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Back-to-Germline (B2G) Procedure for Antibody Devolution

机译:抗体转移的回胚过程(B2G)

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摘要

Bispecific antibodies (bsAbs) with avidity-enhanced specificity can be used to address target cells with increased specificity, ideally binding efficiently to cells that express two cognate antigens, yet not to cells that express only one of those. Building blocks required to generate such bsAbs are binders that recognize the two antigens with high specificity yet with various (including very low monovalent) affinities. The herein described ‘back-to-germline’ (B2G) procedure defines such derivatives. It converts parent antibodies with high specificity to derivatives that retain specificity but modulate affinity. The approach defines mutations to be introduced into antibody complementarity-determining regions (CDRs) regions without requiring structures of antibody-antigen complexes. Instead, it reverses the B-cell maturation process that increases affinities, with preference on CDR residues with high antigen contact probability. Placing germline residues at those positions generates VH and VL domains and Fv-combinations thereof that retain specificities but are ‘de-matured’ to different degrees. De-maturation influences on-rates and off-rates, and can produce entities with extremely low affinity for which binding can only be detected in bivalent formats. A comparison with alanine replacement in CDRs (so far, the most frequently applied technology) indicates that B2G may be more reliable/predictable without introduction of stickiness or poly-reactivity. The applicability for generating sets of affinity-modulated monospecific variants is exemplarily shown for antibodies that bind CD138, Her2eu, and EGFR.
机译:具有亲和力增强特异性的双特异性抗体(bsAbs)可用于处理特异性更高的靶细胞,理想情况下可以有效地与表达两种同源抗原的细胞结合,而不与仅表达其中一种抗原的细胞有效结合。产生此类bsAb所需的构件是结合剂,它们以高特异性识别两种抗原,但具有各种(包括非常低的单价)亲和力。本文所述的“回到胚芽”(B2G)过程定义了此类派生工具。它将具有高特异性的亲本抗体转化为保留特异性但调节亲和力的衍生物。该方法定义了无需抗体-抗原复合物结构即可引入抗体互补决定区(CDR)区的突变。相反,它会逆转增加亲和力的B细胞成熟过程,并优先选择具有高抗原接触概率的CDR残基。将种系残基放置在这些位置会产生VH和VL结构域及其Fv组合,这些结构保留特异性,但会在不同程度上“脱氢”。变性会影响接通率和断开率,并且会产生亲和力极低的实体,对其的结合只能以二价形式检测。与CDR中丙氨酸替代的比较(到目前为止,最常用的技术)表明,在不引入粘性或多反应性的情况下,B2G可能更可靠/可预测。对于结合CD138,Her2 / neu和EGFR的抗体,示例性地显示了产生用于产生亲和力调节的单特异性变体组的适用性。

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