CMT-NDUFS6

NDUFS6 | 2024

What Is CMT-NDUFS6?

CMT-NDUFS6 is a type of CMT caused by autosomal recessive mutations in the NDUFS6 gene. This gene provides instructions for making a component of the mitochondrial enzyme complex responsible for producing cellular energy. Mutations in the NDUFS6 gene disrupt this function, leading to impaired nerve signal transmission.

CMT-NDUFS6 is autosomal recessive, meaning that both copies of the gene must have a mutation to cause this subtype.

Clinical Features

The age of symptom onset in CMT-NDUFS6 is variable, ranging from childhood to adulthood. Symptoms typically begin in the lower extremities and progress over time to involve the upper limbs. Nerve conduction studies usually show somewhat slowed conduction velocities and reduced amplitudes, consistent with an axonal form of CMT.

CMT-NDUFS6 symptoms may include:

  • Weakness in the feet and lower legs
  • Muscle atrophy
  • Foot drop
  • Reduced or absent reflexes
  • Reduced sensation
  • A steppage-style walking pattern
  • Foot deformities, including high arches, and hammertoes (clawed toes)
  • Progressive involvement of the hands and forearms
  • Difficulty with fine motor skills and manual dexterity
  • Additional symptoms not listed here

Disease Course

CMT-NDUFS6 shows wide variability in severity and progression. Some individuals are mildly affected, while others develop a more severe disease. Disease progression is generally slow, and life expectancy is not reduced.

Clinical Basics

Subtype
CMT-NDUFS6

Classification
Unclassified Subtypes

Neuropathy Type
Axonal

Inheritance Pattern
autosomal recessive

Genetic Context

HGNC-Approved Gene Symbol
NDUFS6

Gene Full Name
Nadh:ubiquinone Oxidoreductase Subunit S6

Chromosome
5p15.33

Zygosity of Responsible Variant
Homozygous

Mitochondrial Involvement
Yes

Variant Mechanism

Loss of Function (LoF)

Details

Mechanistic basis:
Biallelic

Confidence:
Low

Prediction:
The literature predicts a biallelic loss-of-function mechanism for CMT-NDUFS6: recessive variants in NDUFS6, a nuclear-encoded core subunit of mitochondrial complex I, reduce or abolish subunit function and impair complex I assembly and activity, so two damaged copies are required. Restored wild-type is predicted to rescue, consistent with loss rather than a dominant-negative effect; the recent 2024 association holds confidence at low.

Rationale:
Recessive NDUFS6 variants reduce a core complex I structural subunit whose absence fails to incorporate rather than disrupting the wild-type assembly, so restored wild-type is predicted to rescue: a biallelic loss of function. The recent, limited reports hold confidence at low.

ClinVar Pathogenic Variants

View CMT-NDUFS6 ClinVar Variants

NDUFS6 OMIM Entry

NDUFS6 OMIM

More Info

CMT-NDUFS6 Research Opportunity

CMT Natural History Study

Original Discovery Publication

Publication Title

Alternative Splicing Expands the Clinical Spectrum of NDUFS6-Related Mitochondrial Disorders.

Authors

Armirola-Ricaurte, C., Zonnekein, N., Koutsis, G., Amor-Barris, S., Pelayo-Negro, A. L., Atkinson, D., Efthymiou, S., Turchetti, V., Dinopoulos, A., Garcia, A., Karakaya, M., Moris, G., Polat, A. I., Yiş, U., Espinos, C., Van de Vondel, L., De Vriendt, E., Karadima, G., Wirth, B., Hanna, M., Houlden, H., Berciano, J., Jordanova, A.

Publication Date
June 1, 2024

Updated: July 18, 2026 | By: K. Raymond

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