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result(s) for
"Severe Combined Immunodeficiency - immunology"
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Human RIPK1 deficiency causes combined immunodeficiency and inflammatory bowel diseases
by
Sepulveda, Fernando E.
,
Conca, Raffaele
,
Liu, Yanshan
in
B-Lymphocytes - immunology
,
B-Lymphocytes - pathology
,
Biological Sciences
2019
Receptor-interacting serine/threonine-protein kinase 1 (RIPK1) is a critical regulator of cell death and inflammation, but its relevance for human disease pathogenesis remains elusive. Studies of monogenic disorders might provide critical insights into disease mechanisms and therapeutic targeting of RIPK1 for common diseases. Here, we report on eight patients from six unrelated pedigrees with biallelic loss-of-function mutations in RIPK1 presenting with primary immunodeficiency and/or intestinal inflammation. Mutations in RIPK1 were associated with reduced NF-κB activity, defective differentiation of T and B cells, increased inflammasome activity, and impaired response to TNFR1-mediated cell death in intestinal epithelial cells. The characterization of RIPK1-deficient patients highlights the essential role of RIPK1 in controlling human immune and intestinal homeostasis, and might have critical implications for therapies targeting RIPK1.
Journal Article
Evidence of innate lymphoid cell redundancy in humans
2016
The importance of human innate lymphoid cells to normal human physiology is unclear. Vivier and colleagues find that immunodeficient patients ‘rescued’ with normal bone marrow can recover their T cells but not their innate lymphoid cells, yet remain entirely asymptomatic for nearly 40 years.
Innate lymphoid cells (ILCs) have potent immunological functions in experimental conditions in mice, but their contributions to immunity in natural conditions in humans have remained unclear. We investigated the presence of ILCs in a cohort of patients with severe combined immunodeficiency (SCID). All ILC subsets were absent in patients with SCID who had mutation of the gene encoding the common γ-chain cytokine receptor subunit IL-2Rγ or the gene encoding the tyrosine kinase JAK3. T cell reconstitution was observed in patients with SCID after hematopoietic stem cell transplantation (HSCT), but the patients still had considerably fewer ILCs in the absence of myeloablation than did healthy control subjects, with the exception of rare cases of reconstitution of the ILC1 subset of ILCs. Notably, the ILC deficiencies observed were not associated with any particular susceptibility to disease, with follow-up extending from 7 years to 39 years after HSCT. We thus report here selective ILC deficiency in humans and show that ILCs might be dispensable in natural conditions, if T cells are present and B cell function is preserved.
Journal Article
Lentiviral Gene Therapy for Artemis-Deficient SCID
by
Fraser-Browne, Carol
,
Sanford, Ukina
,
Facchino, Janelle
in
Allergy
,
Antigens, CD34 - administration & dosage
,
Antigens, CD34 - immunology
2022
The DNA-repair enzyme Artemis is essential for rearrangement of T- and B-cell receptors. Mutations in
, which encodes Artemis, cause Artemis-deficient severe combined immunodeficiency (ART-SCID), which is poorly responsive to allogeneic hematopoietic-cell transplantation.
We carried out a phase 1-2 clinical study of the transfusion of autologous CD34+ cells, transfected with a lentiviral vector containing
, in 10 infants with newly diagnosed ART-SCID. We followed them for a median of 31.2 months.
Marrow harvest, busulfan conditioning, and lentiviral-transduced CD34+ cell infusion produced the expected grade 3 or 4 adverse events. All the procedures met prespecified criteria for feasibility at 42 days after infusion. Gene-marked T cells were detected at 6 to 16 weeks after infusion in all the patients. Five of 6 patients who were followed for at least 24 months had T-cell immune reconstitution at a median of 12 months. The diversity of T-cell receptor β chains normalized by 6 to 12 months. Four patients who were followed for at least 24 months had sufficient B-cell numbers, IgM concentration, or IgM isohemagglutinin titers to permit discontinuation of IgG infusions. Three of these 4 patients had normal immunization responses, and the fourth has started immunizations. Vector insertion sites showed no evidence of clonal expansion. One patient who presented with cytomegalovirus infection received a second infusion of gene-corrected cells to achieve T-cell immunity sufficient for viral clearance. Autoimmune hemolytic anemia developed in 4 patients 4 to 11 months after infusion; this condition resolved after reconstitution of T-cell immunity. All 10 patients were healthy at the time of this report.
Infusion of lentiviral gene-corrected autologous CD34+ cells, preceded by pharmacologically targeted low-exposure busulfan, in infants with newly diagnosed ART-SCID resulted in genetically corrected and functional T and B cells. (Funded by the California Institute for Regenerative Medicine and the National Institute of Allergy and Infectious Diseases; ClinicalTrials.gov number, NCT03538899.).
Journal Article
Transplantation Outcomes for Severe Combined Immunodeficiency, 2000–2009
by
Haight, Ann E
,
Grizzle, Audrey
,
Dvorak, Christopher C
in
Allergies
,
Biological and medical sciences
,
Bone marrow
2014
An analysis of outcomes from 2000 through 2009 at 25 centers treating children with severe combined immunodeficiency (SCID) showed that early transplantation of hematopoietic cells in uninfected children had the best outcome, regardless of donor type.
Severe combined immunodeficiency (SCID) is a genetically heterogeneous and lethal disorder of infancy. It is characterized by severe T-cell lymphocytopenia and a lack of antigen-specific T-cell and B-cell immune responses.
1
Allogeneic hematopoietic-cell transplantation with the use of bone marrow from an HLA-identical sibling
2
or an unrelated donor,
3
T-cell–depleted marrow or peripheral-blood stem cells from a haploidentical, related donor,
4
–
7
or umbilical-cord blood
8
–
10
can fully correct the T-cell deficiency and, less consistently, the B-cell deficiency in patients with SCID.
2
–
12
Expanded donor availability and advances in supportive care and treatment of infections have improved long-term outcomes after hematopoietic-cell transplantation.
10
, . . .
Journal Article
Human RAG mutations: biochemistry and clinical implications
by
Walter, Jolan E.
,
Notarangelo, Luigi D.
,
Lee, Yu Nee
in
631/250/1619/40
,
631/250/1619/554
,
631/250/2152/2497
2016
Key Points
Recombination-activating gene (RAG) mutations in humans are associated with a broad spectrum of clinical phenotypes, ranging from severe, early-onset infections to inflammation and autoimmunity.
There is a correlation between the severity of the clinical and immunological phenotypes and the recombination activity of the mutant RAG protein, and hypomorphic mutations that severely affect recombination activity are associated with restriction of the T cell and B cell repertoires. However, environmental factors may also contribute to determining the disease phenotype.
Crystal structure and cryo-electron microscopy studies have revealed the structure of the heterotetrameric RAG complex bound to DNA. Fine definition of this structure has also offered important insights into the disease-causing effects of naturally occurring RAG mutations.
Studies in patients and in mice have demonstrated that RAG mutations affect central and peripheral T cell and B cell tolerance, including defective expression of autoimmune regulator (AIRE), reduced number and function of regulatory T cells, impaired receptor editing and increased levels of B cell-activating factor (BAFF), allowing the rescue of self-reactive B cells.
A broad range of autoantibodies has been demonstrated in patients with RAG mutations presenting with inflammation and autoimmunity. Neutralizing antibodies specific for interferon-α (IFNα) and IFNω have been documented particularly in patients with a history of severe viral infections.
Recent data indicate that RAG expression during the early stages of lymphoid development selects cells with improved fitness. NK cells from
Rag
−/−
mice have an activated phenotype and increased cytotoxicity. If confirmed in humans, these data may account for the high rate of graft rejection observed after unconditioned haematopoietic stem cell transplantation in patients with RAG deficiency.
The wide diversity of clinical and immunological phenotypes of patients with RAG deficiency, combined with structural characterization of the RAG protein complex, have provided new mechanistic insights into RAG protein function.
The recombination-activating gene 1 (RAG1) and RAG2 proteins initiate the V(D)J recombination process, which ultimately enables the generation of T cells and B cells with a diversified repertoire of antigen-specific receptors. Mutations of the RAG genes in humans are associated with a broad spectrum of clinical phenotypes, ranging from severe combined immunodeficiency to autoimmunity. Recently, novel insights into the phenotypic diversity of this disease have been provided by resolving the crystal structure of the RAG complex, by developing novel assays to test recombination activity of the mutant RAG proteins and by characterizing the molecular and cellular basis of immune dysregulation in patients with RAG deficiency.
Journal Article
Broad-spectrum antibodies against self-antigens and cytokines in RAG deficiency
2015
Patients with mutations of the recombination-activating genes (RAG) present with diverse clinical phenotypes, including severe combined immune deficiency (SCID), autoimmunity, and inflammation. However, the incidence and extent of immune dysregulation in RAG-dependent immunodeficiency have not been studied in detail. Here, we have demonstrated that patients with hypomorphic RAG mutations, especially those with delayed-onset combined immune deficiency and granulomatous/autoimmune manifestations (CID-G/AI), produce a broad spectrum of autoantibodies. Neutralizing anti-IFN-α or anti-IFN-ω antibodies were present at detectable levels in patients with CID-G/AI who had a history of severe viral infections. As this autoantibody profile is not observed in a wide range of other primary immunodeficiencies, we hypothesized that recurrent or chronic viral infections may precipitate or aggravate immune dysregulation in RAG-deficient hosts. We repeatedly challenged Rag1S723C/S723C mice, which serve as a model of leaky SCID, with agonists of the virus-recognizing receptors TLR3/MDA5, TLR7/-8, and TLR9 and found that this treatment elicits autoantibody production. Altogether, our data demonstrate that immune dysregulation is an integral aspect of RAG-associated immunodeficiency and indicate that environmental triggers may modulate the phenotypic expression of autoimmune manifestations.
Journal Article
Biallelic RIPK1 mutations in humans cause severe immunodeficiency, arthritis, and intestinal inflammation
2018
Mice are a convenient model for exploring the functions of cellular signaling pathways. Occasionally, however, an “experiment of nature” highlights the perils of overreliance on mice. RIPK1 is a well studied protein kinase that regulates cell death. Mice deficient in RIPK1 die soon after birth because of the protein's widespread role in multiple tissues and organs. Cuchet-Lourenço et al. studied patients with inherited immunodeficiency of unknown cause (see the Perspective by Pasparakis and Kelliher). They identified inactivating mutations in the RIPK1 gene in four individuals. Unlike what has been seen in mice, the deleterious effects of RIPK1 loss in humans were confined to the immune system, a finding with potential therapeutic implications. Science , this issue p. 810 ; see also p. 756 A human genetics study underscores the important role of RIPK1, a regulator of cell death, in immune function. RIPK1 (receptor-interacting serine/threonine kinase 1) is a master regulator of signaling pathways leading to inflammation and cell death and is of medical interest as a drug target. We report four patients from three unrelated families with complete RIPK1 deficiency caused by rare homozygous mutations. The patients suffered from recurrent infections, early-onset inflammatory bowel disease, and progressive polyarthritis. They had immunodeficiency with lymphopenia and altered production of various cytokines revealed by whole-blood assays. In vitro, RIPK1-deficient cells showed impaired mitogen-activated protein kinase activation and cytokine secretion and were prone to necroptosis. Hematopoietic stem cell transplantation reversed cytokine production defects and resolved clinical symptoms in one patient. Thus, RIPK1 plays a critical role in the human immune system.
Journal Article
IL2RG-related immunodeficiencies: from SCID to atypical presentations
by
Spoulou, Vana
,
Marinakis, Nikolaos
,
Notarangelo, Luigi D.
in
Animals
,
atypical X-CID
,
Autoimmunity
2026
The interleukin-2 receptor gamma chain gene (
) encodes for the common γ chain (γ
) protein, that is a shared signaling component of multiple interleukin receptors, including IL-2, IL-4, IL-7, IL-9, IL-15, and IL-21, and plays a pivotal role in lymphocyte development, homeostasis, and function. Mutations in
cause X-linked severe combined immunodeficiency (X-SCID) and a broad spectrum of related phenotypes ranging from typical SCID to leaky or atypical presentations, sometimes mimicking common variable immunodeficiency or immune dysregulation syndromes. Over the last decade (2015-2025), advances in molecular diagnostics, next-generation sequencing, and functional immunology have expanded the known
mutational spectrum and refined genotype-phenotype correlations.
Recent research has uncovered novel hypomorphic variants, revealed the structural basis of receptor dysfunction, and elucidated the impact of specific mutations on JAK-STAT signaling. Longitudinal natural history studies have improved understanding of disease progression in partial loss-of-function cases, while expanded newborn screening for SCID has facilitated earlier diagnosis. Advances in preclinical and clinical gene therapy have addressed historical challenges such as insertional mutagenesis, with emerging protocols achieving stable multilineage immune reconstitution. Moreover, comparative HSCT outcome analyses have informed donor selection, conditioning strategies, and post-transplant care, particularly in resource-limited settings.
Improved molecular diagnostics have enabled precision diagnosis in patients with atypical presentations, allowing earlier initiation of curative therapies such as HSCT or gene therapy. Recognition of immune dysregulation, autoimmunity, and malignancy as part of the
-related spectrum has refined long-term follow-up protocols. Multidisciplinary care, integrating infectious disease, immunology, and genetics expertise, has become essential for optimizing patient outcomes.
Ongoing priorities include the expansion of gene therapy trials to cover hypomorphic and late-presenting cases, refinement of reduced-intensity conditioning regimens to minimize toxicity, and development of targeted molecular therapies to modulate downstream signaling in non-transplant candidates. Global initiatives for SCID newborn screening, coupled with collaborative registries, are expected to improve early diagnosis and equitable access to curative interventions.
Journal Article
New insights into the regulation of T cells by gamma(c) family cytokines
by
Rochman, Yrina
,
Spolski, Rosanne
,
Leonard, Warren J
in
Animals
,
Cell Differentiation - immunology
,
Cytokines - immunology
2009
Common cytokine receptor gamma-chain (gamma(c)) family cytokines have crucial roles in the development, proliferation, survival and differentiation of multiple cell lineages of both the innate and adaptive immune systems. In this Review, we focus on our current understanding of the distinct and overlapping effects of interleukin-2 (IL-2), IL-7, IL-9, IL-15 and IL-21, as well as the IL-7-related cytokine thymic stromal lymphopoietin (TSLP), on the survival and proliferation of conventional alphabeta T cells, gammadelta T cells and regulatory T cells. This knowledge potentially allows for the therapeutic manipulation of immune responses for the treatment of cancer, autoimmunity, allergic diseases and immunodeficiency, as well as for vaccine development.
Journal Article
IL-7–dependent and –independent lineages of IL-7R–dependent human T cells
2024
Infants with biallelic IL7R loss-of-function variants have severe combined immune deficiency (SCID) characterized by the absence of autologous T lymphocytes, but normal counts of circulating B and NK cells (T – B + NK + SCID). We report 6 adults (aged 22 to 59 years) from 4 kindreds and 3 ancestries (Colombian, Israeli Arab, Japanese) carrying homozygous IL7 loss-of-function variants resulting in combined immunodeficiency (CID). Deep immunophenotyping revealed relatively normal counts and/or proportions of myeloid, B, NK, and innate lymphoid cells. By contrast, the patients had profound T cell lymphopenia, with low proportions of innate-like adaptive mucosal-associated invariant T and invariant NK T cells. They also had low blood counts of T cell receptor (TCR) excision circles, recent thymic emigrant T cells and naive CD4 + T cells, and low overall TCR repertoire diversity, collectively indicating impaired thymic output. The proportions of effector memory CD4 + and CD8 + T cells were high, indicating IL-7–independent homeostatic T cell proliferation in the periphery. Intriguingly, the proportions of other T cell subsets, including TCRγδ + T cells and some TCRαβ + T cell subsets (including Th1, Tfh, and Treg) were little affected. Peripheral CD4 + T cells displayed poor proliferation, but normal cytokine production upon stimulation with mitogens in vitro. Thus, inherited IL-7 deficiency impairs T cell development less severely and in a more subset-specific manner than IL-7R deficiency. These findings suggest that another IL-7R–binding cytokine, possibly thymic stromal lymphopoietin, governs an IL-7–independent pathway of human T cell development.
Journal Article