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A novel disulfide-stabilized single-chain variable antibody fragment against rabies virus G protein with enhanced in vivo neutralizing potency

机译:抗狂犬病病毒G蛋白的新型二硫键稳定的单链可变抗体片段,体内中和力增强

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摘要

Rabies is a fatal infectious disease requiring efficient protection provided by post-exposure prophylaxis (PEP) with rabies immunoglobulin (RIG). The single-chain Fv fragment (scFv) is a small engineered antigen binding protein derived from antibody variable heavy (V H) and light (V L) chains. This novel antibody format may potentially replace the current application of RIG to detect and neutralize rabies virus (RV). However, the broad use of scFvs is confined by their generally low stability. In this study, a scFv (FV57) was constructed based on the monoclonal antibody, MAB57, against RV. To enhance its stability and neutralizing potency, a disulfide-stabilized scFv, ds-FV57, was also derived by introduction of cysteines at V H44 and V L100. Furthermore, the cysteine at V L85 of ds-FV57 was mutated to serine to construct ds-FV57 VL85Ser in order to avoid potential mis-formed disulfide bonds which would alter the affinity of the scFv. The stability and activity of all three proteins expressed in Escherichia coli were evaluated. All of the constructed scFvs could provide efficient protection against RV infection both in vivo and in vitro. However, the stability of ds-FV57 VL85Ser was notably improved, and its in vitro neutralizing potency against RV infection was enhanced. Our findings from these stabilization modifications support the feasibility of developing scFvs for PEP treatment of rabies.
机译:狂犬病是一种致命的传染病,需要通过狂犬病免疫球蛋白(RIG)的暴露后预防(PEP)提供有效保护。单链Fv片段(scFv)是衍生自抗体可变重链(V H)和轻链(VL)的小型工程化抗原结合蛋白。这种新颖的抗体形式可能会取代RIG当前用于检测和中和狂犬病病毒(RV)的应用。但是,scFv的广泛使用受到其通常较低的稳定性的限制。在这项研究中,基于抗RV的单克隆抗体MAB57构建了scFv(FV57)。为了增强其稳定性和中和效能,还通过在V H44和V L100处引入半胱氨酸来获得二硫键稳定的scFv,ds-FV57。此外,将ds-FV57的V L85的半胱氨酸突变为丝氨酸以构建ds-FV57 VL85Ser,以避免潜在的错误形成的二硫键,其将改变scFv的亲和力。评价了在大肠杆菌中表达的所有三种蛋白质的稳定性和活性。所有构建的scFv均可在体内和体外提供针对RV感染的有效保护。但是,ds-FV57 VL85Ser的稳定性得到显着改善,并且其体外抗RV感染的中和能力得到增强。我们从这些稳定性修饰中获得的发现支持开发用于scpv的PEP治疗狂犬病的可行性。

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