Silencing of B Cell Receptor Signals in Human Naive B Cells

Author:

Feldhahn Niklas12,Schwering Ines2,Lee Sanggyu3,Wartenberg Maria4,Klein Florian12,Wang Hui12,Zhou Guolin3,Wang San Ming3,Rowley Janet D.3,Hescheler Jürgen4,Krönke Martin1,Rajewsky Klaus5,Küppers Ralf2,Müschen Markus12

Affiliation:

1. Institute for Medical Microbiology, Immunology and Hygiene

2. Institute for Genetics, University of Cologne, 50931 Köln, Germany

3. Department of Medicine, University of Chicago, Chicago, IL 60637

4. Institute for Neurophysiology, University of Cologne, 50931 Köln, Germany

5. Center for Blood Research, Harvard Medical School, Boston, MA 02115

Abstract

To identify changes in the regulation of B cell receptor (BCR) signals during the development of human B cells, we generated genome-wide gene expression profiles using the serial analysis of gene expression (SAGE) technique for CD34+ hematopoietic stem cells (HSCs), pre-B cells, naive, germinal center (GC), and memory B cells. Comparing these SAGE profiles, genes encoding positive regulators of BCR signaling were expressed at consistently lower levels in naive B cells than in all other B cell subsets. Conversely, a large group of inhibitory signaling molecules, mostly belonging to the immunoglobulin superfamily (IgSF), were specifically or predominantly expressed in naive B cells. The quantitative differences observed by SAGE were corroborated by semiquantitative reverse transcription–polymerase chain reaction (RT-PCR) and flow cytometry. In a functional assay, we show that down-regulation of inhibitory IgSF receptors and increased responsiveness to BCR stimulation in memory as compared with naive B cells at least partly results from interleukin (IL)-4 receptor signaling. Conversely, activation or impairment of the inhibitory IgSF receptor LIRB1 affected BCR-dependent Ca2+ mobilization only in naive but not memory B cells. Thus, LIRB1 and IL-4 may represent components of two nonoverlapping gene expression programs in naive and memory B cells, respectively: in naive B cells, a large group of inhibitory IgSF receptors can elevate the BCR signaling threshold to prevent these cells from premature activation and clonal expansion before GC-dependent affinity maturation. In memory B cells, facilitated responsiveness upon reencounter of the immunizing antigen may result from amplification of BCR signals at virtually all levels of signal transduction.

Publisher

Rockefeller University Press

Subject

Immunology,Immunology and Allergy

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