Expression of the chemokine receptor CCR2 on immature B cells negatively regulates their cytoskeletal rearrangement and migration

Blood ◽  
2004 ◽  
Vol 104 (4) ◽  
pp. 933-941 ◽  
Author(s):  
Liat Flaishon ◽  
Shirly Becker-Herman ◽  
Gili Hart ◽  
Yoram Levo ◽  
William A. Kuziel ◽  
...  

AbstractImmature B cells are targeted to specific areas in the spleen, where a fraction of these cells receive signals that induce them to mature and participate in the immune response. In this study, we show that the C-C chemokine receptor 2 (CCR2) is transcribed in immature B cells, while its message is dramatically down-regulated at the mature stage. CCR2-deficient cells exhibit up-regulation of chemokine-induced actin polymerization, migration, and homing to the lymph nodes of immature B cells. In addition, we demonstrate that control of homing by CCR2 is mediated by its ligand, CCL2/JE, which is secreted by B cells and down-regulates the stromal derived factor-1 (SDF-1) signaling cascade. Thus, this study describes an additional, previously uncharacterized, role for CCR2 and its ligand as negative regulators of the homing of immature B cells.

PLoS ONE ◽  
2020 ◽  
Vol 15 (3) ◽  
pp. e0229170
Author(s):  
Veronika Kozlova ◽  
Aneta Ledererova ◽  
Adriana Ladungova ◽  
Helena Peschelova ◽  
Pavlina Janovska ◽  
...  

2001 ◽  
Vol 276 (50) ◽  
pp. 46701-46706 ◽  
Author(s):  
Liat Flaishon ◽  
Frida Lantner ◽  
Rami Hershkoviz ◽  
Yoram Levo ◽  
Idit Shachar

In order to fully mature and participate in the humoral immune response, immature B cells must first migrate into specific areas in the spleen where they differentiate into mature cells. However, before their maturation in the spleen, immature B cells must be excluded from non-splenic secondary lymphoid organs where any antigen encounter would lead to the death of the cells because of the negative selection process. We have recently shown that immature B cells can actively exclude themselves from antigen-enriched sites by down-regulating their integrin-mediated adhesion in a process mediated by interferon-γ (IFN-γ). In this study, we followed the pathway by which IFN-γ regulates the homing of B cells. We show here that the inhibitory signal of IFN-γ is transmitted through the IFN-γ receptor whose engagement leads to the activation of PI3K. This PI3K activation subsequently leads to the inhibition of PKCα phosphorylation and cytoskeleton rearrangement required for promoting integrin-mediated adhesion and migration of B cells.


Blood ◽  
2008 ◽  
Vol 111 (1) ◽  
pp. 50-59 ◽  
Author(s):  
Gili Hart ◽  
Tamar Avin-Wittenberg ◽  
Idit Shachar

To complete their maturation and participate in the humoral immune response, immature B cells that leave the bone marrow are targeted to specific areas in the spleen, where they differentiate into mature cells. Previously, we showed that immature B cells actively down-regulate their integrin-mediated migration to lymph nodes or to sites of inflammation, enabling their targeting to the spleen for final maturation. This inhibition is mediated by IFN-γ, which is transcribed and secreted at low levels by these immature B cells; IFN-γ expression is extinguished following B-cell maturation. Stimulation of the MHC class I receptor, Ly49D, triggers a signaling cascade that increases transcription of both IL-12 (p40) and IL-18; these, in turn, induce the secretion of IFN-γ. In the present study, we demonstrate that Ly49D-dependent secretion of IL-12 and IL-18 induces IL-15 expression by immature B cells, and that these 3 factors together regulate IFN-γ production that inhibits their ability to home to the lymph nodes or to sites of inflammation. Thus, IL-15 controls immature B-cell homing, resulting in shaping the B-cell repertoire to enable an efficient immune response.


Blood ◽  
1999 ◽  
Vol 94 (9) ◽  
pp. 2990-2998 ◽  
Author(s):  
Marek Honczarenko ◽  
Raymond S. Douglas ◽  
Clarissa Mathias ◽  
Benhur Lee ◽  
Mariusz Z. Ratajczak ◽  
...  

Abstract Chemokines and their receptors are broadly expressed in different tissues and are involved in diverse biologic processes. Gene inactivation studies have shown that both stromal cell derived factor-1 (SDF-1) and chemokine receptor 4 (CXCR4) are essential for B lymphopoiesis. However, it is not yet clear by which mechanisms B lymphopoiesis is affected. In the present study, we have examined CXCR4 expression and function on primary B cells representing sequential stages of development (eg, pro-B, pre-B, immature, and mature B cells) in fetal and adult bone marrow. The expression of CXCR4 was observed to be sinusoidal. Expression was highest on pre-B cells, decreased as cells developed into immature B cells, and then increased again upon transition to the mature B-cell stage. The corresponding ligand SDF-1 was shown to trigger vigorous cell signaling and migration responses, which are restricted to early lineage B cells. The responsiveness to SDF-1 was markedly decreased for immature and mature B cells despite relatively high levels of CXCR4 expression. Thus, the diminished responsiveness to SDF-1 by more mature B cells was determined to be disproportionate to the level of CXCR4 expression. These findings raise the possibility that CXCR4 function is differentially controlled during B lymphopoiesis and may be relevant to the compartmentalization of B-cell precursors in the bone marrow.


2014 ◽  
Vol 34 (suppl_1) ◽  
Author(s):  
Baohui Xu ◽  
Naoki Fujimura ◽  
Haojun Xuan ◽  
Jackson Dalman ◽  
Yuko Furisho ◽  
...  

Abdominal aortic aneurysm (AAA) is a macrophage-driven vascular inflammatory disease. Chemokine receptor CCR2, a critical mediator of monocyte mobilization and migration, promotes AAA pathogenesis in hyperlipidemic mice following angiotensin II infusion. This study examined the role o CCR2 signaling in AAA formation in a mechanistically distinct experimental aneurysm model. AAAs were created in 10 week old male CCR2 knockout (KO) and wild type C57BL/6J mice via transient intra-aortic porcine pancreatic elastase (PPE) infusion. Aneurysm progression and aortic cellularity were evaluated using ultrasonography, histology and FACS analyses. In CCR2 KO mice, minimal aneurysmal enlargement was apparent following PPE infusion. Histologically, aortic medial elastin and smooth muscle cellularity were minimally degraded, and mural macrophage accumulation and angiogenesis were also significantly reduced compared to WT mice. Significantly fewer circulating and splenic inflammatory monocytes were identified via FACS analysis in KO mice, with a reciprocal increase in bone marrow monocyte cellularity. In in vivo monocyte migration assays, CCR2 deficiency was associated with a 60 -70% reduction in migration of intravenously transferred monocytes into aneurysmal aortae. In conclusion, targeted deletion of CCR2 in mice profoundly reduces mobilization of inflammatory monocytes from the bone marrow, while suppressing aneurysmal degeneration following PPE infusion. CCR2 signaling may represent an attractive target for therapeutic inhibition in medical management of AAA disease.


1977 ◽  
Vol 146 (6) ◽  
pp. 1473-1483 ◽  
Author(s):  
D W Scott ◽  
J E Layton ◽  
G J Nossal

Adult spleen cells from C57BL.Ige mice, which generally are resistant to in vitro tolerance induction in the B-cell compartment, became hyporesponsive (tolerant) when cultured with antigen in the presence of an anti-allotype serum. Both antigen and anti-delta had to be present for this effect, which was hapten-specific and did not occur in C57BL/L mice, which lack the Ig5-1 allotype of the delta-chain detected in this system. Preculture with anti-mu serum plus antigen, in contrast, did not cause tolerance induction in adult spleen B cells of either strain. These results suggest that the surface IgD may act as a failsafe receptor to prevent tolerance induction in adult B cells. Tolerance studies with spleen cells from mice with markedly reduced numbers of IgD+ve cells, because of regimen of repeated injections of anti-delta serum beginning at birth (delta-suppressed mice), confirmed the importance of membrane IgD in preventing tolerance, because such delta-suppressed mice were hypersusceptible to tolerance by antigen alone. Inasmuch as immature B cells lack IgD on their surface, these studies suggest that acquisition of IgD is an important maturational step in the ability of murine B cells to discriminate tolerogenic and immunogenic signals.


Blood ◽  
2021 ◽  
Vol 138 (Supplement 1) ◽  
pp. 2623-2623
Author(s):  
Jessica Nunes ◽  
Ann Ventura ◽  
Kevan Zapolnik ◽  
Eileen Hu ◽  
Liwen Zhang ◽  
...  

Abstract Introduction: Sialic acid-binding immunoglobulin-like lectins (Siglec) are a group of lectins that regulate innate and adaptive immune function via glycan recognition. We and others have shown overexpression of Siglec-6, a member of Siglec family, on B cells from patients with chronic lymphocytic leukemia (CLL) compared to normal donor derived B cells. While placental expression of Siglec-6 has been shown to regulate invasion of trophoblast cells by binding to glycodelin, the biochemical role of Siglec-6 in CLL patients is not known. We describe here for the first time the functional relevance of Siglec-6 and its ligand sialyl Tn (sTn) in cell adhesion and migration in CLL. Biochemical mechanisms of Siglec-6 mediated cell adhesion and migration through DOCK8 dependent activation of Cdc42 associated with actin polymerization in CLL cells are presented. Further, the physiological relevance of Siglec-6/ DOCK8 axis in CLL cell adhesion and migration is validated using primary CLL patient samples, and genetically engineered loss of function Siglec-6 and DOCK8 mutant MEC1 CLL cell line. These studies thus elucidate the biological role of Siglec-6 in malignant CLL B cells and demonstrate therapeutic opportunities targeting Siglec-6 in CLL. Methods: Flow cytometry was used to analyze surface expression of Siglec-6 and sTn in CLL patients and normal donors. Transwell migration assay was used to assess in-vitro migratory role of Siglec-6. Mass spectrometry analysis was performed to identify Siglec-6 interacting proteins. CRISPR/Cas9 technique was used to generate knock-out (KO) cell lines for mechanistic studies. Phalloidin staining followed by confocal imaging was used to examine actin polymerization. Cdc42 activation was evaluated using a commercial kit which uses specialized PAK1-PBD agarose beads to pull down GTP-bound Cdc42. To study the in-vivo migratory role of Siglec-6, MEC1 CLL cell line or primary CLL cells were blocked with an isotype antibody or Siglec-6 targeted antibody and injected into the tail vein of NSG immunocompromised mice. 24 hrs later, mice were euthanized and spleens and BM were processed followed by flow cytometry analysis to determine the number of human CD45+ cells that have migrated. Results: We confirmed Siglec-6 overexpression on B cells from CLL patients when compared to B cells from normal donors. Interestingly, we also found expression of sTn on bone marrow stromal cells (BMSCs) derived from CLL patients but not healthy donors. Compared to Siglec-6 + CLL cells, Siglec-6 - CLL cells exhibited significant reduction in adhesion to (~50%) and migration towards (~50%) media containing sTn or sTn + CLL-BMSCs in cell adhesion and trans-well migration assays. Importantly, a Siglec-6 targeted antibody inhibited homing of Siglec-6 + MEC1 cells and primary CLL cells to the spleen and bone marrow in NSG mice (~35%). Mass spectrometry and co-immunoprecipitation analysis in MEC1 cells revealed interaction of Siglec-6 with DOCK8, a guanine nucleotide exchange factor. Stimulation of Siglec-6 + MEC1 cells with sTn resulted in Cdc42 activation and WASP protein recruitment, which are both downstream targets of DOCK8 involved in cell migration. Further, sTn also promoted actin polymerization, an effect that was compromised in Siglec-6 or DOCK8 KO MEC1 cells. Additionally, cell fractionation experiments revealed that Siglec-6 + MEC1 cells had higher levels of DOCK8 at the cell membrane when compared to MEC1 Siglec-6 KO cells, indicating that Siglec-6 may be responsible for tethering DOCK8 to the cell membrane. Conclusions: We have for the first time shown Siglec-6 dependent recruitment of DOCK8 leading to migration and adhesion of B-CLL cells. Siglec-6 signals via DOCK8 to mediate sTn ligand dependent actin polymerization. We have also shown that sTn promotes Cdc42 activation and WASP protein recruitment which are both essential for actin polymerization. Moreover, all these effects were prevented by CRISPR/Cas9 mediated knock out of Siglec-6 or DOCK8 in MEC1 CLL cell line. Thus, Siglec-6 represents a CLL-specific target that opens up new therapeutic avenues to target only malignant B-CLL cells. Ongoing studies are focused on determining molecular mechanisms of Siglec-6 mediated regulation of actin polymerization and CLL-BMSC interactions. [This work was supported by NIH-R21 Grant and Pelotonia Idea grants. JN is a recipient of Pelotonia Graduate Fellowship] Disclosures Byrd: Newave: Membership on an entity's Board of Directors or advisory committees; Vincerx Pharmaceuticals: Current equity holder in publicly-traded company, Membership on an entity's Board of Directors or advisory committees; Novartis, Trillium, Astellas, AstraZeneca, Pharmacyclics, Syndax: Consultancy, Honoraria.


2003 ◽  
Vol 10 (1) ◽  
pp. 22-29 ◽  
Author(s):  
S. Krauss-Etschmann ◽  
E. Sammler ◽  
S. Koletzko ◽  
N. Konstantopoulos ◽  
D. Aust ◽  
...  

ABSTRACT Experimental data from human adults or animal models indicate that the Helicobacter pylori-specific immune response is dominated by inflammatory T cells of the Th1 type. To investigate whether a Th1 immune response is established in early H. pylori infection, gastric biopsy samples from 70 children were subjected to immunohistochemical analysis. To this end, T cells, B cells, monocytes, neutrophils, and chemokine receptor 5 (CCR5)-expressing (CCR5+) cells, which are associated with Th1 immune responses, were quantified. Children were classified according to H. pylori status and clinical, laboratory, and macroscopic (during endoscopy) findings, without knowledge of histological findings. Group 1 included 31 H. pylori-infected children, group 2 contained 24 children with other conditions possibly affecting the stomach, and group 3 contained 15 children without verifiable pathological findings in the stomach. Lymphoid follicles were present in 90% of biopsy samples from group 1 and 48% of those from group 2 but absent in group 3 biopsy samples. Intraepithelial T cells and CCR5+ cells were regularly detected in all groups without significant differences. B cells, monocytes, and neutrophils were not found. In contrast, the numbers of lamina propria T cells (P < 0.003) and CCR5+ cells (P < 0.001) were increased significantly in H. pylori-infected children. B cells (in 13 of 66 children) were detected in children with active (n = 11) or previously cleared (n = 2) H. pylori infections but were absent in healthy children. The numbers of monocytes (in 10 of 67 children) did not differ among the groups. Calculations indicated that the majority of gastric T cells express CCR5; this finding is in contrast to the low percentage of CCR5+ T cells in the peripheral circulation. Thus, an increase in the numbers of CCR5+ cells in H. pylori-infected stomach mucosa suggests that this molecule may play an important role in gastric immune responses.


Blood ◽  
1999 ◽  
Vol 94 (9) ◽  
pp. 2990-2998 ◽  
Author(s):  
Marek Honczarenko ◽  
Raymond S. Douglas ◽  
Clarissa Mathias ◽  
Benhur Lee ◽  
Mariusz Z. Ratajczak ◽  
...  

Chemokines and their receptors are broadly expressed in different tissues and are involved in diverse biologic processes. Gene inactivation studies have shown that both stromal cell derived factor-1 (SDF-1) and chemokine receptor 4 (CXCR4) are essential for B lymphopoiesis. However, it is not yet clear by which mechanisms B lymphopoiesis is affected. In the present study, we have examined CXCR4 expression and function on primary B cells representing sequential stages of development (eg, pro-B, pre-B, immature, and mature B cells) in fetal and adult bone marrow. The expression of CXCR4 was observed to be sinusoidal. Expression was highest on pre-B cells, decreased as cells developed into immature B cells, and then increased again upon transition to the mature B-cell stage. The corresponding ligand SDF-1 was shown to trigger vigorous cell signaling and migration responses, which are restricted to early lineage B cells. The responsiveness to SDF-1 was markedly decreased for immature and mature B cells despite relatively high levels of CXCR4 expression. Thus, the diminished responsiveness to SDF-1 by more mature B cells was determined to be disproportionate to the level of CXCR4 expression. These findings raise the possibility that CXCR4 function is differentially controlled during B lymphopoiesis and may be relevant to the compartmentalization of B-cell precursors in the bone marrow.


2003 ◽  
Vol 171 (9) ◽  
pp. 4630-4638 ◽  
Author(s):  
Gili Hart ◽  
Liat Flaishon ◽  
Shirly Becker-Herman ◽  
Idit Shachar

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