CMT Subtypes
Charcot-Marie-Tooth disease is not a single condition but a family of more than 100 genetic subtypes. They are grouped first by how the nerves are affected, then by the specific gene involved, and often down to the exact mutation within that gene. Knowing your subtype is more than a label: it shapes what to expect, guides your care, and increasingly determines which research studies and therapies you may be eligible for.
How CMT is classified
Electromyography (EMG) and nerve conduction (NCV) testing reveal how the nerves are affected, which sorts CMT into a few broad classes. Genetic testing then identifies the exact gene, which is your specific subtype.
Why knowing your subtype matters
For decades, knowing your exact gene changed little about day-to-day care. That is no longer true. Research and clinical trials are now organized by subtype, because a therapy that helps one gene defect may do nothing for another. A gene-replacement approach for one recessive subtype, an enzyme-targeting drug for SORD deficiency, an antisense strategy for CMT1A: these are subtype-specific by design.
Confirming your subtype with genetic testing can rule out look-alike conditions, help your clinician anticipate how your CMT may progress, flag medications to avoid, and tell you which studies you may qualify for. It is the single most useful step for connecting your care to the research pipeline.
CMT is caused by more than 100 genes. In a large 2014 commercial-laboratory cohort (Quest / Athena Diagnostics, with Baylor College of Medicine), four genes, PMP22, GJB1, MPZ, and MFN2, accounted for about 95% of genetically confirmed cases.
Most prevalent types
Five subtypes account for the large majority of CMT. If you have a genetic diagnosis, there is a good chance it is one of these.
- 1 CMT1A About 40 to 60% of confirmed casesPMP22 (duplication)
An extra copy of PMP22 makes too much of the protein, which disrupts myelin. It accounts for roughly 70% of the demyelinating (CMT1) group on its own.
- 2 CMT1X About 10 to 13% of confirmed casesGJB1 (connexin 32)
X-linked, so it runs through families differently. Often starts in childhood and tends to hit men harder, while women may be mild or have no symptoms at all.
- 3 HNPP About 3 to 15% of confirmed casesPMP22 (deletion)
A missing copy of the same gene behind CMT1A, causing episodes of numbness or weakness after pressure on a nerve. Mild cases are easily missed, so it is likely under-diagnosed.
- 4 CMT1B About 5 to 10% of confirmed casesMPZ
Changes in myelin protein zero. Demyelinating and usually dominant, with severity that varies a lot depending on the specific variant.
- 5 CMT2A About 3 to 7% of confirmed casesMFN2
The most common of the type 2 (axonal) forms. Often earlier onset and can be more severe, and some people develop optic-nerve involvement.
Shares are of genetically confirmed CMT, and are shown as ranges because large patient cohorts in different countries report different proportions. No single study gives one worldwide number.
Subtypes we cover in depth
The subtypes with a full HNF page of their own, covering how each one behaves, how it is inherited, and what to expect. Your genetic report is the authoritative source for your own diagnosis.
Every CMT subtype, by type
147 recognized subtypes across 119 genes, grouped the way the naming system groups them. Use it to place your own result: find your gene, and you will see which family your subtype belongs to and how it is inherited. Newer discoveries are named after the gene rather than given a type number, which is why the last group looks different.
CMT1 Demyelinating, dominant 9
Type 1 is demyelinating: the myelin sheath that insulates the nerve is affected, so signals travel more slowly. These are the most common forms of CMT.
| Subtype | Gene | Inheritance | Nerve type |
|---|---|---|---|
| CMT1A | PMP22 | Dominant | Demyelinating |
| CMT1B | MPZ | Dominant | Demyelinating |
| CMT1C | LITAF | Dominant | Demyelinating |
| CMT1D | EGR2 | Dominant | Demyelinating |
| CMT1E | PMP22 | Dominant | Demyelinating |
| CMT1F | NEFL | Dominant | Demyelinating |
| CMT1G | PMP2 | Dominant | Demyelinating |
| CMT1H | FBLN5 | Dominant | Demyelinating |
| HNPP | PMP22 | Dominant | Demyelinating |
CMT2 Axonal, dominant 32
Type 2 is axonal: the nerve fibre itself is affected rather than its insulation. Signal speed stays closer to normal but the signal is weaker.
| Subtype | Gene | Inheritance | Nerve type |
|---|---|---|---|
| CMT2A | MFN2 | Dominant | Axonal |
| CMT2A1-Archaic | KIF1B | ||
| CMT2A2B | MFN2 | Recessive | Axonal |
| CMT2B | RAB7A | Dominant | Axonal |
| CMT2B1 | LMNA | Recessive | Axonal |
| CMT2B2 | PNKP | Recessive | Axonal |
| CMT2B2 - Archaic | MED25 | ||
| CMT2B3 | GDAP1 | Recessive | Axonal |
| CMT2B4 | MFN2 | Recessive | Axonal |
| CMT2B5 | NEFL | Recessive | Axonal |
| CMT2C | TRPV4 | Dominant | Axonal |
| CMT2CC | NEFH | Dominant | Axonal |
| CMT2D | GARS1 | Dominant | Axonal |
| CMT2DD | ATP1A1 | Dominant | Axonal |
| CMT2E | NEFL | Dominant | Axonal |
| CMT2EE | MPV17 | Recessive | Axonal |
| CMT2F | HSPB1 | Dominant | Axonal |
| CMT2I | MPZ | Dominant | Axonal |
| CMT2J | MPZ | Dominant | Axonal |
| CMT2L | HSPB8 | Dominant | Axonal |
| CMT2M | DNM2 | Dominant | Axonal |
| CMT2N | AARS1 | Dominant | Axonal |
| CMT2O | DYNC1H1 | Dominant | Axonal |
| CMT2Q | DHTKD1 | Dominant | Axonal |
| CMT2R | TRIM2 | Recessive | Axonal |
| CMT2S | IGHMBP2 | Recessive | Axonal |
| CMT2U | MARS1 | Dominant | Axonal |
| CMT2V | NAGLU | Dominant | Axonal |
| CMT2W | HARS1 | Dominant | Axonal |
| CMT2X | SPG11 | Recessive | Axonal |
| CMT2Y | VCP | Dominant | Axonal |
| CMT2Z | MORC2 | Dominant | Axonal |
CMT4 Recessive 12
Type 4 groups the recessive forms, which need a changed copy of the gene from both parents. They often begin earlier in childhood and can progress faster.
| Subtype | Gene | Inheritance | Nerve type |
|---|---|---|---|
| CMT4A | GDAP1 | Recessive | Demyelinating |
| CMT4B1 | MTMR2 | Recessive | Demyelinating |
| CMT4B2 | SBF2 | Recessive | Demyelinating |
| CMT4B3 | SBF1 | Recessive | Demyelinating |
| CMT4C | SH3TC2 | Recessive | Demyelinating |
| CMT4D | NDRG1 | Recessive | Demyelinating |
| CMT4E | EGR2 | Recessive | Demyelinating |
| CMT4F | PRX | Recessive | Demyelinating |
| CMT4G | HK1 | Recessive | Demyelinating |
| CMT4H | FGD4 | Recessive | Demyelinating |
| CMT4J | FIG4 | Recessive | Demyelinating |
| CMT4K | SURF1 | Recessive | Demyelinating |
CMTX X-linked 4
X-linked forms sit on the X chromosome, so they pass through families differently and often affect men more severely than women.
| Subtype | Gene | Inheritance | Nerve type |
|---|---|---|---|
| CMTX1 | GJB1 | X-linked dominant | Intermediate |
| CMTX4 | AIFM1 | X-linked recessive | Axonal |
| CMTX5 | PRPS1 | X-linked recessive | Intermediate |
| CMTX6 | PDK3 | X-linked dominant | Axonal |
CMT-DI Intermediate, dominant 6
Intermediate forms sit between type 1 and type 2: nerve conduction speeds fall in a middle range, and both myelin and axon are affected.
| Subtype | Gene | Inheritance | Nerve type |
|---|---|---|---|
| CMTDIB | DNM2 | Dominant | Intermediate |
| CMTDIC | YARS1 | Dominant | Intermediate |
| CMTDID | MPZ | Dominant | Intermediate |
| CMTDIE | INF2 | Dominant | Intermediate |
| CMTDIF | GNB4 | Dominant | Intermediate |
| CMTDIG | NEFL | Dominant | Intermediate |
CMT-RI Intermediate, recessive 4
The recessive counterparts of the intermediate group, needing a changed copy from both parents.
| Subtype | Gene | Inheritance | Nerve type |
|---|---|---|---|
| CMTRIA | GDAP1 | Recessive | Intermediate |
| CMTRIB | KARS1 | Recessive | Intermediate |
| CMTRIC | PLEKHG5 | Recessive | Intermediate |
| CMTRID | COX6A1 | Recessive | Intermediate |
Gene-named CMT Named by gene 28
Newer subtypes are increasingly named after the gene itself rather than given a type number. These are CMT, they simply arrived after the numbering system ran out of road.
| Subtype | Gene | Inheritance | Nerve type |
|---|---|---|---|
| ABHD12-CMT/PHARC | ABHD12 | Recessive | Demyelinating |
| ARHGEF10-CMT | ARHGEF10 | Dominant | Demyelinating |
| ATP6-CMT | ATP6 | Mitochondrial | Axonal |
| BAG3-CMT | BAG3 | Dominant | Axonal |
| C12ORF65-CMT | C12ORF65 | Recessive | Axonal |
| C19ORF12-CMT | C19ORF12 | Recessive | Axonal |
| C1ORF194-CMT | C1ORF194 | Dominant | Demyelinating |
| CADM3-CMT | CADM3 | Dominant | Axonal |
| CHCHD10-CMT | CHCHD10 | Dominant | Axonal |
| CNTNAP1-CMT | CNTNAP1 | Recessive | Axonal |
| COA7-CMT/SCAN3 | COA7 | Recessive | Axonal |
| CTDP1-CMT | CTDP1 | Recessive | Demyelinating |
| DGAT-CMT | DGAT2 | Dominant | Axonal |
| DRP2-CMT | DRP2 | X-linked dominant | Intermediate |
| DST-CMT | DST | Recessive | Axonal |
| HADHB-CMT | HADHB | Recessive | Axonal |
| HINT1-CMT | HINT1 | Recessive | Axonal |
| KIF5A-CMT | KIF5A | Dominant | Axonal |
| MCM3AP-CMT | MCM3AP | Recessive | Axonal |
| POLG-CMT | POLG | Recessive | Axonal |
| SCO2-CMT | SCO2 | Recessive | Axonal |
| SCYL1-CMT/SCAR21 | SCYL1 | Recessive | Axonal |
| SEPT9-CMT | SEPTIN9 | Dominant | Demyelinating |
| SETX-dHMN | SETX | Recessive | Axonal |
| SGPL1-CMT | SGPL1 | Recessive | Axonal |
| SORD-CMT | SORD1 | Recessive | Axonal |
| SYT2-dHMN | SYT2 | Dominant | Axonal |
| TUBB3-CMT | TUBB3 | Dominant | Axonal |
dHMN Motor only 17
Distal hereditary motor neuronopathy. Closely related to CMT and caused by many of the same genes, but affecting the motor nerves with little or no sensory loss.
| Subtype | Gene | Inheritance | Nerve type |
|---|---|---|---|
| AARS1-dHMN | AARS1 | Dominant | Axonal |
| MYH14-dHMN | MYH14 | Dominant | Axonal |
| SIGMAR1-dHMN2 | SIGMAR1 | Recessive | Axonal |
| SLC12A6-dHMN2 | SLC12A6 | Dominant | Axonal |
| VWA1-dHMN | VWA1 | Recessive | Axonal |
| dHMN-2A | HSPB8 | Dominant | Axonal |
| dHMN-2B | HSPB1 | Dominant | Axonal |
| dHMN-2C | HSPB3 | Dominant | Axonal |
| dHMN-2D | FBXO38 | Dominant | Axonal |
| dHMN-5A | GARS1 | Dominant | Axonal |
| dHMN-5B | REEP1 | Dominant | Axonal |
| dHMN-5C | BSCL2 | Dominant | Axonal |
| dHMN-6 | IGHMBP2 | Recessive | Axonal |
| dHMN-7A | SLC5A7 | Dominant | Axonal |
| dHMN-7B | DCTN1 | Dominant | Axonal |
| dHMN-8 | TRPV4 | Dominant | Axonal |
| dHMN-9 | WARS1 | Dominant | Axonal |
dSMA Motor only 5
Distal spinal muscular atrophy. Another motor-predominant relative of CMT, overlapping heavily with dHMN.
| Subtype | Gene | Inheritance | Nerve type |
|---|---|---|---|
| dSMA | VRK1 | Recessive | Axonal |
| dSMA-5 | DNAJB2 | Recessive | Axonal |
| dSMA4 | PLEKHG5 | Recessive | Intermediate |
| dSMAX-2 | UBA1 | X-linked recessive | Axonal |
| dSMAX-3 | ATP7A | X-linked recessive | Axonal |
SMA-LEP Motor, legs first 3
Spinal muscular atrophy, lower-extremity predominant. Weakness starts in the legs and is caused by genes that also cause CMT.
| Subtype | Gene | Inheritance | Nerve type |
|---|---|---|---|
| SMA-LEP-1 | DYNC1H1 | Dominant | Axonal |
| SMA-LEP-2A | BICD2 | Dominant | Axonal |
| SMA-LEP-2B | BICD2 | Dominant | Axonal |
HMSN Older naming 5
Hereditary motor and sensory neuropathy, the older umbrella name for CMT. A few subtypes are still catalogued under it.
| Subtype | Gene | Inheritance | Nerve type |
|---|---|---|---|
| HMSN-4 | PYHY | Recessive | Axonal |
| HMSN-6A | MFN2 | Dominant | Axonal |
| HMSN-6B | SLC25A46 | Recessive | Axonal |
| HMSN-6C | PDXK | Recessive | Axonal |
| HMSN-Okinawa Type | TFG | Dominant | Axonal |
HSAN Sensory and autonomic 11
Hereditary sensory and autonomic neuropathy. Sensation and automatic functions such as sweating and blood pressure are affected more than strength.
| Subtype | Gene | Inheritance | Nerve type |
|---|---|---|---|
| HSAN-1A | SPTLC1 | Dominant | Axonal |
| HSAN-1C | SPTLC2 | Dominant | Axonal |
| HSAN-2A | WNK1 | Recessive | Axonal |
| HSAN-2B | RETREG1 | Recessive | Axonal |
| HSAN-2D | SCN9A | Recessive | Axonal |
| HSAN-3 | ELP1 | Recessive | Axonal |
| HSAN-4 | NTRK1 | Recessive | Axonal |
| HSAN-5 | NGF | Recessive | Axonal |
| HSAN-6 | DST | Recessive | Axonal |
| HSAN-7 | SCN11A | Dominant | Axonal |
| HSAN-8 | PRDM12 | Recessive | Axonal |
HSN Sensory 9
Hereditary sensory neuropathy. Loss of sensation dominates, which raises the risk of unnoticed injuries to the hands and feet.
| Subtype | Gene | Inheritance | Nerve type |
|---|---|---|---|
| FLVCR1-HSN | FLVCR1 | Recessive | Axonal |
| HSN w/SPG | CCT5 | Recessive | Axonal |
| HSN-1A | SPTLC1 | Dominant | Axonal |
| HSN-1C | SPTLC2 | Dominant | Axonal |
| HSN-1D | ATL1 | Dominant | Axonal |
| HSN-1E | DNMT1 | Dominant | Axonal |
| HSN-1F | ATL3 | Dominant | Axonal |
| HSN-2A | WNK1 | Recessive | Axonal |
| HSN-2C | KIF1A | Recessive | Axonal |
GAN Ultra-rare, severe 2
Giant axonal neuropathy. A rare, severe recessive condition affecting both the peripheral nerves and the brain and spinal cord.
| Subtype | Gene | Inheritance | Nerve type |
|---|---|---|---|
| GAN-1 | GAN | Recessive | Axonal |
| GAN-2 | DCAF8 | Dominant | Axonal |
Research moves fast and new subtypes are named every year, so treat this list as a snapshot rather than a final word. Ask your neurologist or genetic counselor about anything that affects your own care.
Take part in research and clinical trials
Research is increasingly subtype-specific, and people with CMT drive it forward. Joining the Global Registry for Inherited Neuropathies (GRIN) helps researchers spot patterns across the CMT community, and opens the door to studies and clinical trials you may be eligible for.
Join GRIN →Frequently asked questions
How many types of CMT are there?
CMT is caused by changes in more than 100 different genes, and each one defines a distinct subtype. They are first grouped by how the nerves are affected (demyelinating, axonal, or a mix) and then by the exact gene. The number keeps growing as researchers identify more subtype-causing genes.
What is the most common type of CMT?
CMT1A is the most common subtype. It is caused by an extra copy (a duplication) of the PMP22 gene, which disrupts the myelin that insulates the nerves. The next most common forms include HNPP (a deletion of that same gene) and CMT1X (in the GJB1 gene).
Why does knowing my exact subtype matter?
Research and clinical trials are now organized by subtype, because a therapy that helps one gene change may do nothing for another. A confirmed subtype can rule out look-alike conditions, help your clinician anticipate how your CMT may progress, flag medications to avoid, and tell you which studies you may qualify for.
Can two people with CMT have very different symptoms?
Yes. Severity and progression vary widely, both between subtypes and from person to person within the same subtype, and even within the same family. Reported rates of any given symptom vary by subtype, so your own genetic report and care team are the best guide to what to expect.
Our Studies
Learn about our subtype-specific studies. HNF runs natural history studies built around one genetic cause at a time, because that is the evidence a treatment for your subtype has to be built on.
Find out which subtype you have
If you have a clinical CMT diagnosis but no confirmed gene, genetic testing is the way to learn your subtype. HNF’s CMT Genie helps you and your provider get tested at no cost, and connects you with telehealth genetic counseling.
Sharing your subtype and symptoms in GRIN helps researchers understand each form of CMT and design the trials that target it.