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Chemically Crosslinked Bispecific Antibodies for Cancer Therapy: Breaking from the Structural Restrictions of the Genetic Fusion Approach

机译:用于癌症治疗的化学交联双特异性抗体:突破基因融合方法的结构限制

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摘要

Antibodies are composed of structurally and functionally independent domains that can be used as building blocks to construct different types of chimeric protein-format molecules. However, the generally used genetic fusion and chemical approaches restrict the types of structures that can be formed and do not give an ideal degree of homogeneity. In this study, we combined mutation techniques with chemical conjugation to construct a variety of homogeneous bivalent and bispecific antibodies. First, building modules without lysine residues—which can be chemical conjugation sites—were generated by means of genetic mutation. Specific mutated residues in the lysine-free modules were then re-mutated to lysine residues. Chemical conjugation at the recovered lysine sites enabled the construction of homogeneous bivalent and bispecific antibodies from block modules that could not have been so arranged by genetic fusion approaches. Molecular evolution and bioinformatics techniques assisted in finding viable alternatives to the lysine residues that did not deactivate the block modules. Multiple candidates for re-mutation positions offer a wide variety of possible steric arrangements of block modules, and appropriate linkages between block modules can generate highly bioactive bispecific antibodies. Here, we propose the effectiveness of the lysine-free block module design for site-specific chemical conjugation to form a variety of types of homogeneous chimeric protein-format molecule with a finely tuned structure and function.
机译:抗体由结构和功能上独立的域组成,可以用作构建不同类型的嵌合蛋白形式分子的基础。但是,通常使用的遗传融合和化学方法限制了可以形成的结构类型,并且不能提供理想的均匀度。在这项研究中,我们将突变技术与化学缀合相结合,构建了多种均一的二价和双特异性抗体。首先,通过基因突变产生了没有赖氨酸残基的模块(可能是化学结合位点)。然后将无赖氨酸模块中的特定突变残基重新突变为赖氨酸残基。在回收的赖氨酸位点上的化学结合使得能够从块模块构建均质的二价和双特异性抗体,而这些模块不可能通过基因融合方法进行排列。分子进化和生物信息学技术帮助寻找了不会使嵌段模块失活的赖氨酸残基的可行替代品。重突变位置的多个候选物提供了多种可能的嵌段模块空间排列,并且嵌段模块之间的适当连接可以产生高度生物活性的双特异性抗体。在这里,我们提出了无赖氨酸嵌段模块设计对位点特异性化学缀合形成各种类型的均质嵌合蛋白形式分子的结构和功能的有效性。

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