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Features include: Low iron red blood cell count (iron deficiency anemia), Antineutrophil antibody positivity, Platelet antibody positive, and Increased circulating IgM level and 21 more.
Organ System | Phenotype Count | Example Features |
|---|---|---|
Blood and immune system | 8 | Low iron red blood cell count (iron deficiency anemia), Platelet antibody positive, Autoimmune hemolytic anemia |
Lab test results | 7 | Antineutrophil antibody positivity, Platelet antibody positive, Antinuclear antibody positivity |
Digestive system | 2 | Enlarged liver (hepatomegaly), Enlarged spleen (splenomegaly) |
Skin | 1 | Urticaria |
Muscles | 1 | Anti-smooth muscle antibody positivity |
Autoimmune lymphoproliferative syndrome (ALPS) can be considered a prototypic disorder of defective lymphocyte homeostasis . The manifestations are lymphadenopathy, hepatosplenomegaly with or without hypersplenism, and autoimmune disease, mostly directed toward blood cells. In addition, the risk of lymphoma is increased.
Summary of Clinical Manifestations of ALPS
Lymphoproliferation of non-malignant lymphoid cells
Lymphadenopathy
Splenomegaly (± hypersplenism)
Hepatomegaly
Autoimmunity
Autoimmune hemolytic anemia
Autoimmune thrombocytopenia
Autoimmune neutropenia
Glomerulonephritis
Autoimmune hepatitis
Guillain Barr syndrome
Uveitis, iridocyclitis
Other autoimmune disorders (in individual cases)
Neoplasia (including benign tumors)
FAS encodes Fas cell surface death receptor (335 aa). Receptor for TNFSF6/FASLG. The adapter molecule FADD recruits caspase CASP8 to the activated receptor. Highest expression in Cells EBV-transformed lymphocytes (75.4 TPM) and Ovary (43.2 TPM).
Autoimmune lymphoproliferative syndrome type 1 is associated with mutations in the FAS gene on chromosome 10.
FAS is classified as a druggable target (Cell Surface, Clinically Actionable, Druggable Genome, and External Side Of Plasma Membrane categories) with score 1.8.
FASLG encodes Fas ligand (281 aa). Cytokine that binds to TNFRSF6/FAS, a receptor that transduces the apoptotic signal into cells. Highest expression in Spleen (5.8 TPM) and Whole Blood (1.7 TPM).
Autoimmune lymphoproliferative syndrome type 1 is caused by mutations in the FASLG gene on chromosome 1.
The FASLG protein participates in Expression of FASLG, FASLG (FasL) gene expression, and FASLG gene expression is stimulated by FOXO1,FOXO3,(FOXO4) pathways.
FASLG is classified as a druggable target (Druggable Genome and External Side Of Plasma Membrane categories) with score 0.7.
ALPS-FAS. The clinical lymphoproliferative and autoimmune phenotype of ALPS is associated with pathogenic variants which affect any domain of Fas. Lymphomas, in contrast, seem thus far to be associated mostly with pathogenic variants affecting the intracellular domains of Fas, although independent confirmation is required . In the majority of affected individuals, heterozygous FAS pathogenic variants are associated with ALPS-FAS by the mechanism of dominant-negative interference; however, with certain pathogenic variants affecting extracellular domain, the proposed mechanism is haploinsufficiency. In the latter case, the ALPS clinical phenotype may be less severe, linked to less defective in vitro apoptosis . (For further discussion see .) ALPS-FASLG and ALPS-CASP10.
Source: GeneReviews — "Autoimmune Lymphoproliferative Syndrome"
ALPS-FAS. A distinction needs to be made between the penetrance of the cellular phenotype (defective Fas-mediated apoptosis) and the penetrance of the clinical phenotype (i.e., ALPS). Family studies to date suggest that penetrance for the defective Fas-mediated apoptosis cellular phenotype approximates 100% (i.e., every individual heterozygous for an inherited [germline] pathogenic variant has defective apoptosis) whereas the penetrance for the clinical phenotype is reduced because a significant proportion of relatives heterozygous for the pathogenic variant have no clinical findings of ALPS. In addition, other relatives have laboratory findings of ALPS (e.g., expansion of lymphocyte subsets and/or autoantibodies) without clinical evidence of either lymphoproliferation or autoimmunity .
Source: GeneReviews — "Autoimmune Lymphoproliferative Syndrome"
The diagnosis of autoimmune lymphoproliferative syndrome (ALPS) is based on a constellation of clinical findings, laboratory abnormalities, and identification of pathogenic variants in genes relevant for the tumor necrosis factor receptor superfamily member 6 (Fas) pathway of apoptosis. ALPS should be suspected in individuals with combinations of the following :
Chronic non-malignant lymphoproliferation
Chronic and/or recurrent lymphadenopathy
Splenomegaly with/without hypersplenism
Hepatomegaly
Lymphocytic interstitial pneumonia (less common)
Autoimmune disease
Cytopenia, particularly combinations of autoimmune hemolytic anemia (AIHA), immune thrombocytopenia (ITP), and autoimmune neutropenia
Note: The combination of AIHA and ITP is often referred to as Evans syndrome.
Source: GeneReviews — "Autoimmune Lymphoproliferative Syndrome"
ALPS-like disorders. Pathogenic variants in genes inside (other than FAS, FASLG, and CASP10) and outside Fas/FasL pathway have been reported in association with clinical findings similar to ALPS. However, they either do not fulfill the current diagnostic criteria of ALPS or have other distinct phenotypes, and therefore are listed as ALPS-like disorders. These include:
Source: GeneReviews — "Autoimmune Lymphoproliferative Syndrome"
Genetic testing for FAS, FASLG is available. Testing is considered confirmatory for diagnosis.
No approved treatments are currently available for autoimmune lymphoproliferative syndrome type 1. The disease remains an area of unmet medical need.
To determine the presence and extent of disease and needs in an individual diagnosed with autoimmune lymphoproliferative syndrome (ALPS), the following evaluations are recommended:
Complete blood counts and flow cytometric immunophenotyping of lymphocytes, especially with regard to /-DNT cells, in combination with physical examination and imaging studies to assess lymphadenopathy and hepatosplenomegaly
If significant lymphadenopathy is present, more extensive diagnostic procedures to detect lymphoma, especially if constitutional symptoms (e.g., fever, night sweats, weight loss) are present
Measurement of autoantibodies to assess for autoimmunity
Consultation with a clinical geneticist and/or genetic counselor
In the absence of curative treatment, current management is focused on the following:
Monitoring for and treatment of lymphoproliferation, hypersplensim, and lymphomas
Management of cytopenias and other autoimmune diseases
Monitoring for and treatment of lymphoproliferation and hypersplenism
Source: GeneReviews — "Autoimmune Lymphoproliferative Syndrome"
Splenectomy to control autoimmune cytopenias and/or massive splenomagaly is discouraged because it typically does not lead to permanent remission of autoimmunity and may be associated with an increased risk for infections. The two recent cohort studies reveal clear-cut consequences of splenectomy. In the French cohort, nine (30%) of 30 affected individuals who underwent splenectomy suffered 17 cases of severe invasive bacterial infection with four deaths after splenectomy; in the NIH cohort, 27 (41%) of 66 affected individuals suffered one or more episodes of sepsis with seven deaths. Of note: Antimicrobial prophylaxis and appropriate vaccinations did not prevent the majority of episodes of sepsis, although poor adherence was a risk factor in the French cohort . The use of over-the-counter medications such as aspirin and other nonsteroidal anti-inflammatory drugs should be discussed with a physician as some of these medications can interfere with platelet function.
Source: GeneReviews — "Autoimmune Lymphoproliferative Syndrome"
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.
Source: GeneReviews — "Autoimmune Lymphoproliferative Syndrome"
1 trial found
Clinical assessment, imaging, and laboratory studies outlined in can be used in surveillance for manifestations of lymphoproliferation and autoimmunity. Specialized imaging studies such as combined PET and CT scanning in combination with clinical and laboratory surveillance may be helpful in detection of malignant transformation, keeping in mind that PET/CT scanning is often abnormal in ALPS, such that distinguishing between "typical" ALPS findings and a new malignancy (lymphoma) can be difficult . Because of this, careful consideration of imaging modalities that expose the affected individual to radiation is warranted.
Source: GeneReviews — "Autoimmune Lymphoproliferative Syndrome"
1 clinical trial registered, 1 recruiting. Interventions under study include drug therapy. Pipeline includes 1 PHASE2. Research is primarily sponsored by academic and government institutions.
5 publications have been identified in PubMed for autoimmune lymphoproliferative syndrome type 1. Research spans Case Report / Case Series (40%), Basic Science / Preclinical (40%), and Review / Meta-Analysis (20%).
Yakine F (2026). [PMID: 41769619](https://pubmed.ncbi.nlm.nih.gov/41769619/). *Cureus*. [Case Report / Case Series]
Rieux-Laucat F (2026). [PMID: 41997376](https://pubmed.ncbi.nlm.nih.gov/41997376/). *Immunol Lett*. [Review / Meta-Analysis]
Ding W (2025). [PMID: 40909280](https://pubmed.ncbi.nlm.nih.gov/40909280/). *Front Immunol*. [Case Report / Case Series]
Lin HT (2024). [PMID: 38627844](https://pubmed.ncbi.nlm.nih.gov/38627844/). *Stem Cell Res Ther*. [Basic Science / Preclinical]
Gottlieb S (2024). [PMID: 39436665](https://pubmed.ncbi.nlm.nih.gov/39436665/). *Proc Natl Acad Sci U S A*. [Basic Science / Preclinical]
Data assembled from 8 of 12 sources · Last updated Sep 19, 2026, 1:11 PM UTC
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