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首页> 外文期刊>Molecular medicine reports >Investigation of the structure of anti-human seminal plasma protein single-chain antibody and its association with linker peptide length
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Investigation of the structure of anti-human seminal plasma protein single-chain antibody and its association with linker peptide length

机译:抗人类精浆蛋白单链抗体的结构及其与接头肽长度的关系的研究

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To enhance the activity of seminoprotein single-chain variable fragment (gamma-Sm-ScFv) antibodies, modulation of the length of the linker peptide, which connects the variable region of the heavy chain (VH) and the light chain (VL) of single-chain antibodies, was performed in the present study. Homologous modeling of single VH and VL were performed, respectively. Subsequently, modeling of the whole ScFv sequence, which was previously modified with added linkers of different lengths was also performed, and the (Gly(4)Ser)(n) peptide chain structure was used as the linker. The similarities between VH and VL prior to and following the addition of the linker were compared by applying the algorithm of protein similarity, based on spherical coordinates layering. In addition, changes in the fore and aft distance, and diffusion radius were calculated using a MATLABtool, based on which changes in structural stability were analyzed. Finally, the single-chain antibody was assessed in a nude mouse model. When n=3 or n=6, the similarity between the original distance and VH and VL were the highest, and the fore and aft distance and diffusion radius were relatively close. In addition, the nude mouse model indicated that, when n=3 or n=6, the inhibitory rate of the single-chain antibody against tumor cells was significantly higher, compared with the other linker peptides of different lengths. The effect of structural changes of the linker peptides in the single-chain antibodies on the whole antibody molecule was examined at different levels using a combination of mathematical modeling, bioinformatics methods and biological experiments. The findings of the present study may provide a foundation for further investigation into the preparation of single-chain antibodies.
机译:为了增强半精蛋白单链可变片段(gamma-Sm-ScFv)抗体的活性,调节连接肽的长度,该连接肽连接单链的重链(VH)和轻链(VL)的可变区-链抗体在本研究中进行。分别对单个VH和VL进行了同源建模。随后,还对整个ScFv序列进行了建模,该序列先前已通过添加不同长度的接头进行了修饰,并且将(Gly(4)Ser)(n)肽链结构用作接头。通过应用基于球坐标分层的蛋白质相似性算法,比较了添加接头之前和之后VH和VL之间的相似性。另外,使用MATLAB工具计算前后距离的变化以及扩散半径,在此基础上分析结构稳定性的变化。最后,在裸鼠模型中评估单链抗体。当n = 3或n = 6时,原始距离与VH和VL之间的相似度最高,前后距离和扩散半径相对较近。另外,裸鼠模型表明,当n = 3或n = 6时,与不同长度的其他接头肽相比,单链抗体对肿瘤细胞的抑制率明显更高。使用数学建模,生物信息学方法和生物学实验的组合,以不同的水平检查了单链抗体中接头肽的结构变化对整个抗体分子的影响。本研究的发现可能为进一步研究单链抗体的制备提供基础。

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