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Palmoplantar keratoderma-deafness syndrome is a keratinization disorder characterized by focal or diffuse palmoplantar keratoderma. A patchy distribution is observed with accentuation on the thenars, hypothenars and the arches of the feet. The disease becomes apparent in infancy and is associated with sensorineural hearing loss that shows a variable age of onset. Due to genetic and clinical similarities, it has been proposed that palmoplantar keratoderma-deafness syndrome, knuckle pads-leukonychia-sensorineural deafness-palmoplantar hyperkeratosis syndrome and keratoderma hereditarium mutilans may represent variants of one broad disorder of syndromic deafness with heterogeneous phenotype. The disease is transmitted in an autosomal dominant manner with incomplete penetrance.
Features include: Hearing loss (hearing impairment) and Palmoplantar hyperkeratosis.
Organ System | Phenotype Count | Example Features |
|---|---|---|
Ears | 1 | Hearing loss (hearing impairment) |
Skin | 1 | Palmoplantar hyperkeratosis |
Age of onset: childhood.
GJB2-related autosomal recessive nonsyndromic hearing loss (GJB2-AR NSHL) is the most common genetic cause of congenital (present at birth) severe-to-profound non-progressive sensorineural hearing loss in many world populations. GJB2-AR NSHL can also be mild to moderate and is usually not progressive; however, there are exceptions. Severe-to-profound GJB2-AR NSHL is typically congenital and diagnosed on newborn hearing screening (NBHS); however, there are occasional exceptions. In two examples, a newborn passed his NBHS auditory brain stem response (ABR)-based test, but was diagnosed as deaf at age 15 months when an ABR test obtained at the request of his parents showed no responses through 90 dB.
Source: GeneReviews — "GJB2-Related Autosomal Recessive Nonsyndromic Hearing Loss"
GJB2 encodes gap junction protein beta 2 (226 aa). Structural component of gap junctions. Gap junctions are dodecameric channels that connect the cytoplasm of adjoining cells. Highest expression in Esophagus Mucosa (1,032 TPM) and Vagina (934.9 TPM).
Palmoplantar keratoderma-deafness syndrome is associated with mutations in the GJB2 gene on chromosome 13.
GJB2 is classified as a druggable target (Ion Channel and Transporter categories) with score 0.0.
Truncating vs nontruncating variants. The strong genotype-phenotype correlations with GJB2-AR NSHL can be recognized by classifying GJB2 variants as truncating (T) or nontruncating (NT) and then defining three genotype classes: biallelic truncating (T/T), biallelic nontruncating (NT/NT), and compound heterozygous (T/NT) . Hearing loss across these classes is nonrandomly distributed, with loss in the T/T class being more severe than in the T/NT class, which is more severe than in the NT/NT class. See Figure 3 (full text), which provides audiograms for various genotypes, showing the average hearing thresholds (50th centile) and the expected range (10th centile and 90th centile) for common genotypes.
Source: GeneReviews — "GJB2-Related Autosomal Recessive Nonsyndromic Hearing Loss"
The diagnosis of GJB2-related autosomal recessive nonsyndromic hearing loss (GJB2-AR NSHL) should be considered in two scenarios: an and a .
Universal NBHS using physiologic screening (either otoacoustic emissions [OAE], which measure the response of cochlear outer hair cells to auditory stimuli, or automated auditory brain stem response [ABR], which measures the physiologic response of cochlear inner hair cells, auditory nerve, brain stem, and brain to auditory stimuli) is required by law or rule in all 50 states in the United States and is performed on 98% of children in the US typically within days after birth (see 2020 Summary of National CDC EHDI Data).
Source: GeneReviews — "GJB2-Related Autosomal Recessive Nonsyndromic Hearing Loss"
As of this writing, more than 70 genes have been associated with autosomal recessive nonsyndromic hearing loss. For a list of selected genes associated with distinctive clinical features, see Genetic Hearing Loss Overview, Table 3. For a current, comprehensive list of all identified autosomal recessive nonsyndromic hearing loss genes, see Hereditary Hearing Loss Homepage.
Source: GeneReviews — "GJB2-Related Autosomal Recessive Nonsyndromic Hearing Loss"
Genetic testing for GJB2 is available. Testing is considered confirmatory for diagnosis.
No approved treatments are currently available for palmoplantar keratoderma-deafness syndrome. The disease remains an area of unmet medical need.
No clinical practice guidelines specific to GJB2-related autosomal recessive nonsyndromic hearing loss (GJB2-AR NSHL) have been published. Management ideally occurs in the context of a multidisciplinary clinic with specialists in otolaryngology, audiology, and genetic counseling. See Genetic Hearing Loss Overview, Management.
To establish the extent of involvement and needs in an individual diagnosed with GJB2-AR NSHL, the following evaluations by an otolaryngologist are recommended:
Source: GeneReviews — "GJB2-Related Autosomal Recessive Nonsyndromic Hearing Loss"
Individuals with hearing loss should avoid environmental exposures known to cause hearing loss. Most important for persons with GJB2-related mild-to-moderate hearing loss is avoidance of repeated overexposure to loud noises, particularly secondary to earbud use. The headphone safety feature built into most smartphones can be set a maximum limit of 75 dB. Headphone/earbud safety features can be found in the phone settings menu:
In iPhones, under Settings Sounds Haptics Headphone Safety
In Android phones, under Settings Sounds Vibrations Volume Media volume limit
Also see these general resources on noise reduction:
• 6 Simple Ways To Check If Your Headphones Are Too Loud
• How Do I Prevent Hearing Loss from Loud Noise?
Source: GeneReviews — "GJB2-Related Autosomal Recessive Nonsyndromic Hearing Loss"
Search ClinicalTrials.gov in the US and EU Clinical Trials Register in Europe for information on clinical studies for a wide range of diseases and conditions. Note: There may not be clinical trials for this condition.
Source: GeneReviews — "GJB2-Related Autosomal Recessive Nonsyndromic Hearing Loss"
View trials for palmoplantar keratoderma-deafness syndrome
To monitor the individual's response to habituation and to identify any changes in severity of hearing loss, the following evaluations are recommended. Most children with severe-to-profound GJB2-AR NSHL with a cochlear implant will initially have frequent evaluations recommended by their cochlear implant team (otolaryngologist, audiologist, and speech and language pathologist). At follow-up appointments, the following may be performed: speech recognition testing, equipment checks (including device adjustment and troubleshooting), and provision of replacement or upgraded equipment . As the cochlear implant recipient becomes comfortable with the cochlear implant, many of the above tasks can be performed by the family at home, obviating the need for routinely scheduled appointments unless the need for a clinic visit arises.
Children with mild-to-moderate GJB2-AR NSHL
Source: GeneReviews — "GJB2-Related Autosomal Recessive Nonsyndromic Hearing Loss"
Estimated prevalence: <1 in 1,000,000 (VERY_RARE).
No clinical trials have been registered for palmoplantar keratoderma-deafness syndrome.
4 publications have been identified in PubMed for palmoplantar keratoderma-deafness syndrome. Research spans Case Report / Case Series (75%) and Gene Therapy / Novel Therapeutics (25%).
Ukaji T (2025). [PMID: 40059830](https://pubmed.ncbi.nlm.nih.gov/40059830/). *JCI Insight*. [Gene Therapy / Novel Therapeutics]
Elmakhzen B (2025). [PMID: 40369851](https://pubmed.ncbi.nlm.nih.gov/40369851/). *Mol Genet Genomic Med*. [Case Report / Case Series]
Gizzi G (2025). [PMID: 40667477](https://pubmed.ncbi.nlm.nih.gov/40667477/). *Case Rep Dermatol*. [Case Report / Case Series]
Duran-Lemarie MC (2025). [PMID: 39603856](https://pubmed.ncbi.nlm.nih.gov/39603856/). *An Bras Dermatol*. [Case Report / Case Series]
Data assembled from 7 of 12 sources · Last updated Sep 19, 2026, 6:55 PM UTC
Online Mendelian Inheritance in Man
European rare disease database
Genetic and Rare Diseases Info Center