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首页> 外文期刊>Journal of Biological Physics >ModiBodies: A computational method for modifying nanobodies in nanobody-antigen complexes to improve binding affinity and specificity
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ModiBodies: A computational method for modifying nanobodies in nanobody-antigen complexes to improve binding affinity and specificity

机译:Modibodies:一种用于改性纳米抗体 - 抗原复合物中纳米级甲基型以提高结合亲和力和特异性的计算方法

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摘要

Nanobodies are special derivatives of antibodies, which consist of single domain fragments. They have become of considerable interest as next-generation biotechnological tools for antigen recognition. They can be easily engineered due to their high stability and compact size. Nanobodies have three complementarity-determining regions, CDRs, which are enlarged to provide a similar binding surface to that of human immunoglobulins. Here, we propose a benchmark testing algorithm that uses 3D structures of already existing protein-nanobody complexes as initial structures followed by successive mutations on the CDR domains. The aim is to find optimum binding amino acids for hypervariable residues of CDRs. We use molecular dynamics simulations to compare the binding energies of the resulting complexes with that of the known complex and accept those that are improved by mutations. We use the MDM4-VH9 complex, (PDB id 2VYR), fructose-bisphosphate aldolase from Trypanosoma congolense (PDB id 5O0W) and human lysozyme (PDB id 4I0C) as benchmark complexes. By using this algorithm, better binding nanobodies can be generated in a short amount of time. We suggest that this method can complement existing immune and synthetic library-based methods, without a need for extensive experimentation or large libraries.
机译:纳米辐射是抗体的特殊衍生物,其由单结构域片段组成。他们已成为抗原识别的下一代生物技术工具的相当兴趣。由于其高稳定性和紧凑的尺寸,它们可以很容易地设计。纳米级具有三个互补性测定区域,CDR,其被扩大以提供与人免疫球蛋白相似的结合表面。这里,我们提出了一种基准测试算法,其使用已经现有的蛋白质 - 纳米体复合物的3D结构作为初始结构,然后在CDR结构域上进行连续突变。目的是寻找最佳的CDR的高变残氨基酸。我们使用分子动力学模拟来比较所得复合物的结合能量与已知复合物的结合能量,并接受通过突变改善的复合物的结合能。我们使用从锥体瘤的锥体瘤(PDB ID 50W)和人溶菌酶(PDB ID 4IO OC)的MDM4-VH9复合物,果糖 - 双磷酸醛磷酸酶作为基准复合物。通过使用该算法,可以在短时间内产生更好的结合纳米型。我们建议这种方法可以补充现有的免疫和综合文库的方法,无需广泛的实验或大型图书馆。

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