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This syndrome is an immunodeficiency syndrome characterized by recurrent major bacterial infections, severe congenital neutropenia, and monocytopenia. It has been described in five males spanning three generations of one family. It is transmitted as an X-linked recessive trait and is caused by mutations in the WAS gene, encoding the WASP protein.
Features include always present findings: Inverted CD4:CD8 ratio, Recurrent bacterial infections, and Decreased total neutrophil count; and common findings: Decreased total monocyte count. 6 total HPO annotations.
Organ System | Phenotype Count | Example Features |
|---|---|---|
Blood and immune system | 2 | Recurrent bacterial infections, Decreased total neutrophil count |
Bones and joints | 1 | Bone marrow arrest at the promyelocytic stage |
Skin | 1 | Eczematoid dermatitis |
Age of onset: at birth.
WAS-related disorders comprise a spectrum that includes Wiskott-Aldrich syndrome, X-linked thrombocytopenia (XLT), and X-linked neutropenia (XLN). There is considerable overlap between phenotypes. WAS-related disorders usually present in infancy with low platelet counts, small platelet size, significant risk of bleeding, and, in some individuals, eczema and/or abnormal lymphocyte function with susceptibility to serious bacterial, viral, and fungal infections. Autoimmune disorders and lymphomas are frequent. The clinical phenotype may worsen with age. The clinical complications can vary widely, even in the same kindred. The prognosis for individuals with WAS-related disorders has improved as a result of improved treatment. The WAS-related disorders clinical score (WAS score) is derived from clinical and laboratory features including thrombocytopenia, eczema, immunodeficiency, autoimmune disorders, and malignancy . WAS scores, which range between 0 and 5, facilitate the clinical categorization of individuals and may be useful in predicting disease severity . Individuals with a higher WAS score (e.g., 5) at a younger age (e.g., during the first two years of life) may be at increased risk for morbidity and mortality . As progression of the disease can occur at a later age, individuals may transition from a lower to a higher WAS score (e.g., some individuals originally diagnosed with XLT [score of 1 to 2] may develop autoimmunity or cancer later in life [score of 5]) . Table 2. WAS-Related Disorders: Clinical Scoring System
Feature | Score | Phenotype |
|---|---|---|
Thrombocytopenia | Eczema | Immunodeficiency |
WAS function has not been fully characterized.
X-linked severe congenital neutropenia is caused by mutations in the WAS gene on chromosome X.
Individuals with Wiskott-Aldrich syndrome show remarkably variable expressivity of clinical findings. At least 300 different disease-causing variants and six mutational hot spots in WAS have been described. Loss-of-function variants in WAS cause Wiskott-Aldrich syndrome and XLT, whereas gain-of-function variants in the region encoding the conserved GTPase binding domain of Wiskott-Aldrich syndrome protein (WASP) lead to XLN . Specific pathogenic variants are not universally associated with a specific clinical phenotype, and disease severity varies considerably within families, even between monozygotic twins , which suggests epigenetic factors, other genetic alterations, and environmental factors (e.g., Epstein-Barr virus [EBV]) could contribute to the phenotypic heterogeneity .
Source: GeneReviews — "WAS-Related Disorders"
Penetrance is complete in males with a WAS pathogenic variant.
Source: GeneReviews — "WAS-Related Disorders"
WAS-related disorders include a phenotypic spectrum ranging from severe to mild. The phenotypes and their diagnostic criteria, modified from the recommendations of the European Society of Immunodeficiencies (ESID), are listed here. Wiskott-Aldrich syndrome should be suspected in a male with the following:
Source: GeneReviews — "WAS-Related Disorders"
Idiopathic thrombocytopenic purpura (ITP) should be considered in the differential diagnosis of males presenting early in life with thrombocytopenia. In contrast to Wiskott-Aldrich syndrome, ITP is associated with increased platelet size and increased reticulated platelet count. ITP is usually transient and self-limited. Genetic disorders of interest in the differential diagnosis Wiskott-Aldrich syndrome include those listed in .
Table 3.
Genetic Disorders of Interest in the Differential Diagnosis of Wiskott-Aldrich Syndrome
Gene | Disorder | MOI | Features of Disorder | Comment
Overlapping w/Wiskott-Aldrich syndrome | Distinguishing from Wiskott-Aldrich syndrome
| Wiskott-Aldrich syndrome 2 (OMIM 614493) | AR | • Recurrent infections, eczema, thrombocytopenia
Source: GeneReviews — "WAS-Related Disorders"
Genetic testing for WAS is available. Testing is considered confirmatory for diagnosis.
No approved treatments are currently available for X-linked severe congenital neutropenia. The disease remains an area of unmet medical need.
No clinical practice guidelines for WAS-related disorders have been published. In the absence of published guidelines, the following recommendations are based on the authors' personal experience managing individuals with this disorder.
To establish the extent of disease and needs in an individual diagnosed with a WAS-related disorder, the evaluations summarized (if not performed as part of the evaluation that led to the diagnosis) are recommended.
Table 4.
WAS-Related Disorders: Recommended Evaluations Following Initial Diagnosis
System/Concern | Evaluation | Comment
| • Platelet count size
Assessment for complications assoc w/ bleeding
Referral to hematologist for periodic CBCs to monitor platelet counts assess for anemia assoc w/bleeding
| Occasionally, mild-to-moderate thrombocytopenia can present later in childhood, mimicking ITP but w/o response to oral steroids.
| Skin should be examined for eczema. | Eczema is a variable feature.
| Referral to immunologist for assessment of immunodeficiency: | Recurrent infections are a variable feature.
T-cell subsets
Ig levels
Vaccine titers
WASP expression
|
| Clinical assessment for autoimmune dysfunction | Rarely the presenting manifestation but can complicate disease course.
| Clinical assessment for manifestations of lymphoma
| By genetics professionals1 | To obtain a pedigree inform affected persons their families re...
Source: GeneReviews — "WAS-Related Disorders"
Circumcision of an at-risk newborn male should not be undertaken in the presence of thrombocytopenia. The use of over-the-counter medications should be discussed with a physician, as some medications can interfere with platelet function. When possible, elective surgical procedures should be deferred until after HSCT.
Source: GeneReviews — "WAS-Related Disorders"
Search ClinicalTrials.gov in the US and EU Clinical Trials Register in Europe for access to information on clinical studies for a wide range of diseases and conditions. Note: There may not be clinical trials for this disorder.
Source: GeneReviews — "WAS-Related Disorders"
View trials for X-linked severe congenital neutropenia
To monitor existing manifestations, the individual's response to supportive care, and the emergence of new manifestations, the evaluations summarized in are recommended. Table 7. WAS-Related Disorders: Recommended Surveillance
System/Concern | Evaluation | Frequency |
|---|---|---|
Eczema | Skin exam | Annually |
Immunodeficiency | Assessment w/immunologist | As recommended by immunologist Infection |
Autoimmune disease | Clinical assessment for autoimmune dysfunction | Annually Malignancy |
Source: GeneReviews — "WAS-Related Disorders"
Phenotype severity distribution: 3 always present features, 1 common feature.
Estimated prevalence: <1 in 1,000,000 (VERY_RARE).
No clinical trials have been registered for X-linked severe congenital neutropenia.
4 publications have been identified in PubMed for X-linked severe congenital neutropenia. Research spans Review / Meta-Analysis (50%), Case Report / Case Series (25%), and Gene Therapy / Novel Therapeutics (25%).
Zdraveska N (2025). [PMID: 41477439](https://pubmed.ncbi.nlm.nih.gov/41477439/). *Case Rep Pediatr*. [Case Report / Case Series]
Wijeyesinghe S (2025). [PMID: 40058525](https://pubmed.ncbi.nlm.nih.gov/40058525/). *Ann Allergy Asthma Immunol*. [Review / Meta-Analysis]
Nasri M (2024). [PMID: 38556793](https://pubmed.ncbi.nlm.nih.gov/38556793/). *Mol Ther*. [Gene Therapy / Novel Therapeutics]
Katsaras G (2024). [PMID: 38921186](https://pubmed.ncbi.nlm.nih.gov/38921186/). *Hematol Rep*. [Review / Meta-Analysis]
Data assembled from 8 of 12 sources · Last updated Sep 20, 2026, 6:52 AM UTC
Online Mendelian Inheritance in Man
European rare disease database
Genetic and Rare Diseases Info Center
Common questions about X-linked severe congenital neutropenia
Absent |
Absent |
Present | Absent | Absent |
Present | Mild or transient | Infrequent infections |
Present | Persistent but responsive | Recurrent infections |
Present | Severe, not controlled | Severe infections |
Present | Any | Any |
Source: GeneReviews — "WAS-Related Disorders"
AI-curated news mentioning X-linked severe congenital neutropenia
Updated May 1, 2026
A novel de novo heterozygous variant in the SEC61A1 gene has been identified in a patient with severe congenital neutropenia. This discovery may enhance understanding of the genetic underpinnings of this rare condition.