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首页> 外文期刊>Journal of Immunological Methods >Monospecific bivalent scFv-SH: effects of linker length and location of an engineered cysteine on production, antigen binding activity and free SH accessibility.
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Monospecific bivalent scFv-SH: effects of linker length and location of an engineered cysteine on production, antigen binding activity and free SH accessibility.

机译:单特异性二价scFv-SH:接头长度和工程化半胱氨酸的位置对生产,抗原结合活性和游离SH可达性的影响。

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摘要

Development of tumor targeting pharmaceuticals on a modular platform is an attractive paradigm. Design choices for bispecific (anti-tumor and anti-chelate) pretargeting molecules are increased by the use of scFvs. Because a scFv is monovalent and small in size, its functional affinity and in vivo residence time can be improved through multimerization. ScFv multimers can be covalent or non-covalent. In vivo studies indicate that covalent scFv multimers are preferable. Attachment of scFv modules to scaffolds offers a wide range of possibilities for size and valency. A free thiol introduced at the C terminal end of a scFv (scFv-SH) allows for site-specific covalent attachment to a PEG scaffold without interfering with its antigen (Ag) binding. Although in theory, multimerization of 3 or 4 scFvs can be achieved by direct conjugation, as scFv-SH, to a tri or tetrafunctionalized PEG, it is not a practical option since homogeneous tri and tetrafunctionalized PEG are not readily available. However, the generation of (scFv)(3-4)-PEG molecules through attachment of combinations of di-scFv-SH (tandemly expressed scFvs) and scFv-SH or 2 di-scFv-SH to a bifunctional PEG is a sound approach that also allows for better control of the scFv-PEG conjugate molecular composition. Optimization of the molecular format of the di-scFv-SH module for production as soluble proteins in E. coli, Ag binding and conjugation is reported in this study. ScFvs in the VH-VL format were used for the di-scFv constructs since Fv domain inversion to VL-VH, while not yielding more protein, also abolished Ag binding. The effects on production yield, Ag binding and conjugation potential of the scFv joining linker length and the presence and location of an engineered cysteine were assessed in vitro. Our data indicate that for di-scFv-SH, an increase of the scFv joining linker length results in higher production and better Ag binding; a 20 aa long linker (G(4)S)(4) was the longest linker tested. For the engineered cysteine, three locations were tested; within the scFv joining linker, at the C terminus upstream of the E Tag and as the carboxy terminal aa. The accessibility of the free SH assessed by conjugation of di-scFv-SH to HRP-Mal demonstrated that di-scFv-HRP conjugates are formed with comparable efficiencies when the cysteine is located at the scFv carboxy end. This empirical work provides a framework for the development of bispecific scFv multimers via site-specific attachment of scFv-SH and di-scFv-SH modules to a scaffold.
机译:在模块化平台上开发肿瘤靶向药物是一种有吸引力的范例。通过使用scFv,可以增加双特异性(抗肿瘤和抗螯合物)预靶向分子的设计选择。由于scFv是单价且体积较小,因此可以通过多聚化改善其功能亲和力和体内停留时间。 ScFv多聚体可以是共价的或非共价的。体内研究表明,共价scFv多聚体是优选的。将scFv模块连接到支架上可提供多种尺寸和价位选择。在scFv(scFv-SH)的C末端引入的游离硫醇可在不干扰其抗原(Ag)结合的情况下将位点特异性共价连接至PEG支架。尽管从理论上讲,可以通过将scFv-SH直接偶联到三或四官能化的PEG上来实现3或4个scFv的多聚化,但这不是一个可行的选择,因为均一的三官能和四官能化的PEG不易获得。但是,通过将di-scFv-SH(串联表达的scFvs)和scFv-SH或2个di-scFv-SH的组合连接到双功能PEG上来生成(scFv)(3-4)-PEG分子是一种合理的方法这也可以更好地控制scFv-PEG共轭分子的组成。在这项研究中,报告了用于在大肠杆菌中以可溶性蛋白形式生产的di-scFv-SH模块的分子形式的优化,Ag结合和结合。 VH-VL格式的ScFv用于di-scFv构建体,因为Fv结构域转化为VL-VH时,虽然不产生更多蛋白质,但也取消了Ag结合。在体外评估了对scFv连接接头长度的产量,Ag结合和结合潜力以及工程化半胱氨酸的存在和位置的影响。我们的数据表明,对于di-scFv-SH,scFv连接接头长度的增加导致更高的产量和更好的Ag结合;一个20 aa长的接头(G(4)S)(4)是测试的最长的接头。对于工程化的半胱氨酸,测试了三个位置。在scFv连接接头中,在E Tag上游的C末端和作为羧基末端aa。通过将di-scFv-SH与HRP-Mal偶联来评估游离SH的可及性表明,当半胱氨酸位于scFv羧基末端时,形成di-scFv-HRP缀合物的效率相当。这项经验性工作提供了通过将scFv-SH和di-scFv-SH模块特异性结合到支架上来开发双特异性scFv多聚体的框架。

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