CoV-2病毒在宿主细胞表面与固定化肝素-蛋白偶联物结合的阻断作用。用rhLF溶液(每孔10µg)对吸附的偶联物进行预处理,使加入到孔中的100 ng病毒颗粒的特异性结合降低了约80%。提出的结果特别允许人们评估rhLF作为食品补充剂和药品中可能存在的物质的结构和活性的完整性,并可能对开发治疗冠状病毒感染的联合药物有用。
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来源期刊
DOKLADY NATSIONALNOI AKADEMII NAUK BELARUSI
DOKLADY NATSIONALNOI AKADEMII NAUK BELARUSI MULTIDISCIPLINARY SCIENCES-
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