Preparation, Characterization, and Binding Mechanism of Nanobodies Targeting Multiple Serotypes of Salmonella

化学 表位 血清型 抗原 噬菌体展示 肽库 抗体 污渍 表位定位 氨基酸 结合位点 肽序列 血浆蛋白结合 氨基酸残基 分子生物学 生物化学 计算生物学 残留物(化学) 噬菌体 结合选择性 大肠杆菌 半胱氨酸 配体结合分析 微生物学 丝状噬菌体 病毒学 单域抗体
作者
Yingjie Huang,Weiying Kong,Yu Ma,Xiaohong Wang,Jia Wang
出处
期刊:Analytical Chemistry [American Chemical Society]
卷期号:98 (9): 6929-6940 被引量:1
标识
DOI:10.1021/acs.analchem.5c07402
摘要

Salmonella Enteritidis and Salmonella Typhimurium both are the most prevalent Salmonella serotypes responsible for human infections. Immunoassays, typically relying on serotype-specific antibodies, often lack the capacity for broad-spectrum Salmonella serotype detection. To address this limitation, in this study, nanobody VHH-II-3 was isolated from a phage display library constructed by immunization with inactivated S. Enteritidis and S. Typhimurium cells, followed by a cross-antigen strategy for biopanning. The VHH-II-3 nanobody could bind against 13 Salmonella serotypes and exhibited excellent thermostability. The antigenic targets of VHH-II-3 were identified as the structural epitopes of flagellar proteins FliC and FlgL through His-tag pull-down assays coupled with mass spectrometry, further verified by Western blotting and VHH ELISA. Biolayer interferometry (BLI) affinity analysis revealed that the binding constant of VHH-II-3 to FliC reached the nanomolar level (10 –9 M), with the amino acid residue of Gln105 within the CDR3 loop playing a critical role in antigen recognition. Notably, FlgL likely contributed significantly to the broad-spectrum recognition capability of VHH-II-3, as it was highly conserved across diverse Salmonella serotypes. This study provided a promising nanobody for the broad-serotype detection for Salmonella and offered novel perspectives into their antigen-binding mechanisms for improved diagnostic and monitoring applications.
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