Follicular dendritic cells restrict interleukin-4 availability in germinal centers and foster memory B cell generation

Immunity ◽  
2021 ◽  
Vol 54 (10) ◽  
pp. 2256-2272.e6
Author(s):  
Lihui Duan ◽  
Dan Liu ◽  
Hsin Chen ◽  
Michelle A. Mintz ◽  
Marissa Y. Chou ◽  
...  
2021 ◽  
Vol 17 (2) ◽  
pp. e1009260
Author(s):  
Diana Cortés-Selva ◽  
Lisa Gibbs ◽  
Andrew Ready ◽  
H. Atakan Ekiz ◽  
Ryan O’Connell ◽  
...  

Epidemiological studies have identified a correlation between maternal helminth infections and reduced immunity to some early childhood vaccinations, but the cellular basis for this is poorly understood. Here, we investigated the effects of maternal Schistosoma mansoni infection on steady-state offspring immunity, as well as immunity induced by a commercial tetanus/diphtheria vaccine using a dual IL-4 reporter mouse model of maternal schistosomiasis. We demonstrate that offspring born to S. mansoni infected mothers have reduced circulating plasma cells and peripheral lymph node follicular dendritic cells at steady state. These reductions correlate with reduced production of IL-4 by iNKT cells, the cellular source of IL-4 in the peripheral lymph node during early life. These defects in follicular dendritic cells and IL-4 production were maintained long-term with reduced secretion of IL-4 in the germinal center and reduced generation of TFH, memory B, and memory T cells in response to immunization with tetanus/diphtheria. Using single-cell RNASeq following tetanus/diphtheria immunization of offspring, we identified a defect in cell-cycle and cell-proliferation pathways in addition to a reduction in Ebf-1, a key B-cell transcription factor, in the majority of follicular B cells. These reductions are dependent on the presence of egg antigens in the mother, as offspring born to single-sex infected mothers do not have these transcriptional defects. These data indicate that maternal schistosomiasis leads to long-term defects in antigen-induced cellular immunity, and for the first time provide key mechanistic insight into the factors regulating reduced immunity in offspring born to S. mansoni infected mothers.


Blood ◽  
2009 ◽  
Vol 114 (22) ◽  
pp. 3919-3919
Author(s):  
Mary J. Ninan ◽  
Ajay Rawal ◽  
Dhatri Kodali ◽  
Hector Mesa ◽  
Manish Patel ◽  
...  

Abstract Abstract 3919 Poster Board III-855 Identifying pathogenic mechanisms that contribute to the development of lymphomas and influence clinical behavior is critical for developing targeted therapies, and selecting patients who may benefit from such drugs. An important level of control of gene expression occurs during initiation of cap-mediated mRNA translation by the eukaryotic initiation factor-4F (eIF-4F) trimolecular complex (eIF-4E, eIF-4G and eIF-4A), in which eIF-4E is rate limiting and oncogenic. eIF-4F hyperactivity plays a key role in human cancers by mediating expression of proteins critical for cell growth, transformation and tumorigenesis. eIF-4F activity is controlled by repressor eIF-4 binding proteins (BPs). 4E-BP1 activity is regulated by phosphorylation. Hypo/non-phosphorylated 4E-BP1 is active, binds eIF-4E and impedes eIF-4F formation, blocking translation and inducing apoptosis. Phosphorylation of 4E-BP1 (p4E-BP1) releases bound eIF-4E, which initiates cap-dependent translation. Because only limited information is available on the expression and phosphorylation of 4E-BP1 in lymphomas, and since agents (e.g., antisense oligonucleotides and small molecules) that target eIF-4E have been developed, we examined the frequency and level of expression of 4E-BP1 and its phosphorylation in various subtypes of mature B cell non-Hodgkin's lymphomas (BCL). Forty-six BCLs (12 follicular [FL], 13 diffuse large B-cell [DLBCL], 7 mantle cell, 5 extranodal marginal zone, and 9 small lymphocytic [SLL] lymphomas), 4 FL with incipient/partial lymph node involvement, and 11 reactive lymphoid tissues were examined using immunohistochemistry for total and phosphorylated 4E-BP1. Staining intensity was graded as from 0 to 3+. Western immunoblotting (WB) was performed on lysates of 5 mature BCLs (2 FL, 3 DLBCL) and 2 reactive lymph nodal tissues for eIF-4G (total), eIF-4E and 4E-BP1 (total and phosphorylated) expression. In reactive lymphoid tissues, there was regional and cellular specificity of expression of 4E-BP1, with either lack of, or minimal (0 to 1+) cytoplasmic expression in follicular center cells and paracortical T-cells, 2+ expression in follicular dendritic cells and paracortical zone Langerhan cells, and 3+ expression in mantle and marginal zones. p4E-BP1 expression was inverted, with 3+ cytoplasmic immunoreactivity in reactive follicular center cells and no expression in the mantle and marginal zone cells or T-cells, and 2+ or 3+ immunoreactivity in follicular dendritic cells and paracortical zone Langerhan cells. In BCLs, a consistently high level (2+ or 3+) of cytoplasmic 4E-BP1 expression was seen in neoplastic lymphocytes in 45/46 (98%) cases. In contrast, p4E-BP1 was moderately or strongly expressed in 19/46 (41%) cases of BCL, being negative in 17 (37%) cases, and only dimly expressed in the remaining 10 (22%) cases. Three of 4 cases with incipient/partial involvement by FL were easily distinguishable from reactive germinal centers by strong, diffuse staining with 4E-BP1 (and 1+ staining in the 4th case) in neoplastic follicles, distinct from negative/weak staining of adjacent reactive germinal centers. In SLL, slightly higher 4E-BP1 expression was noted in proliferation centers in comparison to surrounding small mature lymphocytes. WB confirmed that non-phosphorylated and p4E-BP1 were expressed in reactive nodes, FL and DLBCL. Other components of the eIF-4F complex including eIF-4G, total and p-eIF-4E and total 4E-BP1 were detectable in whole tissue lysates from BCL samples. We conclude that (a) while 4E-BP1 is almost uniformly expressed in various subtypes of BCL, its level of phosphorylation (indicative of activity) varies widely and has regional and cellular specificity, and (b) 4E-BP1 expression may identify minimal/early lymphomatous involvement in tissues. We speculate that 4E-BP1 phosphorylation may influence the biological behavior of BCLs, since in other investigations we found that the level of phosphorylation of 4E-BP1 correlates with survival after CHOP-based chemotherapy in DLBCL. Our findings support therapeutic trials targeting the eIF-4E pathway in many BCL subtypes, particularly in patients where immunostaining identifies high levels of 4E-BP1 phosphorylation. Disclosures: No relevant conflicts of interest to declare.


Blood ◽  
1992 ◽  
Vol 80 (5) ◽  
pp. 1284-1288 ◽  
Author(s):  
AS Freedman ◽  
JM Munro ◽  
K Rhynhart ◽  
P Schow ◽  
J Daley ◽  
...  

Abstract In germinal centers, B lymphocytes are intimately associated with follicular dendritic cells (FDCs). It has been hypothesized that FDCs are involved in the regulation of B-cell growth and differentiation through cell-cell interactions. In this study, highly enriched preparations of FDCs were isolated by cell sorting using the FDC restricted monoclonal antibody DRC-1. When irradiated FDCs were cultured with mitogen stimulated B cells, B cell 3H-TdR uptake was inhibited by up to 80%. This inhibitory effect was not seen when paraformaldehyde fixed FDCs were added to B-cell cultures, suggesting that the FDCs needed to be metabolically active. Moreover, supernatants from cultured FDCs were similarly able to inhibit B-cell proliferation. These results demonstrate that FDCs may downregulate the clonal expansion of B cells that occurs within lymphoid follicles as part of the normal physiologic immune response. Potentially, the loss of the inhibitory role of FDCs in vivo may be of importance in certain infectious and neoplastic processes in which germinal centers are affected.


Blood ◽  
1992 ◽  
Vol 80 (5) ◽  
pp. 1284-1288 ◽  
Author(s):  
AS Freedman ◽  
JM Munro ◽  
K Rhynhart ◽  
P Schow ◽  
J Daley ◽  
...  

In germinal centers, B lymphocytes are intimately associated with follicular dendritic cells (FDCs). It has been hypothesized that FDCs are involved in the regulation of B-cell growth and differentiation through cell-cell interactions. In this study, highly enriched preparations of FDCs were isolated by cell sorting using the FDC restricted monoclonal antibody DRC-1. When irradiated FDCs were cultured with mitogen stimulated B cells, B cell 3H-TdR uptake was inhibited by up to 80%. This inhibitory effect was not seen when paraformaldehyde fixed FDCs were added to B-cell cultures, suggesting that the FDCs needed to be metabolically active. Moreover, supernatants from cultured FDCs were similarly able to inhibit B-cell proliferation. These results demonstrate that FDCs may downregulate the clonal expansion of B cells that occurs within lymphoid follicles as part of the normal physiologic immune response. Potentially, the loss of the inhibitory role of FDCs in vivo may be of importance in certain infectious and neoplastic processes in which germinal centers are affected.


2011 ◽  
Vol 208 (12) ◽  
pp. 2497-2510 ◽  
Author(s):  
Xiaoming Wang ◽  
Bryan Cho ◽  
Kazuhiro Suzuki ◽  
Ying Xu ◽  
Jesse A. Green ◽  
...  

Follicular dendritic cells (FDCs) retain and display opsonized antigens in primary follicles and germinal centers (GCs). However, their roles beyond antigen presentation have been incompletely defined. In this study, we tested the impact of selective FDC ablation on short-term follicle and GC function. Within 2 d of FDC ablation, primary follicles lost their homogeneity and became disorganized bands of cells around T zones. These B cell areas retained CXCL13-expressing stromal cells but often exhibited inappropriate ER-TR7 and CCL21 expression. Ablation of GC FDCs led to the disappearance of GCs. When B cell death was prevented using a Bcl2 transgene, FDC ablation led to splenic GC B cell dispersal. Mesenteric lymph node GCs were more resistant but became dispersed when sphingosine-1-phosphate receptor-2 was also removed. These experiments indicate that FDCs help maintain primary follicles as a B cell exclusive niche and define a critical role for FDCs in cell retention within GCs.


2000 ◽  
Vol 192 (7) ◽  
pp. 931-942 ◽  
Author(s):  
Lynn G. Hannum ◽  
Ann M. Haberman ◽  
Shannon M. Anderson ◽  
Mark J. Shlomchik

Serum antibody (Ab) can play several roles during B cell immune responses. Among these is to promote the deposition of immune complexes (ICs) on follicular dendritic cells (FDCs). ICs on FDCs are generally thought to be critical for normal germinal center (GC) formation and the development and selection of memory B cells. However, it has been very difficult to test these ideas. To determine directly whether FDC-bound complexes do indeed function in these roles, we have developed a transgenic (Tg) mouse in which all B lymphocytes produce only the membrane-bound form of immunoglobulin M. Immune Tg mice have 10,000-fold less specific Ab than wild-type mice and lack detectable ICs on FDCs. Nonetheless, primary immune responses and the GC reaction in these mice are robust, suggesting that ICs on FDCs do not play critical roles in immune response initiation and GC formation. Moreover, as indicated by the presence and pattern of somatic mutations, memory cell formation and selection appear normal in these IC-deficient GCs.


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