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首页> 外文期刊>Comptes rendus. Biologies >Construction of naive camelids VHH repertoire in phage display-based library.
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Construction of naive camelids VHH repertoire in phage display-based library.

机译:在基于噬菌体展示的文库中构建幼稚骆驼科动物VHH库。

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摘要

Camelids have unique antibodies, namely HCAbs (VHH) or commercially named NanobodiesReg. (Nb) that are composed only of a heavy-chain homodimer. As libraries based on immunized camelids are time-consuming, costly and likely redundant for certain antigens, we describe the construction of a naive camelid VHHs library from blood serum of non-immunized camelids with affinity in the subnanomolar range and suitable for standard immune applications. This approach is rapid and recovers VHH repertoire with the advantages of being more diverse, non-specific and devoid of subpopulations of specific antibodies, which allows the identification of binders for any potential antigen (or pathogen). RNAs from a number of camelids from Saudi Arabia were isolated and cDNAs of the diverse vhh gene were amplified; the resulting amplicons were cloned in the phage display pSEX81 vector. The size of the library was found to be within the required range (107) suitable for subsequent applications in disease diagnosis and treatment. Two hundred clones were randomly selected and the inserted gene library was either estimated for redundancy or sequenced and aligned to the reference camelid vhh gene (acc. No. ADE99145). Results indicated complete non-specificity of this small library in which no single event of redundancy was detected. These results indicate the efficacy of following this approach in order to yield a large and diverse enough gene library to secure the presence of the required version encoding the required antibodies for any target antigen. This work is a first step towards the construction of phage display-based biosensors useful in disease (e.g., TB or tuberculosis) diagnosis and treatment.
机译:骆驼科动物具有独特的抗体,即HCAb(VHH)或商业名称为NanobodiesReg。 (Nb)仅由重链同二聚体组成。由于基于免疫骆驼科动物的文库耗时,昂贵且可能对某些抗原而言是多余的,因此我们描述了从未免疫骆驼科动物的血清中构建幼稚骆驼科动物VHHs文库的亲和力在亚纳摩尔范围内,适合标准免疫应用。这种方法是快速的并且可以恢复VHH库,其优点是更加多样化,非特异性并且没有特异性抗体的亚群,从而可以识别任何潜在抗原(或病原体)的结合物。从沙特阿拉伯的许多骆驼科动物中分离出RNA,并扩增了多种vhh基因的cDNA。将得到的扩增子克隆到噬菌体展示pSEX81载体中。发现该文库的大小在所需范围内(10 7 ),适用于疾病诊断和治疗的后续应用。随机选择两百个克隆,然后估计插入的基因文库的冗余性或对其进行测序,并与参考骆驼科动物的vhh基因(编号ADE99145)进行比对。结果表明该小文库的完全非特异性,其中未检测到单个冗余事件。这些结果表明了采用这种方法的功效,以产生足够大且足够多样的基因文库,以确保编码任何靶抗原所需抗体的所需版本的存在。这项工作是构建可用于疾病(例如结核病或结核病)诊断和治疗的基于噬菌体展示的生物传感器的第一步。

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