A library approach for the de novo high-throughput isolation of humanized VHH domains with favorable developability properties following camelid immunization.

IF 5.6 2区 医学 Q1 MEDICINE, RESEARCH & EXPERIMENTAL mAbs Pub Date : 2023-01-01 Epub Date: 2023-09-27 DOI:10.1080/19420862.2023.2261149
Paul Arras, Han Byul Yoo, Lukas Pekar, Christian Schröter, Thomas Clarke, Simon Krah, Daniel Klewinghaus, Vanessa Siegmund, Andreas Evers, Stefan Zielonka
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引用次数: 2

Abstract

In this study, we generated a novel library approach for high throughput de novo identification of humanized single-domain antibodies following camelid immunization. To achieve this, VHH-derived complementarity-determining regions-3 (CDR3s) obtained from an immunized llama (Lama glama) were grafted onto humanized VHH backbones comprising moderately sequence-diversified CDR1 and CDR2 regions similar to natural immunized and naïve antibody repertoires. Importantly, these CDRs were tailored toward favorable in silico developability properties, by considering human-likeness as well as excluding potential sequence liabilities and predicted immunogenic motifs. Target-specific humanized single-domain antibodies (sdAbs) were readily obtained by yeast surface display. We demonstrate that, by exploiting this approach, high affinity sdAbs with an optimized in silico developability profile can be generated. These sdAbs display favorable biophysical, biochemical, and functional attributes and do not require any further sequence optimization. This approach is generally applicable to any antigen upon camelid immunization and has the potential to significantly accelerate candidate selection and reduce risks and attrition rates in sdAb development.

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一种用于骆驼免疫后具有良好可开发性的人源化VHH结构域的从头高通量分离的文库方法。
在这项研究中,我们产生了一种新的文库方法,用于骆驼免疫后人源化单结构域抗体的高通量从头鉴定。为了实现这一点,将从免疫的美洲驼(Lama-glama)获得的VHH衍生的互补决定区-3(CDR3)接枝到人源化VHH主链上,所述人源化的VHH主链包含与天然免疫和幼稚抗体库相似的适度序列多样化的CDR1和CDR2区。重要的是,通过考虑人类相似性以及排除潜在的序列责任和预测的免疫原性基序,这些CDR被定制为具有良好的计算机可显影性。通过酵母表面展示很容易获得靶向特异性人源化单结构域抗体(sdAbs)。我们证明,通过利用这种方法,可以生成具有优化的计算机可开发性轮廓的高亲和力sdAbs。这些sdAbs显示出良好的生物物理、生物化学和功能属性,并且不需要任何进一步的序列优化。这种方法通常适用于骆驼免疫后的任何抗原,并有可能显著加快候选人的选择,降低sdAb开发中的风险和损耗率。
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来源期刊
mAbs
mAbs 工程技术-仪器仪表
CiteScore
10.70
自引率
11.30%
发文量
77
审稿时长
6-12 weeks
期刊介绍: mAbs is a multi-disciplinary journal dedicated to the art and science of antibody research and development. The journal has a strong scientific and medical focus, but also strives to serve a broader readership. The articles are thus of interest to scientists, clinical researchers, and physicians, as well as the wider mAb community, including our readers involved in technology transfer, legal issues, investment, strategic planning and the regulation of therapeutics.
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