首页> 外文期刊>Protein Engineering >Single-chain Fv multimers of the anti-neuraminidase antibody NC10: the residue at position 15 in the V(L) domain of the scFv-0 (V(L)-V(H)) molecule is primarily responsible for formation of a tetramer-trimer equilibrium.
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Single-chain Fv multimers of the anti-neuraminidase antibody NC10: the residue at position 15 in the V(L) domain of the scFv-0 (V(L)-V(H)) molecule is primarily responsible for formation of a tetramer-trimer equilibrium.

机译:抗神经氨酸酶抗体NC10的单链Fv多聚体:scFv-0(V(L)-V(H))分子V(L)结构域中15位的残基主要负责形成四聚体-三聚体平衡。

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摘要

Single-chain variable fragment of the murine monoclonal antibody NC10 specific to influenza virus N9 neuraminidase, joined directly in the V(L) to V(H) orientation (scFv-0), forms an equilibrium mixture of tetramer and trimer with the tetramer as the preferred multimeric species. In contrast, the V(H)-V(L) isomer was previously shown to exist exclusively as a trimer. Computer-generated trimeric and tetrameric scFv models, based on the refined crystal structure for NC10 Fv domain, were constructed and used to evaluate factors influencing the transition between V(L)-V(H) trimer and tetramer. These model structures indicated that steric restrictions between loops spanning amino acid residues L55-L59 and L13-L17 from the two adjacent V(L) domains within the V(L)-V(H) trimer were responsible for four scFv-0 molecules assembling to form a tetramer. In particular, leucine at position L15 and glutamate at position L57 appeared to interfere significantly with each other. To minimize this steric interference, the site-directed mutagenesis technique was used to construct several NC10 scFv-0 clones with mutations at these positions. Size-exclusion chromatographic analyses revealed that several of these mutations resulted in the production of NC10 scFv-0 proteins with significantly altered tetramer-trimer equilibrium ratios. In particular, introduction of a polar residue, such as asparagine or threonine, at position L15 generated a highly stable NC10 scFv-0 trimer.
机译:特异性针对流感病毒N9神经氨酸酶的鼠类单克隆抗体NC10的单链可变片段,直接以V(L)至V(H)方向(scFv-0)连接,形成四聚体和三聚体的平衡混合物,其中四聚体为优选的多聚体种类。相反,以前显示V(H)-V(L)异构体仅以三聚体形式存在。基于NC10 Fv域的精炼晶体结构,计算机生成的三聚体和四聚体scFv模型被构建并用于评估影响V(L)-V(H)三聚体和四聚体之间过渡的因素。这些模型结构表明,跨越V(L)-V(H)三聚体中两个相邻V(L)域的氨基酸残基L55-L59和L13-L17的环之间的空间限制是导致四个scFv-0分子组装的原因形成四聚体。特别地,L15位的亮氨酸和L57位的谷氨酸似乎彼此显着干扰。为了使这种空间干扰最小化,使用了定点诱变技术来构建几个在这些位置具有突变的NC10 scFv-0克隆。尺寸排阻色谱分析显示,其中一些突变导致产生的NC10 scFv-0蛋白具有明显改变的四聚体-三聚体平衡比。特别是,在位置L15引入极性残基(例如天冬酰胺或苏氨酸)会产生高度稳定的NC10 scFv-0三聚体。

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