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Human B-cell ontogeny in humanized NOD/SCID γc(null) mice generates a diverse yet auto/poly- and HIV-1 reactive antibody repertoire

Characterization of the human antibody (Ab) repertoire in mouse models of the human immune system is essential to establish their relevance in translational studies. Single human B-cells were sorted from bone marrow and periphery of humanized NOD/SCID γc(null) mice at 8–10 months post-engraftment wi...

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Autores principales: Chang, Hong, Biswas, Subhabrata, Tallarico, Aimee St. Clair, Sarkis, Phuong Thi Nguyen, Geng, Shusheng, Panditrao, Madhura M., Zhu, Quan, Marasco, Wayne A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3411862/
https://www.ncbi.nlm.nih.gov/pubmed/22592523
http://dx.doi.org/10.1038/gene.2012.16
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author Chang, Hong
Biswas, Subhabrata
Tallarico, Aimee St. Clair
Sarkis, Phuong Thi Nguyen
Geng, Shusheng
Panditrao, Madhura M.
Zhu, Quan
Marasco, Wayne A.
author_facet Chang, Hong
Biswas, Subhabrata
Tallarico, Aimee St. Clair
Sarkis, Phuong Thi Nguyen
Geng, Shusheng
Panditrao, Madhura M.
Zhu, Quan
Marasco, Wayne A.
author_sort Chang, Hong
collection PubMed
description Characterization of the human antibody (Ab) repertoire in mouse models of the human immune system is essential to establish their relevance in translational studies. Single human B-cells were sorted from bone marrow and periphery of humanized NOD/SCID γc(null) mice at 8–10 months post-engraftment with human cord blood-derived CD34(+) stem cells. Human immunoglobulin variable heavy (V(H)) and kappa (V(κ)) genes were amplified, cognate V(H)-V(κ) gene-pairs assembled as single-chain variable fragment-Fc antibodies (scFvFcs) and functional studies performed. Although overall distribution of V(H) genes approximated the normal human Ab repertoire, analysis of the V(H)-third complementarity determining regions (H-CDR3) in the mature B-cell subset demonstrated an increase in length and positive charges suggesting autoimmune characteristics. Additionally, >70% of V(κ) sequences utilized V(κ)4-1, a germline gene associated with autoimmunity. The mature B-cell subset-derived scFvFcs displayed the highest frequency of autoreactivity and polyspecificity, suggesting defects in checkpoint control mechanisms. Furthermore, these scFvFcs demonstrated binding to recombinant HIV envelope corroborating previous observations of poly/autoreactivity in anti-HIVgp140 antibodies. These data lend support to the hypothesis that anti-HIV BnAbs may be derived from auto/polyspecific Abs that escaped immune elimination and that the hNSG mouse could provide a new experimental platform for studying the origin of anti-HIV neutralizing Ab responses.
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spelling pubmed-34118622013-01-01 Human B-cell ontogeny in humanized NOD/SCID γc(null) mice generates a diverse yet auto/poly- and HIV-1 reactive antibody repertoire Chang, Hong Biswas, Subhabrata Tallarico, Aimee St. Clair Sarkis, Phuong Thi Nguyen Geng, Shusheng Panditrao, Madhura M. Zhu, Quan Marasco, Wayne A. Genes Immun Article Characterization of the human antibody (Ab) repertoire in mouse models of the human immune system is essential to establish their relevance in translational studies. Single human B-cells were sorted from bone marrow and periphery of humanized NOD/SCID γc(null) mice at 8–10 months post-engraftment with human cord blood-derived CD34(+) stem cells. Human immunoglobulin variable heavy (V(H)) and kappa (V(κ)) genes were amplified, cognate V(H)-V(κ) gene-pairs assembled as single-chain variable fragment-Fc antibodies (scFvFcs) and functional studies performed. Although overall distribution of V(H) genes approximated the normal human Ab repertoire, analysis of the V(H)-third complementarity determining regions (H-CDR3) in the mature B-cell subset demonstrated an increase in length and positive charges suggesting autoimmune characteristics. Additionally, >70% of V(κ) sequences utilized V(κ)4-1, a germline gene associated with autoimmunity. The mature B-cell subset-derived scFvFcs displayed the highest frequency of autoreactivity and polyspecificity, suggesting defects in checkpoint control mechanisms. Furthermore, these scFvFcs demonstrated binding to recombinant HIV envelope corroborating previous observations of poly/autoreactivity in anti-HIVgp140 antibodies. These data lend support to the hypothesis that anti-HIV BnAbs may be derived from auto/polyspecific Abs that escaped immune elimination and that the hNSG mouse could provide a new experimental platform for studying the origin of anti-HIV neutralizing Ab responses. 2012-05-17 2012-07 /pmc/articles/PMC3411862/ /pubmed/22592523 http://dx.doi.org/10.1038/gene.2012.16 Text en Users may view, print, copy, download and text and data- mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Chang, Hong
Biswas, Subhabrata
Tallarico, Aimee St. Clair
Sarkis, Phuong Thi Nguyen
Geng, Shusheng
Panditrao, Madhura M.
Zhu, Quan
Marasco, Wayne A.
Human B-cell ontogeny in humanized NOD/SCID γc(null) mice generates a diverse yet auto/poly- and HIV-1 reactive antibody repertoire
title Human B-cell ontogeny in humanized NOD/SCID γc(null) mice generates a diverse yet auto/poly- and HIV-1 reactive antibody repertoire
title_full Human B-cell ontogeny in humanized NOD/SCID γc(null) mice generates a diverse yet auto/poly- and HIV-1 reactive antibody repertoire
title_fullStr Human B-cell ontogeny in humanized NOD/SCID γc(null) mice generates a diverse yet auto/poly- and HIV-1 reactive antibody repertoire
title_full_unstemmed Human B-cell ontogeny in humanized NOD/SCID γc(null) mice generates a diverse yet auto/poly- and HIV-1 reactive antibody repertoire
title_short Human B-cell ontogeny in humanized NOD/SCID γc(null) mice generates a diverse yet auto/poly- and HIV-1 reactive antibody repertoire
title_sort human b-cell ontogeny in humanized nod/scid γc(null) mice generates a diverse yet auto/poly- and hiv-1 reactive antibody repertoire
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3411862/
https://www.ncbi.nlm.nih.gov/pubmed/22592523
http://dx.doi.org/10.1038/gene.2012.16
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