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ANE syndrome is a rare, genetic, neuro-endocrino-cutaneous disorder characterized by highly variable degrees of alopecia, moderate to severe intellectual disability, progressive, late-onset motor deterioration and combined anterior pituitary hormone deficiency, manifesting with central hypogonadotropic hypogonadism, delayed or absent puberty, growth hormone deficiency (resulting in short stature), progressive central adrenal insufficiency and a hypoplastic anterior pituitary gland. Additional features include hypodontia, flexural reticulate hyperpigmentation, gynecomastia, microcephaly and kyphoscoliosis.
Features include always present findings: Motor deterioration, Hypogonadotropic hypogonadism, Carious teeth, and Alopecia and others; and very common findings: Kyphoscoliosis, Gynecomastia, and Limb joint contracture. 20 total HPO annotations.
Organ System | Phenotype Count | Example Features |
|---|---|---|
Hormones | 4 | Hypogonadotropic hypogonadism, Central adrenal insufficiency, Small pituitary gland |
RBM28 function has not been fully characterized.
ANE syndrome is associated with mutations in the RBM28 gene on chromosome 7.
Genetic testing for RBM28 is available. Testing is considered confirmatory for diagnosis.
Biomarker and diagnostic research for ANE syndrome has been reported in the published literature.
Phenotype severity distribution: 9 always present features, 3 very common features, 4 common features.
Estimated prevalence: <1 in 1,000,000 (VERY_RARE).
No clinical trials have been registered for ANE syndrome.
94 publications have been identified in PubMed for ANE syndrome. Research spans Review / Meta-Analysis (47%), Basic Science / Preclinical (21%), and Epidemiology / Natural History (16%).
Research Type | Count | % of Total |
|---|---|---|
Research summaries | 44 | 47% |
Data assembled from 6 of 12 sources · Last updated Sep 18, 2026, 2:38 AM UTC
Online Mendelian Inheritance in Man
European rare disease database
Genetic and Rare Diseases Info Center
Common questions about ANE syndrome
Bones and joints |
3 |
Kyphoscoliosis, Skeletal muscle atrophy, Limb joint contracture |
Skin | 3 | Alopecia, Flexural reticulate hyperpigmentation, Reduced subcutaneous adipose tissue |
Muscles | 2 | Skeletal muscle atrophy, Limb joint contracture |
Arms and legs | 2 | Limb joint contracture, Ulnar deviation of the hand |
Head and neck | 1 | Microcephaly |
Growth and development | 1 | Short stature |
Brain and nerves | 1 | Intellectual disability |
20 |
21% |
Disease patterns and progression | 15 | 16% |
Patient case studies | 8 | 9% |
Clinical study results | 5 | 5% |
Testing and diagnosis research | 2 | 2% |
Gao SX (2026). [PMID: 41821730](https://pubmed.ncbi.nlm.nih.gov/41821730/). *Frontiers in endocrinology*. [Epidemiology / Natural History]
Joly F (2025). [PMID: 40323211](https://pubmed.ncbi.nlm.nih.gov/40323211/). *Journal of clinical and experimental neuropsychology*. [Review / Meta-Analysis]
Pauciulo C (2025). [PMID: 40524652](https://pubmed.ncbi.nlm.nih.gov/40524652/). *Journal of veterinary internal medicine*. [Clinical Trial Publication]
Zhang L (2025). [PMID: 40042691](https://pubmed.ncbi.nlm.nih.gov/40042691/). *Journal of neurology*. [Diagnostic / Biomarker]
Cereda GS (2025). [PMID: 40680246](https://pubmed.ncbi.nlm.nih.gov/40680246/). *Neurology(R) neuroimmunology & neuroinflammation*. [Clinical Trial Publication]
Lange KS (2025). [PMID: 40567225](https://pubmed.ncbi.nlm.nih.gov/40567225/). *Stroke*. [Basic Science / Preclinical]
Paller AS (2025). [PMID: 40184496](https://pubmed.ncbi.nlm.nih.gov/40184496/). *The British journal of dermatology*. [Review / Meta-Analysis]
Kelly DM (2025). [PMID: 40448342](https://pubmed.ncbi.nlm.nih.gov/40448342/). *Journal of intensive care medicine*. [Diagnostic / Biomarker]
Rollnik JD (2025). [PMID: 39879996](https://pubmed.ncbi.nlm.nih.gov/39879996/). *Fortschritte der Neurologie-Psychiatrie*. [Epidemiology / Natural History]
Rosenblum JS (2025). [PMID: 39821441](https://pubmed.ncbi.nlm.nih.gov/39821441/). *JNCI cancer spectrum*. [Review / Meta-Analysis]
AI-curated news mentioning ANE syndrome
Updated Jul 21, 2026
FDA approved Casgevy CRISPR gene therapy for children as young as 2 with sickle cell disease on July 1, 2026. Here's what families need to know about this milestone. Approximately 5,500 additional American children are now eligible for this established one-time therapy, according to Vertex Pharmaceuticals, Casgevy's developer. Casgevy also covers transfusion-dependent beta-thalassemia in this new age indication. Sickle cell disease is a lifelong inherited blood disorder that warps red blood cells into stiff, crescent shapes that can block blood flow, starving organs and tissues of oxygen. The world's first CRISPR-based gene therapy has been approved for children as young as two years old, opening the possibility of a single, potentially curative treatment to thousands of American children with sickle cell disease before years of organ damage can narrow what medicine can do for them. Families with children aged 2 and older who have sickle cell disease should speak with their pediatric hematologist about whether Casgevy is appropriate to consider at this stage of their child's disease. Ask specifically which authorized treatment centers perform Casgevy in your region. Treatment is available only at specialized sites, and geographic access remains limited. Contact your child's insurance plan or Medicaid office to ask about coverage. Medicaid coverage for gene therapies varies by state, and some states have developed outcomes-based payment models for high-cost therapies. "With today's decision, pediatric patients as young as 2 years of age can now access a critical additional treatment option to treat these debilitating, life-threatening diseases," said Karim Mikhail, acting director of the Office of Therapeutic Products at the FDA's Center for Biologics Evaluation and Research, according to the FDA press announcement. Casgevy is a non-viral, ex vivo CRISPR/Cas9 gene-edited cell therapy.