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针对人类微生物群的血清抗体表位库在全人群中的多样性和稳定性。

Population-wide diversity and stability of serum antibody epitope repertoires against human microbiota.

作者信息

Vogl Thomas, Klompus Shelley, Leviatan Sigal, Kalka Iris N, Weinberger Adina, Wijmenga Cisca, Fu Jingyuan, Zhernakova Alexandra, Weersma Rinse K, Segal Eran

机构信息

Department of Computer Science and Applied Mathematics, Weizmann Institute of Science, Rehovot, Israel.

Department of Molecular Cell Biology, Weizmann Institute of Science, Rehovot, Israel.

出版信息

Nat Med. 2021 Aug;27(8):1442-1450. doi: 10.1038/s41591-021-01409-3. Epub 2021 Jul 19.

Abstract

Serum antibodies can recognize both pathogens and commensal gut microbiota. However, our current understanding of antibody repertoires is largely based on DNA sequencing of the corresponding B-cell receptor genes, and actual bacterial antigen targets remain incompletely characterized. Here we have profiled the serum antibody responses of 997 healthy individuals against 244,000 rationally selected peptide antigens derived from gut microbiota and pathogenic and probiotic bacteria. Leveraging phage immunoprecipitation sequencing (PhIP-Seq) based on phage-displayed synthetic oligo libraries, we detect a wide breadth of individual-specific as well as shared antibody responses against microbiota that associate with age and gender. We also demonstrate that these antibody epitope repertoires are more longitudinally stable than gut microbiome species abundances. Serum samples of more than 200 individuals collected five years apart could be accurately matched and could serve as an immunologic fingerprint. Overall, our results suggest that systemic antibody responses provide a non-redundant layer of information about microbiota beyond gut microbial species composition.

摘要

血清抗体能够识别病原体和肠道共生微生物群。然而,我们目前对抗体库的理解很大程度上基于相应B细胞受体基因的DNA测序,而实际的细菌抗原靶点仍未完全明确。在此,我们分析了997名健康个体针对244,000种从肠道微生物群、致病菌和益生菌中合理选择的肽抗原的血清抗体反应。利用基于噬菌体展示合成寡核苷酸文库的噬菌体免疫沉淀测序(PhIP-Seq),我们检测到针对与年龄和性别相关的微生物群的广泛的个体特异性以及共享抗体反应。我们还证明,这些抗体表位库比肠道微生物物种丰度在纵向更稳定。相隔五年采集的200多名个体的血清样本能够准确匹配,并可作为免疫指纹。总体而言,我们的结果表明,全身抗体反应提供了关于微生物群的一层非冗余信息,超越了肠道微生物物种组成。

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