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1.
J Exp Med ; 216(9): 1999-2009, 2019 09 02.
Article in English | MEDLINE | ID: mdl-31248899

ABSTRACT

Group-2 innate lymphoid cells (ILC2), type-2 cytokines, and eosinophils have all been implicated in sustaining adipose tissue homeostasis. However, the interplay between the stroma and adipose-resident immune cells is less well understood. We identify that white adipose tissue-resident multipotent stromal cells (WAT-MSCs) can act as a reservoir for IL-33, especially after cell stress, but also provide additional signals for sustaining ILC2. Indeed, we demonstrate that WAT-MSCs also support ICAM-1-mediated proliferation and activation of LFA-1-expressing ILC2s. Consequently, ILC2-derived IL-4 and IL-13 feed back to induce eotaxin secretion from WAT-MSCs, supporting eosinophil recruitment. Thus, MSCs provide a niche for multifaceted dialogue with ILC2 to sustain a type-2 immune environment in WAT.


Subject(s)
Adipose Tissue, White/cytology , Immunity, Innate , Lymphocytes/cytology , Lymphocytes/immunology , Animals , Cell Proliferation , Eosinophils/metabolism , Interleukin-33 , Interleukin-5/biosynthesis , Mice, Inbred BALB C , Mice, Inbred C57BL , Stromal Cells/cytology
2.
PLoS Biol ; 16(9): e2005046, 2018 09.
Article in English | MEDLINE | ID: mdl-30180168

ABSTRACT

The microenvironment of lymphoid organs can aid healthy immune function through provision of both structural and molecular support. In mice, fibroblastic reticular cells (FRCs) create an essential T-cell support structure within lymph nodes, while human FRCs are largely unstudied. Here, we show that FRCs create a regulatory checkpoint in human peripheral T-cell activation through 4 mechanisms simultaneously utilised. Human tonsil and lymph node-derived FRCs constrained the proliferation of both naïve and pre-activated T cells, skewing their differentiation away from a central memory T-cell phenotype. FRCs acted unilaterally without requiring T-cell feedback, imposing suppression via indoleamine-2,3-dioxygenase, adenosine 2A Receptor, prostaglandin E2, and transforming growth factor beta receptor (TGFßR). Each mechanistic pathway was druggable, and a cocktail of inhibitors, targeting all 4 mechanisms, entirely reversed the suppressive effect of FRCs. T cells were not permanently anergised by FRCs, and studies using chimeric antigen receptor (CAR) T cells showed that immunotherapeutic T cells retained effector functions in the presence of FRCs. Since mice were not suitable as a proof-of-concept model, we instead developed a novel human tissue-based in situ assay. Human T cells stimulated using standard methods within fresh tonsil slices did not proliferate except in the presence of inhibitors described above. Collectively, we define a 4-part molecular mechanism by which FRCs regulate the T-cell response to strongly activating events in secondary lymphoid organs while permitting activated and CAR T cells to utilise effector functions. Our results define 4 feasible strategies, used alone or in combinations, to boost primary T-cell responses to infection or cancer by pharmacologically targeting FRCs.


Subject(s)
Cell Differentiation/immunology , Cellular Microenvironment , Lymph Nodes/immunology , Lymphocyte Activation/immunology , T-Lymphocytes/cytology , Adult , Cell Proliferation , Child , Fibroblasts/cytology , Humans , Immunologic Memory , Phenotype
3.
Stem Cell Reports ; 6(6): 798-805, 2016 06 14.
Article in English | MEDLINE | ID: mdl-27161363

ABSTRACT

Regeneration of vertebrate skeletal muscles requires satellite cells, a population of stem cells that are quiescent in normal conditions and divide, differentiate, and self-renew upon activation triggered by exercise, injury, and degenerative diseases. Satellite cell self-renewal is essential for long-term tissue homeostasis, and previous work has identified a number of external cues that control this process. However, little is known of the possible intrinsic control mechanisms of satellite cell self-renewal. Here, we show that quiescent satellite cells harbor a primary cilium, which is rapidly disassembled upon entry into the cell cycle. Contrasting with a commonly accepted belief, cilia reassembly does not occur uniformly in cells exiting the cell cycle. We found that primary cilia reassemble preferentially in cells committed to self-renew, and disruption of cilia reassembly causes a specific deficit in self-renewing satellite cells. These observations indicate that primary cilia provide an intrinsic cue essential for satellite cell self-renewal.


Subject(s)
Cilia/ultrastructure , Muscle, Skeletal/ultrastructure , Myofibrils/ultrastructure , Satellite Cells, Skeletal Muscle/cytology , ADP-Ribosylation Factors/genetics , ADP-Ribosylation Factors/metabolism , Animals , Cardiotoxins/toxicity , Caveolin 1/genetics , Caveolin 1/metabolism , Cell Cycle/drug effects , Cell Proliferation/drug effects , Cilia/drug effects , Cilia/metabolism , Gene Expression Regulation , Mice , Mice, Inbred C57BL , Mice, Transgenic , Muscle, Skeletal/drug effects , Muscle, Skeletal/injuries , Muscle, Skeletal/metabolism , Myofibrils/drug effects , Myofibrils/metabolism , Myogenin/genetics , Myogenin/metabolism , Nocodazole/pharmacology , PAX7 Transcription Factor/genetics , PAX7 Transcription Factor/metabolism , Paclitaxel/pharmacology , Satellite Cells, Skeletal Muscle/drug effects , Satellite Cells, Skeletal Muscle/metabolism , Signal Transduction
4.
Front Immunol ; 7: 612, 2016.
Article in English | MEDLINE | ID: mdl-28066422

ABSTRACT

Fat-associated lymphoid clusters (FALCs) are atypical lymphoid tissues that were originally identified in mouse and human mesenteries due to that they contain a high number of type 2 innate lymphoid cells/nuocytes/natural helper cells. FALCs are located on adipose tissues in mucosal surfaces such as the mediastinum, pericardium, and gonadal fat. Importantly, these clusters contain B1, B2 and T lymphocytes as well as myeloid and other innate immune cell populations. The developmental cues of FALC formation have started to emerge, showing that these clusters depend on a different set of molecules and cells than secondary lymphoid tissues for their formation. Here, we review the current knowledge on FALC formation, and we compare FALCs and omental milky spots and their responses to inflammation.

5.
J Bacteriol ; 192(18): 4627-42, 2010 Sep.
Article in English | MEDLINE | ID: mdl-20622062

ABSTRACT

Enteropathogenic Escherichia coli (EPEC) infections are characterized by the formation of attaching and effacing (A/E) lesions on the surfaces of infected epithelial cells. The genes required for the formation of A/E lesions are located within the locus of enterocyte effacement (LEE). Ler is the key regulatory factor controlling the expression of LEE genes. Expression of the ler gene is positively regulated by GrlA, which is encoded by the LEE. Here, we analyze the mechanism by which GrlA positively regulates ler expression and show that in the absence of H-NS, GrlA is no longer essential for ler activation, further confirming that GrlA acts in part as an H-NS antagonist on the ler promoter. Single-amino-acid mutants were constructed to test the functional significance of the putative helix-turn-helix (HTH) DNA binding motif found in the N-terminal half of GrlA, as well as at the C-terminal domain of the protein. Several mutations within the HTH motif, but not all, completely abolished GrlA activity, as well as specific binding to its target sequence downstream from position -54 in the ler regulatory region. Some of these mutants, albeit inactive, were still able to interact with the negative regulator GrlR, indicating that loss of activity was not a consequence of protein misfolding. Additional residues in the vicinity of the HTH domain, as well as at the end of the protein, were also shown to be important for GrlA activity as a transcriptional regulator, but not for its interaction with GrlR. In summary, GrlA consists of at least two functional domains, one involved in transcriptional activation and DNA binding and the other in heterodimerization with GrlR.


Subject(s)
Enteropathogenic Escherichia coli/metabolism , Escherichia coli Proteins/genetics , Escherichia coli Proteins/metabolism , Gene Expression Regulation, Bacterial , Trans-Activators/genetics , Trans-Activators/metabolism , Blotting, Western , Electrophoretic Mobility Shift Assay , Enteropathogenic Escherichia coli/genetics , Fimbriae Proteins/genetics , Fimbriae Proteins/metabolism , Gene Expression Regulation, Bacterial/genetics , Gene Expression Regulation, Bacterial/physiology , Mutagenesis, Site-Directed , Promoter Regions, Genetic/genetics , Protein Binding
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