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Hem-1 regulates protective humoral immunity and limits autoantibody production in a B cell–specific manner
Alan Avalos, Jacob T. Tietsort, Nutthakarn Suwankitwat, Jonathan D. Woods, Shaun W. Jackson, Alexandra Christodoulou, Christopher Morrill, H. Denny Liggitt, Chengsong Zhu, Quan-Zhen Li, Kevin K. Bui, Heon Park, Brian M. Iritani
Alan Avalos, Jacob T. Tietsort, Nutthakarn Suwankitwat, Jonathan D. Woods, Shaun W. Jackson, Alexandra Christodoulou, Christopher Morrill, H. Denny Liggitt, Chengsong Zhu, Quan-Zhen Li, Kevin K. Bui, Heon Park, Brian M. Iritani
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Research Article Immunology

Hem-1 regulates protective humoral immunity and limits autoantibody production in a B cell–specific manner

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Abstract

Hematopoietic protein-1 (Hem-1) is a member of the actin-regulatory WASp family verprolin homolog (WAVE) complex. Loss-of-function variants in the NCKAP1L gene encoding Hem-1 were recently discovered to result in primary immunodeficiency disease (PID) in children, characterized by poor specific Ab responses, increased autoantibodies, and high mortality. However, the mechanisms of how Hem-1 deficiency results in PID are unclear. In this study, we utilized constitutive and B cell–specific Nckap1l-KO mice to dissect the importance of Hem-1 in B cell development and functions. B cell–specific disruption of Hem-1 resulted in reduced numbers of recirculating follicular (FO), marginal zone (MZ), and B1 B cells. B cell migration in response to CXCL12 and -13 were reduced. T-independent Ab responses were nearly abolished, resulting in failed protective immunity to Streptococcus pneumoniae challenge. In contrast, T-dependent IgM and IgG2c, memory B cell, and plasma cell responses were more robust relative to WT control mice. B cell–specific Hem-1–deficient mice had increased autoantibodies against multiple autoantigens, and this correlated with hyperresponsive BCR signaling and increased representation of CD11c+T-bet+ age-associated B cell (ABC cells) — alterations associated with autoimmune diseases. These results suggest that dysfunctional B cells may be part of a mechanism explaining why loss-of-function Hem-1 variants result in recurring infections and autoimmunity.

Authors

Alan Avalos, Jacob T. Tietsort, Nutthakarn Suwankitwat, Jonathan D. Woods, Shaun W. Jackson, Alexandra Christodoulou, Christopher Morrill, H. Denny Liggitt, Chengsong Zhu, Quan-Zhen Li, Kevin K. Bui, Heon Park, Brian M. Iritani

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Figure 7

B cell–specific disruption of Hem-1 results in increased autoantibody production and a higher proportion of CD11c+T-bet+ ABC cells.

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B cell–specific disruption of Hem-1 results in increased autoantibody pr...
(A and B) Representative flow cytometric contour histograms and graphical representation of B220+CD11c+T-bet+ splenic B cells from WT and Hem1–/– mice, and B220+CD11c+CXCR3+ B cells from WT and Hem1fl/flMb1Cre mice. (C) Real-time PCR dot plots showing gapdh (loading control) and Ifng gene expression (Ct) from B220+CD21loCD23+ B cells sorted by FACS from WT (blue dots) and Hem1fl/flMb1Cre (red squares) mice and then stimulated for 12 hours with 10 μg/mL anti-IgM and 20 U/mL IFN-γ. Relative gene expression increases as Ct decreases. (D) Sera were collected from M and F mice ages 13–28 weeks. Shown are graphs depicting isotype-specific anti-dsDNA and anti-smRNP autoantibodies as determined by ELISA. Each data point represents an individual mouse, and the data were collected from a single experiment. (E) Sera were collected from female Hem1fl/flMb1Cre and control mice ages 28–32 weeks. Sera were then hybridized to an autoantigen microarray containing 128 antigens. Shown are heatmaps depicting antigen reactivity (antibody score) for IgM (left) and IgG (right). Statistically significant changes in female mice are noted in Supplemental Figure 7. Data represent mean ± SEM and were analyzed via unpaired Student’s t test or paired Student’s t test. *P ≤ 0.05, **P ≤ 0.01, ***P ≤ 0.001.

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