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Features include always present findings: Short stature, Delayed skeletal maturation, and Delayed puberty; and common findings: Conjunctivitis, Absent circulating B cells, Recurrent otitis media, and Decreased response to growth hormone stimulation test and others. 24 total HPO annotations.
Organ System | Phenotype Count | Example Features |
|---|---|---|
Blood and immune system | 3 | Recurrent bacterial infections, Recurrent urinary tract infections, Recurrent enteroviral infections |
Ears | 2 | Hearing loss (hearing impairment), Recurrent otitis media |
Growth and development | 2 | Short stature, Decreased response to growth hormone stimulation test |
Bones and joints | 2 | Septic arthritis, Delayed skeletal maturation |
Digestive system | 2 | Diarrhea, Enteroviral hepatitis |
Hormones | 2 | Decreased response to growth hormone stimulation test, Delayed puberty |
Skin | 1 | Enteroviral dermatomyositis syndrome |
Brain and nerves | 1 | Meningitis |
Kidneys and urinary system | 1 | Recurrent urinary tract infections |
Lungs and breathing | 1 | Pneumonia |
Eyes | 1 | Conjunctivitis |
Males with X-linked agammaglobulinemia (XLA) are usually well for the first few months of life because they are protected by transplacentally acquired maternal immunoglobulin. Typically, affected males develop recurrent bacterial infections in the first two years of life and are recognized as having immunodeficiency before age five years . Recurrent otitis is the most common infection prior to diagnosis. Conjunctivitis, sinopulmonary infections, diarrhea, and skin infections are also frequently seen. Approximately 60% of individuals with XLA are recognized as having immunodeficiency when they develop a severe, life-threatening infection such as pneumonia, empyema, meningitis, sepsis, cellulitis, or septic arthritis.
Source: GeneReviews — "X-Linked Agammaglobulinemia"
BTK encodes Bruton tyrosine kinase (659 aa). Non-receptor tyrosine kinase indispensable for B lymphocyte development, differentiation and signaling. Highest expression in Cells EBV-transformed lymphocytes (114.0 TPM) and Spleen (49.7 TPM).
BTK is classified as a druggable target (Clinically Actionable, Drug Resistance, Druggable Genome, Enzyme, Kinase, Transcription Factor, and Tyrosine Kinase categories) with score 2.0.
No strong correlation is observed between the specific BTK pathogenic variant and the severity of disease; however, individuals who have amino acid substitutions or splice defects that occur at sites that are conserved (but not invariant) tend to be older at the time of diagnosis, and have higher serum concentrations of IgM and slightly more B cells in the peripheral circulation .
Source: GeneReviews — "X-Linked Agammaglobulinemia"
X-linked agammaglobulinemia (XLA) should be suspected in probands with the following clinical, laboratory, and family history findings.
Clinical findings
Recurrent otitis, pneumonitis, sinusitis, and conjunctivitis starting before age five years
A severe life-threatening bacterial infection such as sepsis, meningitis, cellulitis, or empyema
Paucity of lymphoid tissue (small adenoids, tonsils, and lymph nodes on physical examination)
Laboratory findings
Source: GeneReviews — "X-Linked Agammaglobulinemia"
X-linked agammaglobulinemia (XLA) is the most common cause of agammaglobulinemia, accounting for approximately 85% of individuals with early onset of infections, panhypogammaglobulinemia, and markedly reduced numbers of B lymphocytes (CD19+ cells) in the peripheral circulation (2%) . The majority of females with an XLA-like phenotype and males with an XLA phenotype who do not have an identifiable BTK pathogenic variant are likely to have defects in other genes required for normal B cell development . These forms of agammaglobulinemia are very rare. Individuals with agammaglobulinemia caused by pathogenic variants in genes other than BTK cannot be distinguished by routine clinical or laboratory tests from individuals with XLA . These disorders should be considered in females who have an XLA-like phenotype or in males who were presumed to have XLA but who do not have a pathogenic variant in BTK. Families with a known history of consanguinity are more likely to have rare autosomal recessive forms of agammaglobulinemia than XLA. The underlying defect remains unknown in a small percentage of individuals with congenital agammaglobulinemia and absent B cells . Table 2. X-Linked Agammaglobulinemia: Genes of Interest in the Differential Diagnosis of Congenital Agammaglobulinemia and Absent B Cells
Gene1 | Disorder1 | MOI |
|---|---|---|
Genetic testing for BTK is available. Testing is considered disputed for diagnosis.
No approved treatments are currently available for isolated growth hormone deficiency type III. The disease remains an area of unmet medical need.
No clinical practice guidelines specific for X-linked agammaglobulinemia (XLA) have been published. In the absence of published guidelines, the following recommendations are based on the authors' personal experience managing individuals with this disorder. Evaluations Following Initial Diagnosis To establish the extent of disease and needs in an individual diagnosed with XLA, the evaluations summarized (if not performed as part of the evaluation that led to the diagnosis) are recommended. Table 3. X-Linked Agammaglobulinemia: Recommended Evaluations Following Initial Diagnosis
System/Concern | Evaluation | Comment |
|---|---|---|
Respiratory | Baseline chest sinus radiographs | Baseline pulmonary function tests |
Genetic counseling | By genetics professionals1 | To obtain a pedigree inform affected persons their families re nature, MOI, implications of XLA to facilitate medical personal decision making CBC = complete blood count; CRP = C-reactive protein; MOI = mode of inheritance; XLA = X-linked agammaglobulinemia 1. |
X-Linked Agammaglobulinemia: Targeted Therapy Treatment Class | Treatment | Considerations/Other |
Replacement therapy | Gammaglobulin substitution therapy (by weekly subcutaneous injection or intravenous infusion every 2-4 weeks) to prevent bacterial infections | Mainstay of treatment for persons w/XLA Gammaglobulin substitution therapy is the mainstay of treatment for individuals with XLA. Most individuals in the United States are given approximately 400 mg/kg of gammaglobulin every four weeks. |
Source: GeneReviews — "X-Linked Agammaglobulinemia"
Live viral vaccines, particularly oral polio vaccine, should be avoided in individuals with XLA.
Source: GeneReviews — "X-Linked Agammaglobulinemia"
Research studies exploring virus-mediated and oligonucleotide gene therapy for XLA have been conducted in mice [, , , ], but it is not clear when this type of treatment may be available for humans. Gene editing of hematopoietic stem cells is also being developed but to date is not clinically available for XLA treatment . 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 — "X-Linked Agammaglobulinemia"
View trials for isolated growth hormone deficiency type III
To monitor existing manifestations, the individual's response to supportive care, and the emergence of new manifestations, the evaluations summarized in are recommended.
Table 6.
X-Linked Agammaglobulinemia: Recommended Surveillance
System/Concern | Evaluation | Frequency
| • CBC w/differential
Quantitative serum immunoglobulins to monitor gammaglobulin substitution therapy1
| At least annually
| • Chest radiographs or chest CT to assess for chronic lung disease
Sinus imaging
| As needed
CBC = complete blood count
1. If the individual is stable, the serum IgG does not need to be evaluated with every infusion of gammaglobulin.
Source: GeneReviews — "X-Linked Agammaglobulinemia"
Phenotype severity distribution: 3 always present features, 5 common features.
No clinical trials have been registered for isolated growth hormone deficiency type III.
10 publications have been identified in PubMed for isolated growth hormone deficiency type III. Research spans Epidemiology / Natural History (50%), Review / Meta-Analysis (20%), and Case Report / Case Series (20%).
Research Type | Count | % of Total |
|---|---|---|
Disease patterns and progression | 5 | 50% |
Research summaries | 2 | 20% |
Patient case studies | 2 | 20% |
Clinical study results | 1 | 10% |
Kuehn HS (2026). [PMID: 41380100](https://pubmed.ncbi.nlm.nih.gov/41380100/). *Blood Adv*. [Review / Meta-Analysis]
Wu BW (2026). [PMID: 42202876](https://pubmed.ncbi.nlm.nih.gov/42202876/). *J Oral Maxillofac Surg*. [Epidemiology / Natural History]
Aguilar-Riera C (2025). [PMID: 40598088](https://pubmed.ncbi.nlm.nih.gov/40598088/). *BMC Endocr Disord*. [Epidemiology / Natural History]
Gagliardi TA (2025). [PMID: 39950670](https://pubmed.ncbi.nlm.nih.gov/39950670/). *Clin Spine Surg*. [Epidemiology / Natural History]
Chen Y (2025). [PMID: 41088357](https://pubmed.ncbi.nlm.nih.gov/41088357/). *J Transl Med*. [Clinical Trial Publication]
Larsen A (2025). [PMID: 39787571](https://pubmed.ncbi.nlm.nih.gov/39787571/). *Plast Reconstr Surg*. [Case Report / Case Series]
Noorian S (2025). [PMID: 39980897](https://pubmed.ncbi.nlm.nih.gov/39980897/). *Clin Case Rep*. [Case Report / Case Series]
Erlandson KM (2024). [PMID: 39133923](https://pubmed.ncbi.nlm.nih.gov/39133923/). *Ann Intern Med*. [Epidemiology / Natural History]
Klangkalya N (2024). [PMID: 39294902](https://pubmed.ncbi.nlm.nih.gov/39294902/). *Allergy Asthma Proc*. [Review / Meta-Analysis]
Kim KY (2024). [PMID: 39267169](https://pubmed.ncbi.nlm.nih.gov/39267169/). *Alzheimers Res Ther*. [Epidemiology / Natural History]
Data assembled from 8 of 12 sources · Last updated Sep 19, 2026, 6:47 AM UTC
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Online Mendelian Inheritance in Man
European rare disease database
Genetic and Rare Diseases Info Center
BLNK |
BLNK deficiency |
AR |
CD79A | Ig alpha (Ig) deficiency | AR |
CD79B | Ig beta (Ig) deficiency | AR |
FNIP1 | FNIP1 deficiency | AR |
IGHM | Mu heavy chain deficiency2 | AR |
IGLL1 | Lambda 5 (5) deficiency | AR |
PIK3CD | p110 delta (p110) deficiency | AR |
PIK3R1 | p85 deficiency | AR |
SLC39A7 | SLC39A7 (ZIP7) deficiency | AR |
SPI1 | PU1 deficiency | AD |
TCF3 | E47 transcription factor deficiency | ADAR |
TOP2B | Hoffman syndrome/ TOP2B deficiency | AD AD = autosomal dominant, AR = autosomal recessive; MOI = mode of inheritance 1. , At least 30 individuals with more than 20 different pathogenic variants in IGHM have been reported . |
Source: GeneReviews — "X-Linked Agammaglobulinemia"
X-Linked Agammaglobulinemia: Treatment of Manifestations Manifestation/Concern |
Treatment |
Considerations/Other |
Acute infections | Antibiotic treatment that is at least twice as long as that used in otherwise healthy persons | Generous use of antibiotics is recommended treatment should be given w/o unnecessary delay. |
Risk of bacterial infections | Prophylactic antibiotics are used in some centers for prevention of bacterial infections. | Amoxicillin combined w/clavulanic acid (an inhibitor of beta-lactamase enzyme) can be used, or alternatively sulfamethoxazole trimethoprim. Ciprofloxacin may be used as a third option. Vaccines, apart from live vaccines, are recommended.1 |
Risk assoc w/live vaccines | Children w/XLA should only be given inactivated polio vaccine (IPV). | The sibs of children w/XLA should also be given IPV rather than oral polio vaccine (OPV) to avoid infecting their affected sib w/live polio virus. 1. |