Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: UMLS:C0021051 (immunodeficiency)
71,517 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

Wiskott-Aldrich syndrome (WAS) is an X-linked recessive disorder characterized by microthrombocytopenia, eczema, immunodeficiency, and susceptibility to lymphoid malignancy. Loss-of-function mutations in WAS gene have been identified to cause disorders with platelet defects including WAS and X-linked thrombocytopenia. Mutations anticipated to yield truncated or no protein have been associated with the more severe presentations of WAS. Activating mutations in WAS gene result in an entirely different phenotype, an X-linked severe congenital neutropenia. We describe a Thai family with classic WAS. The proband, a one-year-old boy presented with recurrent mucous bloody diarrhea, recurrent otitis media, chronic eczema, thrombocytopenia, and small platelet sizes. The patient's older brother who also had persistent thrombocytopenia died at the age of seven months from severe pneumonia. Immunoblot analysis demonstrated that the proband's cells lacked WAS protein expression. Mutation analysis of the proband and his mother for the entire coding region of WAS identified a novel type of mutation, a termination codon mutation, X503R. The change is expected to result in an elongated mRNA that would code for a WASP of 581 amino acid residues instead of the normal 502 residues. Because of the absence of WASP expression, we speculate that the termination codon mutation causes reduced mRNA stability. Our findings supported that WAS mutations resulted in no protein are associated with a severe phenotype of WAS.
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PMID:A novel termination codon mutation of the WAS gene in a Thai family with Wiskott-Aldrich syndrome. 1461 70

Wiskott-Aldrich syndrome (WAS) is an X-linked recessive disorder characterized by immunodeficiency, eczema, and thrombocytopenia with small platelets. The phenotype of affected males is usually severe, although female carriers of the disorder have no clinical signs of the genetic defect. This is explained by the preferential selection of the normal, nonmutated X-chromosome, as the active allele in hematopoietic cells. In the present article we describe a female case of WAS, with a G-to-A transition in the WASP gene at nucleotide 291. She displays mild thrombocytopenia, with both normal and small-sized platelets. A methylation analysis of the HUMARA gene showed a nonrandom X-chromosome inactivation pattern in which the X-chromosome carrying the normal WASP gene was preferentially inactivated, leaving the mutant gene active. Thus, our results suggest that skewed X-inactivation, favoring the WASP-mutated allele, is the mechanism underlying the WAS phenotype of this girl. Moreover the results alert us to the fact that particular females, with a family history of WAS, may develop certain signs of the disease.
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PMID:Wiskott-Aldrich syndrome in a female with skewed X-chromosome inactivation. 1463 48

Wiskott-Aldrich syndrome is a rare immunodeficiency characterized by thrombocytopenia, eczema, recurrent infections, autoimmunity, and an increased incidence of malignancy. Clinical severity is highly variable. As a first step toward the development of therapeutic guidelines, an international study to evaluate current treatment strategies was undertaken. A total of 73 centers from 24 countries participated. These centers provide care for 507 patients with Wiskott-Aldrich syndrome. Treatment strategies were strikingly variable in both small and large centers. Most options were used in at least some patients in the majority of centers, indicating that treatment is individualized; however, there were some clear trends. Most centers use intravenous gammaglobulin and prophylactic antibiotics in the majority of patients. Splenectomy was used more sparingly. Stem cell transplant was more likely to be used in centers providing care for 10 or more patients. Studies that better define prognostic markers and optimal therapy are needed.
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PMID:An international study examining therapeutic options used in treatment of Wiskott-Aldrich syndrome. 1469 38

The effect of highly active antiretroviral therapy (HAART) on skin diseases was evaluated in 878 human immunodeficiency virus type 1 (HIV-1)-infected women in the Women's Interagency HIV Study, a multicenter prospective study. HIV-1-infected women receiving HAART were less likely to have eczema, folliculitis, tinea pedis, and xerosis than were women who had not initiated HAART, independent of CD4+ cell count. Participants who had a prior history of a nadir CD4+ cell count of <200 cells/microL and recent CD4+ cell counts of 200-349 cells/microL were more likely to have eczema and xerosis than were women with a nadir CD4+ cell count of >200 cells/microL and recent CD4+ cell counts of >349 cells/microL. An HIV-1 RNA load of >100,000 copies/mL was associated with increased prevalence of herpes zoster infection (odds ratio, 6.10; 95% confidence interval, 2.00-18.65). History of injection drug use was associated with a higher prevalence of onychomycosis, tinea pedis, and xerosis. Molluscum contagiosum was more prevalent among younger women.
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PMID:The effect of highly active antiretroviral therapy on dermatologic disease in a longitudinal study of HIV type 1-infected women. 1476 53

Hyperimmunoglobulin E syndrome is a primary immunodeficiency disease characterized by markedly high titers of serum immunoglobulin E (IgE), chronic eczema, recurrent staphylococcal infections, pneumatoceles, reduced neutrophil chemotaxis, and variable impaired T cell function. There are no clinical tools for diagnosis and definitive laboratory investigation. Variability of presentation makes it easy to confuse the diagnosis with that of severe atopy or other rare immunodeficiencies. We report a case of a 6-year-old boy with hyperimmunoglobulin E syndrome with recurrent methicillin-resistant Staphylococcus aureus furunculosis. Physical examination revealed a peculiar facial appearance, pruritic dermatitis, and furunculosis over the scalp, neck, and back. Laboratory investigation revealed mild leukocytosis with eosinophilia, a very high immunoglobulin E level, defective neutrophil chemotaxis, and impaired lymphocyte proliferation to anti-CD3/CD28 monoclonal antibodies. The boy was discharged without incident after 2 weeks of antibiotic therapy and debridement.
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PMID:The hyperimmunoglobulin E syndrome. 1518 95

The Wiskott-Aldrich syndrome (WAS) is an X-linked recessive immune deficiency disorder characterized by thrombocytopenia, small platelet size, eczema, recurrent infections, and increased risk of autoimmune disorders and malignancies. X-linked thrombocytopenia (XLT) is an allelic variant of WAS which presents with a milder phenotype, generally limited to thrombocytopenia. WAS and XLT are caused by mutations of the Wiskott-Aldrich syndrome protein (WASP) gene which encodes a 502-amino acid protein, named WASP. WASP is thought to play a role in actin cytoskeleton organization and cell signaling. Here, we report the identification of 141 unique mutations, 71 not previously reported, from 227 WAS/XLT families with a total of 262 affected members. When possible we studied the effects of these mutations on transcription, RNA splicing, and protein expression. By analyzing a large number of patients with WAS/XLT at the molecular level we identified 5 mutational hotspots in the WASP gene and have been able to establish a strong association between genotype and phenotype.
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PMID:Mutations of the Wiskott-Aldrich Syndrome Protein (WASP): hotspots, effect on transcription, and translation and phenotype/genotype correlation. 1528 22

Wiskott-Aldrich syndrome (WAS) is an X-linked immunodeficiency/platelet disease due to mutations of WASP, a cytoskeletal regulatory protein of blood cells. Patients exhibit a range of immune defects generally attributed to defective T-cell function, including poor response to immunization, skewed immunoglobulin isotypes, eczema, recurrent infections, autoimmune disease and increased frequency of malignancies. Here we show a deficit of total B-cells in WAS patients of various ages and identify phenotypic perturbations involving complement receptors and CD27. Whereas B-cells of normal healthy donors are overwhelmingly CD21/CD35-positive, B-cells expressing these receptors are significantly reduced in number in WAS patients, and their paucity may cause suboptimal antigen capture and presentation. The frequencies of IgD(-) and IgG(+) patient B-cells were not different from healthy donors (although absolute numbers were decreased), indicating that isotype switching is occurring. In contrast, the frequency of cells positive for CD27, the marker of post germinal centre B-cells, was significantly decreased even among isotype-switched cells, and B-cells resembling germinal centre progenitors (CD10(+)CD27(-)CD38(bright)) were more frequent in adult patients, suggesting impaired germinal centre maturation/differentiation. The documentation of these phenotypic perturbations and deficit of total cells suggest that defects intrinsic to B-cells contribute to the impaired humoral immunity that characterizes this disease.
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PMID:Phenotypic perturbation of B cells in the Wiskott-Aldrich syndrome. 1565 28

Intact cellular migration is critically important for the induction and regulation of the immune response. The Wiskott-Aldrich syndrome protein (WASP) regulates surface receptor signaling to the actin cytoskeleton in hematopoietic cells and thus plays a pivotal role in cellular locomotion. WASP deficiency causes the Wiskott-Aldrich syndrome (WAS), characterized by immunodeficiency, thrombocytopenia, and eczema. Cell migration defects may contribute to the pathophysiology of WAS. In this study, we used a variety of in vitro and in vivo assays to comprehensively analyze migration properties of lymphocytes, dendritic cells (DC), and neutrophils from WASP-deficient mice. We provide evidence that WASP-deficient lymphocytes show a marked reduction in tethering in an in vitro flow chamber assay as well as decreased migration of T cells in response to the CC chemokine ligand 19 (CCL19). In vivo, compared with wild-type lymphocytes, WASP-deficient lymphocytes showed significantly impaired homing to Peyer's patches upon adoptive transfer into recipient mice. In addition, bone marrow-derived DC migrated less efficiently in response to CCL19. In vivo studies showed decreased migration of DC from skin to draining lymph nodes in WASP-deficient animals. Finally, we also document decreased neutrophil migration in vitro and in vivo. In summary, our studies suggest that WASP plays an important role in the locomotion of lymphocytes, DC, and granulocytes in vitro and in vivo and thus, reveal a crucial role of WASP in physiological trafficking of various hematopoietic cell lineages. These results further delineate immunological abnormalities in WASP-deficient mice, which will be useful to assess preclinical gene therapy studies.
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PMID:WASP deficiency leads to global defects of directed leukocyte migration in vitro and in vivo. 1577 50

The Wiskott-Aldrich syndrome is a rare genetic disorder due to mutations in the WAS gene situated on chromosome X. It is comprised of microthrombocytopenia, eczema and immunodeficiency. However, the phenotypical presentation may vary as to the number and intensity of its manifestations. A milder form of Wiskott-Aldrich syndrome is known as the X-linked thrombocytopenia. We independently found eight individual or familial cases with the V75M substitution (9.76%). This high incidence was partly accounted for by the fact that three cases turned out to be related. The V75M mutation is recurrent, however, due to a CpG island. A genuine homozygous female patient was found. She showed microthrombocytopenia and infections to the same degree as her hemizygous father and brother. The WAS protein was decreased in a comparable fashion in the hemizygotes and the homozygote as well. Its amount was about 10% and 15% of normal in platelets and mononucleated white cells, respectively. In all patients was the picture consistent with XLT.
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PMID:Recurrent V75M mutation within the Wiskott-Aldrich syndrome protein: description of a homozygous female patient. 1594 11

Wiskott-Aldrich syndrome (WAS) is an X-linked immunodeficiency characterized by thrombocytopenia, eczema, and variable degrees of impaired cellular and humoral immunity. Age-dependent T-cell lymphopenia has been described in WAS, however, the diversity of the T-cell compartment over time in these patients has not been characterized. We have used complementarity-determining region 3 (CDR3) size distribution analysis to assess T-cell receptor (TCR) Vbeta repertoire in 13 patients with WAS. Diverse CDR3 size pattern was demonstrated in patients under 15 years of age regardless of the levels of WAS protein (WASP) expression. In contrast, older patients showed significantly higher skewing of TCRVbeta repertoire as compared with healthy adults. We did not find correlation between clinical score and complexity of TCRVbeta repertoire. These findings suggest that WASP deficiency does not limit thymic generation of a normal TCR and indicate that T-cell oligoclonality may contribute to the immunodeficiency in older patients with WAS.
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PMID:Analysis of T-cell repertoire diversity in Wiskott-Aldrich syndrome. 1609 49


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