4.4 Article

High-throughput isolation of immunoglobulin genes from single human B cells and expression as monoclonal antibodies

期刊

JOURNAL OF VIROLOGICAL METHODS
卷 158, 期 1-2, 页码 171-179

出版社

ELSEVIER SCIENCE BV
DOI: 10.1016/j.jviromet.2009.02.014

关键词

Monoclonal antibody; Single B cells; Immunoglobulin gene; RT-PCR; Linear gene expression cassette

资金

  1. Center for HIV/AIDS Vaccine Immunology NIAID [U19 AI067854]
  2. NIAID [P01 A1061734]
  3. Bill and Melinda Gates Foundation
  4. NIH [S10RR019145, UC6 A1058607, A164518, P30 AI051445]

向作者/读者索取更多资源

Defining human B cell repertoires to viral pathogens is critical for design of vaccines that induce broadly protective antibodies to infections such as HIV-1 and influenza. Single B cell sorting and cloning of immunoglobulin (Ig) heavy- and light-chain variable regions (V(H) and V(L)) is a powerful technology for defining anti-viral B cell repertoires. However, the Ig-cloning step is time-consuming and prevents high-throughput analysis of the B cell repertoire. Novel linear Ig heavy- and light-chain gene expression cassettes were designed to express Ig V(H) and V(L) genes isolated from sorted single B cells as IgG1 antibody without a cloning step. The cassettes contain all essential elements for transcriptional and translational regulation, including CMV promoter, Ig leader sequences, constant region of IgG1 heavy- or Ig light-chain, poly(A) tail and substitutable V(H) or V(L) genes. The utility of these Ig gene expression cassettes was established using synthetic V(H) or V(L) genes from an anti-HIV-1 gp41 mAb 2F5 as a model system, and validated further using V(H) and V(L) genes isolated from cloned EBV-transformed antibody-producing cell lines. Finally, this strategy was successfully used for rapid production of recombinant influenza mAbs from sorted single human plasmablasts after influenza vaccination. These Ig gene expression cassettes constitute a highly efficient strategy for rapid expression of Ig genes for high-throughput screening and analysis without cloning. (c) 2009 Elsevier B.V. All rights reserved.

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