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1.
Sci Rep ; 14(1): 9497, 2024 04 25.
Article En | MEDLINE | ID: mdl-38664418

Raine syndrome (RNS) is a rare autosomal recessive osteosclerotic dysplasia. RNS is caused by loss-of-function disease-causative variants of the FAM20C gene that encodes a kinase that phosphorylates most of the secreted proteins found in the body fluids and extracellular matrix. The most common RNS clinical features are generalized osteosclerosis, facial dysmorphism, intracerebral calcifications and respiratory defects. In non-lethal RNS forms, oral traits include a well-studied hypoplastic amelogenesis imperfecta (AI) and a much less characterized gingival phenotype. We used immunomorphological, biochemical, and siRNA approaches to analyze gingival tissues and primary cultures of gingival fibroblasts of two unrelated, previously reported RNS patients. We showed that fibrosis, pathological gingival calcifications and increased expression of various profibrotic and pro-osteogenic proteins such as POSTN, SPARC and VIM were common findings. Proteomic analysis of differentially expressed proteins demonstrated that proteins involved in extracellular matrix (ECM) regulation and related to the TGFß/SMAD signaling pathway were increased. Functional analyses confirmed the upregulation of TGFß/SMAD signaling and subsequently uncovered the involvement of two closely related transcription cofactors important in fibrogenesis, Yes-associated protein (YAP) and transcriptional coactivator with PDZ-binding motif (TAZ). Knocking down of FAM20C confirmed the TGFß-YAP/TAZ interplay indicating that a profibrotic loop enabled gingival fibrosis in RNS patients. In summary, our in vivo and in vitro data provide a detailed description of the RNS gingival phenotype. They show that gingival fibrosis and calcifications are associated with, and most likely caused by excessed ECM production and disorganization. They furthermore uncover the contribution of increased TGFß-YAP/TAZ signaling in the pathogenesis of the gingival fibrosis.


Abnormalities, Multiple , Adaptor Proteins, Signal Transducing , Cleft Palate , Dental Enamel Hypoplasia , Exophthalmos , Fibroblasts , Fibrosis , Gingiva , Osteosclerosis , Proteomics , Signal Transduction , Transcription Factors , Transforming Growth Factor beta , YAP-Signaling Proteins , Humans , Transforming Growth Factor beta/metabolism , Gingiva/metabolism , Gingiva/pathology , Proteomics/methods , Fibrosis/metabolism , YAP-Signaling Proteins/metabolism , YAP-Signaling Proteins/genetics , Osteosclerosis/metabolism , Osteosclerosis/genetics , Osteosclerosis/pathology , Adaptor Proteins, Signal Transducing/metabolism , Adaptor Proteins, Signal Transducing/genetics , Transcription Factors/metabolism , Transcription Factors/genetics , Dental Enamel Hypoplasia/metabolism , Dental Enamel Hypoplasia/genetics , Dental Enamel Hypoplasia/pathology , Fibroblasts/metabolism , Fibroblasts/pathology , Microcephaly/metabolism , Microcephaly/genetics , Microcephaly/pathology , Female , Transcriptional Coactivator with PDZ-Binding Motif Proteins/metabolism , Male , Trans-Activators/metabolism , Trans-Activators/genetics , Intracellular Signaling Peptides and Proteins/metabolism , Intracellular Signaling Peptides and Proteins/genetics , Casein Kinase I/metabolism , Casein Kinase I/genetics , Extracellular Matrix Proteins/metabolism , Extracellular Matrix Proteins/genetics , Amelogenesis Imperfecta/metabolism , Amelogenesis Imperfecta/genetics , Amelogenesis Imperfecta/pathology , Cells, Cultured
2.
PLoS One ; 18(12): e0294922, 2023.
Article En | MEDLINE | ID: mdl-38039285

The matrix metalloproteinase MMP9 influences cellular morphology and function, and plays important roles in organogenesis and disease. It exerts both protective and deleterious effects in renal pathology, depending upon its specific substrates. To explore new functions for MMP9 in kidney cysts formation and disease progression, we generated a mouse model by breeding juvenile cystic kidney (jck) mice with MMP9 deficient mice. Specifically, we provide evidence that MMP9 is overexpressed in cystic tissue where its enzymatic activity is increased 7-fold. MMP9 deficiency in cystic kidney worsen cystic kidney diseases by decreasing renal function, favoring cyst expansion and fibrosis. In addition, we find that periostin is a new critical substrate for MMP9 and in its absence periostin accumulates in cystic lining cells. As periostin promotes renal cyst growth and interstitial fibrosis in polycystic kidney diseases, we propose that the control of periostin by MMP9 and its associated intracellular signaling pathways including integrins, integrin-linked kinase and focal adhesion kinase confers to MMP9 a protective effect on the severity of the disease.


Matrix Metalloproteinase 9 , Polycystic Kidney Diseases , Animals , Mice , Matrix Metalloproteinase 9/genetics , Matrix Metalloproteinase 9/metabolism , Polycystic Kidney Diseases/pathology , Kidney/pathology , Signal Transduction , Fibrosis
3.
Cells ; 11(14)2022 07 15.
Article En | MEDLINE | ID: mdl-35883655

Diabetic nephropathy (DN) remains the most common reason for end-stage renal disease and a leading cause of kidney replacement therapy. Multifactorial pathophysiological mechanisms underlie the development of DN. Among the signalling pathways involved, nuclear factor-κB (NF-κB) plays a key role in pathogenesis triggering inflammation, oxidative stress and fibrosis. Recent evidence shows that periostin, a matricellular protein, is involved in the development of renal glomerular diseases through interaction with NF-κB signalling. The aim of the present study is to investigate the contribution of periostin and its interaction with NF-κB in DN development. To this end, we used the BTBR ob/ob mice model of diabetes type 2, and we applied transcriptomic analysis, immunostaining and methods quantifying protein and mRNA expressions. We found that increased periostin expression was correlated with decreased renal function, advanced stage renal damage and fibrosis, and NF-κB activation. Subsequently, we identified novel pathways and genes regulated by the NF-κB-periostin interaction which are involved in the mechanisms of progression of DN. Some of these genes, such as FGF1 and GDF15, have the potential to be new biomarkers and/or targets for the therapy of DN.


Cell Adhesion Molecules , Diabetes Mellitus , Diabetic Nephropathies , NF-kappa B , Animals , Cell Adhesion Molecules/metabolism , Diabetes Mellitus/pathology , Diabetic Nephropathies/genetics , Diabetic Nephropathies/metabolism , Fibrosis , Kidney/pathology , Mice , NF-kappa B/metabolism , Signal Transduction
4.
Kidney Int ; 101(2): 274-287, 2022 02.
Article En | MEDLINE | ID: mdl-34756952

Childhood IgA nephropathy (IgAN) includes a wide spectrum of clinical presentations, from isolated hematuria to acute nephritis with rapid loss of kidney function. In adults, IgAN is an autoimmune disease and its pathogenesis involves galactose deficient (Gd) IgA1, IgG anti-Gd-IgA1 autoantibodies and the soluble IgA Fc receptor (CD89). However, implication of such factors, notably soluble CD89, in childhood IgAN pathogenesis remains unclear. Here, we studied these biomarkers in a cohort of 67 patients with childhood IgAN and 42 pediatric controls. While Gd-IgA1 was only moderately increased in patient plasma, levels of circulating IgA complexes (soluble CD89-IgA and IgG-IgA) and free soluble CD89 were markedly increased in childhood IgAN. Soluble CD89-IgA1 complexes and free soluble CD89 correlated with proteinuria, as well as histological markers of disease activity: mesangial, endocapillary hypercellularity and cellular crescents. Soluble CD89 was found in patient's urine but not in urine from pediatric controls. Mesangial deposits of soluble CD89 were detected in biopsies from patients with childhood IgAN. Serum chromatographic fractions containing covalently linked soluble CD89-IgA1 complexes or free soluble CD89 from patients induced mesangial cell proliferation in vitro in a soluble CD89-dependent manner. Recombinant soluble CD89 induced mesangial cell proliferation in vitro which was inhibited by free soluble recombinant CD71 (also a mesangial IgA receptor) or mTOR blockers. Interestingly, injection of recombinant soluble CD89 induced marked glomerular proliferation and proteinuria in mice expressing human IgA1. Thus, free and IgA1-complexed soluble CD89 are key players in mesangial proliferation. Hence, our findings suggest that soluble CD89 plays an essential role in childhood IgAN pathogenesis making it a potential biomarker and therapeutic target.


Glomerulonephritis, IGA , Animals , Cell Proliferation , Child , Glomerular Mesangium/pathology , Glomerulonephritis, IGA/pathology , Humans , Immunoglobulin A , Kidney Glomerulus/pathology , Mice
5.
Front Endocrinol (Lausanne) ; 12: 752568, 2021.
Article En | MEDLINE | ID: mdl-34777248

The enamel renal syndrome (ERS) is a rare disorder featured by amelogenesis imperfecta, gingival fibromatosis and nephrocalcinosis. ERS is caused by bi-allelic mutations in the secretory pathway pseudokinase FAM20A. How mutations in FAM20A may modify the gingival connective tissue homeostasis and cause fibromatosis is currently unknown. We here analyzed conditioned media of gingival fibroblasts (GFs) obtained from four unrelated ERS patients carrying distinct mutations and control subjects. Secretomic analysis identified 109 dysregulated proteins whose abundance had increased (69 proteins) or decreased (40 proteins) at least 1.5-fold compared to control GFs. Proteins over-represented were mainly involved in extracellular matrix organization, collagen fibril assembly, and biomineralization whereas those under-represented were extracellular matrix-associated proteins. More specifically, transforming growth factor-beta 2, a member of the TGFß family involved in both mineralization and fibrosis was strongly increased in samples from GFs of ERS patients and so were various known targets of the TGFß signaling pathway including Collagens, Matrix metallopeptidase 2 and Fibronectin. For the over-expressed proteins quantitative RT-PCR analysis showed increased transcript levels, suggesting increased synthesis and this was further confirmed at the tissue level. Additional immunohistochemical and western blot analyses showed activation and nuclear localization of the classical TGFß effector phospho-Smad3 in both ERS gingival tissue and ERS GFs. Exposure of the mutant cells to TGFB1 further upregulated the expression of TGFß targets suggesting that this pathway could be a central player in the pathogenesis of the ERS gingival fibromatosis. In conclusion our data strongly suggest that TGFß -induced modifications of the extracellular matrix contribute to the pathogenesis of ERS. To our knowledge this is the first proteomic-based analysis of FAM20A-associated modifications.


Amelogenesis Imperfecta/genetics , Amelogenesis Imperfecta/pathology , Dental Enamel Proteins/genetics , Fibromatosis, Gingival/genetics , Fibromatosis, Gingival/pathology , Nephrocalcinosis/genetics , Nephrocalcinosis/pathology , Adolescent , Amelogenesis Imperfecta/complications , Amelogenesis Imperfecta/etiology , Extracellular Matrix/genetics , Extracellular Matrix/pathology , Fibroblasts/metabolism , Fibromatosis, Gingival/complications , Gingiva/pathology , Humans , Male , Mutation , Nephrocalcinosis/complications , Nephrocalcinosis/etiology , Proteomics , Signal Transduction/genetics , Transforming Growth Factor beta , Young Adult
6.
Front Immunol ; 12: 694787, 2021.
Article En | MEDLINE | ID: mdl-34712223

Immunoglobulin A nephropathy (IgAN) is the most common primary glomerulonephritis. Several observations suggest that gut microbiota could be implicated in IgAN pathophysiology. Aiming at exploring whether microbiota modulation is able to influence disease outcome, we performed fecal microbiota transplantation (FMT) from healthy controls (HC-sbjs), non-progressor (NP-pts) and progressor (P-pts) IgAN patients to antibiotic-treated humanized IgAN mice (α1KI-CD89Tg), by oral gavage. FMT was able to modulate renal phenotype and inflammation. On one hand, the microbiota from P-pts was able to induce an increase of serum BAFF and galactose deficient-IgA1 levels and a decrease of CD89 cell surface expression on blood CD11b+ cells which was associated with soluble CD89 and IgA1 mesangial deposits. On the other hand, the microbiota from HC-sbjs was able to induce a reduction of albuminuria immediately after gavage, an increased cell surface expression of CD89 on blood CD11b+ cells and a decreased expression of KC chemokine in kidney. Higher serum BAFF levels were found in mice subjected to FMT from IgAN patients. The main bacterial phyla composition and volatile organic compounds profile significantly differed in mouse gut microbiota. Microbiota modulation by FMT influences IgAN phenotype opening new avenues for therapeutic approaches in IgAN.


Bacteria/metabolism , Fecal Microbiota Transplantation , Gastrointestinal Microbiome , Glomerulonephritis, IGA/therapy , Kidney/microbiology , Animals , Antigens, CD/genetics , Antigens, CD/metabolism , B-Cell Activating Factor/blood , Case-Control Studies , Disease Models, Animal , Dysbiosis , Glomerulonephritis, IGA/immunology , Glomerulonephritis, IGA/metabolism , Glomerulonephritis, IGA/microbiology , Humans , Immunoglobulin A/genetics , Immunoglobulin A/metabolism , Kidney/immunology , Kidney/metabolism , Male , Mice, Transgenic , Phenotype , Receptors, Fc/genetics , Receptors, Fc/metabolism , Volatile Organic Compounds/metabolism
7.
Mol Immunol ; 121: 1-6, 2020 05.
Article En | MEDLINE | ID: mdl-32135400

The transglutaminase 2 (TG2) is one of the enigmatic enzymes with important functional diversity. It plays an important role in several pathologies such as celiac disease (CD). In patients with active CD, the abnormal retrotranscytosis of IgA/gliadin complexes is mediated by Transferrin Receptor 1 (TfR1). This triad association takes also place in IgA nephropathy (IgA-N). IgA-N is characterized by the formation of nephrotoxic complexes of IgA1 and soluble CD89 (sCD89). These complexes are abnormally deposited in the kidney. Using a humanized mouse model of IgA-N (α1KI-CD89Tg), we showed that IgA1-sCD89 complexes engender mesangial cell activation and proliferation with TfR1 and TG2 up-regulation, associated with IgA-N features. This TG2-TfR1 interaction enhances mesangial IgA1 deposition promoting inflammation. Humanized α1KI-CD89Tg mice deficient for TG2 show a decrease in TfR1 expression in kidney leading to reduced IgA1-sCD89 deposits and an improvement in IgA-N features. Moreover, TG2 is active and overexpressed in the intestine of IgA-N mice and gliadin participates to this renal pathology. In kidney as in intestine, the TG2 has a crucial role in the cooperation between TfR1-IgA and a central role in the pathogenic amplification.


Antigens, CD/metabolism , GTP-Binding Proteins/metabolism , Gliadin/immunology , Glomerulonephritis, IGA/immunology , Immunoglobulin A/metabolism , Receptors, Transferrin/metabolism , Transglutaminases/metabolism , Animals , Antigens, CD/genetics , Antigens, CD/immunology , Celiac Disease/immunology , Celiac Disease/pathology , Disease Models, Animal , GTP-Binding Proteins/genetics , GTP-Binding Proteins/immunology , Gliadin/metabolism , Humans , Immunoglobulin A/immunology , Intestinal Mucosa/immunology , Intestinal Mucosa/pathology , Mesangial Cells/immunology , Mesangial Cells/pathology , Mice , Mice, Transgenic , Protein Glutamine gamma Glutamyltransferase 2 , Receptors, Fc/genetics , Receptors, Fc/immunology , Receptors, Fc/metabolism , Receptors, Transferrin/immunology , Transglutaminases/genetics , Transglutaminases/immunology , Up-Regulation/immunology
8.
Cell Rep ; 27(3): 762-775.e5, 2019 04 16.
Article En | MEDLINE | ID: mdl-30995475

Direct bacterial recognition by innate receptors is crucial for bacterial clearance. Here, we show that the IgA receptor CD89 is a major innate receptor that directly binds bacteria independently of its cognate ligands IgA and c-reactive protein (CRP). This binding is only partially inhibited by serum IgA and induces bacterial phagocytosis by CD11c+ dendritic cells and monocytes and/or macrophages, suggesting a physiological role in innate host defense. Blood phagocytes from common variable immunodeficiency patients bind, internalize, and kill bacteria in a CD89-dependent manner, confirming the IgA independence of this mechanism. In vivo, CD89 transgenic mice are protected in two different models of sepsis: a model of pneumonia and the cecal ligation and puncture (CLP) polymicrobial model of infection. These data identify CD89 as a first-line innate receptor for bacterial clearance before adaptive responses can be mounted. Fc receptors may emerge as a class of innate receptors for various bacteria with pleiotropic roles.


Antigens, CD/metabolism , Escherichia coli/physiology , Receptors, Fc/metabolism , Sepsis/prevention & control , Streptococcus pneumoniae/physiology , Animals , Antigens, CD/genetics , C-Reactive Protein/metabolism , Cytokines/metabolism , Dendritic Cells/cytology , Dendritic Cells/immunology , Dendritic Cells/metabolism , Disease Models, Animal , Female , Humans , Immunocompromised Host , Immunoglobulin A/blood , Immunoglobulin A/immunology , Immunoglobulin A/metabolism , Kaplan-Meier Estimate , Mice , Mice, Inbred C57BL , Mice, Transgenic , Monocytes/cytology , Monocytes/immunology , Monocytes/metabolism , Phagocytosis , Pneumonia/mortality , Pneumonia/pathology , Receptors, Fc/genetics , Sepsis/immunology
9.
Nephrol Dial Transplant ; 34(7): 1135-1144, 2019 07 01.
Article En | MEDLINE | ID: mdl-30462346

BACKGROUND: Immunoglobulin A nephropathy (IgAN) is the most common primary glomerulonephritis worldwide. IgA is mainly produced by the gut-associated lymphoid tissue (GALT). Both experimental and clinical data suggest a role of the gut microbiota in this disease. We aimed to determine if an intervention targeting the gut microbiota could impact the development of disease in a humanized mouse model of IgAN, the α1KI-CD89Tg mice. METHODS: Four- and 12-week old mice were divided into two groups to receive either antibiotics or vehicle control. Faecal bacterial load and proteinuria were quantified both at the beginning and at the end of the experiment, when blood, kidneys and intestinal tissue were collected. Serum mouse immunoglobulin G (mIgG) and human immunoglobulin A1 (hIgA1)-containing complexes were quantified. Renal and intestinal tissue were analysed by optical microscopy after haematoxylin and eosin colouration and immunohistochemistry with anti-hIgA and anti-mouse CD11b antibodies. RESULTS: Antibiotic treatment efficiently depleted the faecal microbiota, impaired GALT architecture and impacted mouse IgA production. However, while hIgA1 and mIgG serum levels were unchanged, the antibiotic treatment markedly prevented hIgA1 mesangial deposition, glomerular inflammation and the development of proteinuria. This was associated with a significant decrease in circulating hIgA1-mIgG complexes. Notably, final faecal bacterial load strongly correlated with critical clinical and pathophysiological features of IgAN such as proteinuria and hIgA1-mIgG complexes. In addition, treatment with broad-spectrum antibiotics reverted established disease. CONCLUSIONS: These data support an essential role of the gut microbiota in the generation of mucosa-derived nephrotoxic IgA1 and in IgAN development, opening new avenues for therapeutic approaches in this disease.


Anti-Bacterial Agents , Gastrointestinal Microbiome , Glomerulonephritis, IGA , Animals , Female , Male , Mice , Administration, Oral , Anti-Bacterial Agents/administration & dosage , Disease Models, Animal , Gastrointestinal Microbiome/drug effects , Glomerulonephritis, IGA/drug therapy , Glomerulonephritis, IGA/immunology , Glomerulonephritis, IGA/microbiology
10.
J Autoimmun ; 89: 149-161, 2018 05.
Article En | MEDLINE | ID: mdl-29307588

Idiopathic steroid sensitive nephrotic syndrome (INS), the most frequent childhood nephropathy, is thought to be mediated by a circulating soluble factor that reversibly affects the renal protein sieving. The efficiency of rituximab therapy recently highlighted the involvement of B cells. Here we studied the involvement of a specific immunoglobulin G (IgG) in the disease. After plasma fractionation by size exclusion chromatography, a detachment of cultured podocyte was observed with one IgG-containing fraction from 47% patients in relapse, 9% of patients in remission and 0% of controls. Podocyte protein lysates were immunoprecipitated by IgG from those plasma fractions identifying a list of 41 podocyte proteins after proteomic analysis. Five podocyte targets were selected on statistical and biological criteria. Specific antibodies were tested and only anti-Ubiquitin Carboxyl-Terminal Hydrolase L1 (UCHL1) IgG led to podocyte detachment. UCHL1 was mainly found inside the podocyte but also weakly expressed on podocyte cell surface. Incubation of either anti-UCHL1 IgG or plasma fractions with recombinant UCHL1 prevented podocyte detachment. Plasma levels of anti-UCHL1 IgG were significantly increased in relapsing INS patients compared to patients in remission and controls. Proteinuria correlated with anti-UCHL1 IgG level at various stages of the disease. Purified patient anti-UCHL1 antibodies induced proteinuria and podocyte foot effacement in mice. Altogether, these results identified UCHL1 as a target podocyte protein of autoantibodies in a set of relapsing patients and support a causative role of anti-UCHL1 autoantibodies in the development of INS.


Nephrotic Syndrome/immunology , Podocytes/physiology , Proteinuria/immunology , Ubiquitin Thiolesterase/immunology , Adolescent , Animals , Autoantibodies/blood , Cell Adhesion , Cells, Cultured , Child , Disease Models, Animal , Disease Progression , Female , Humans , Immunoglobulin G/blood , Immunoglobulin G/isolation & purification , Male , Mice , Mice, Inbred BALB C , Ubiquitin Thiolesterase/genetics
11.
J Am Soc Nephrol ; 27(9): 2622-9, 2016 09.
Article En | MEDLINE | ID: mdl-26850635

IgA nephropathy (IgAN), characterized by mesangial IgA1 deposits, is a leading cause of renal failure worldwide. IgAN pathogenesis involves circulating hypogalactosylated IgA1 complexed with soluble IgA Fc receptor I (sCD89) and/or anti-hypogalactosylated-IgA1 autoantibodies, but no specific treatment is available for IgAN. The absence of IgA1 and CD89 homologs in the mouse has precluded in vivo proof-of-concept studies of specific therapies targeting IgA1. However, the α1KI­CD89Tg mouse model of IgAN, which expresses human IgA1 and human CD89, allows in vivo testing of recombinant IgA1 protease (IgA1­P), a bacterial protein that selectively cleaves human IgA1. Mice injected with IgA1­P (1-10 mg/kg) had Fc fragments of IgA1 in both serum and urine, associated with a decrease in IgA1-sCD89 complexes. Levels of mesangial IgA1 deposits and the binding partners of these deposits (sCD89, transferrin receptor, and transglutaminase 2) decreased markedly 1 week after treatment, as did the levels of C3 deposition, CD11b(+) infiltrating cells, and fibronectin. Antiprotease antibodies did not significantly alter IgA1­P activity. Moreover, hematuria consistently decreased after treatment. In conclusion, IgA1­P strongly diminishes human IgA1 mesangial deposits and reduces inflammation, fibrosis, and hematuria in a mouse IgAN model, and therefore may be a plausible treatment for patients with IgAN.


Glomerular Mesangium/metabolism , Glomerulonephritis, IGA/drug therapy , Hematuria/drug therapy , Immunoglobulin A/drug effects , Immunoglobulin A/metabolism , Serine Endopeptidases/pharmacology , Animals , Disease Models, Animal , Mice , Serine Endopeptidases/therapeutic use
12.
Kidney Int ; 88(2): 276-85, 2015 Aug.
Article En | MEDLINE | ID: mdl-25807036

IgA1 complexes containing deglycosylated IgA1, IgG autoantibodies, and a soluble form of the IgA receptor (sCD89), are hallmarks of IgA nephropathy (IgAN). Food antigens, notably gluten, are associated with increased mucosal response and IgAN onset, but their implication in the pathology remains unknown. Here, an IgAN mouse model expressing human IgA1 and CD89 was used to examine the role of gluten in IgAN. Mice were given a gluten-free diet for three generations to produce gluten sensitivity, and then challenged for 30 days with a gluten diet. A gluten-free diet resulted in a decrease of mesangial IgA1 deposits, transferrin 1 receptor, and transglutaminase 2 expression, as well as hematuria. Mice on a gluten-free diet lacked IgA1-sCD89 complexes in serum and kidney eluates. Disease severity depended on gluten and CD89, as shown by reappearance of IgAN features in mice on a gluten diet and by direct binding of the gluten-subcomponent gliadin to sCD89. A gluten diet exacerbated intestinal IgA1 secretion, inflammation, and villous atrophy, and increased serum IgA1 anti-gliadin antibodies, which correlated with proteinuria in mice and patients. Moreover, early treatment of humanized mice with a gluten-free diet prevented mesangial IgA1 deposits and hematuria. Thus, gliadin-CD89 interaction may aggravate IgAN development through induction of IgA1-sCD89 complex formation and a mucosal immune response. Hence, early-stage treatment with a gluten-free diet could be beneficial to prevent disease.


Antigens, CD/metabolism , Glomerulonephritis, IGA/immunology , Glomerulonephritis, IGA/metabolism , Glutens/toxicity , Immunoglobulin A/metabolism , Intestinal Mucosa/pathology , Receptors, Fc/metabolism , Animals , Antigens, CD/blood , Atrophy/etiology , Diet, Gluten-Free , Disease Models, Animal , Enteritis/etiology , GTP-Binding Proteins/metabolism , Gliadin/immunology , Gliadin/metabolism , Glomerulonephritis, IGA/diet therapy , Glutens/administration & dosage , Glutens/immunology , Hematuria/diet therapy , Hematuria/etiology , Immunoglobulin A/blood , Intestinal Mucosa/immunology , Intestinal Mucosa/metabolism , Male , Mice , Protein Glutamine gamma Glutamyltransferase 2 , Proteinuria/etiology , Receptors, Fc/blood , Receptors, Transferrin/metabolism , Transglutaminases/metabolism
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