dHMN-2B

HSPB1 | 2004

What Is dHMN-2B?

dHMN-2B is a type of CMT caused by autosomal dominant mutations in the HSPB1 gene. This gene provides instructions for making a small heat-shock protein that helps protect nerve cells from stress and supports the stability of the axonal cytoskeleton. Mutations in the HSPB1 gene disrupt this function, leading to impaired nerve signal transmission.

dHMN-2B is autosomal dominant, meaning that just one of the gene’s two copies needs a mutation to cause this subtype.

Clinical Features

The age of symptom onset in dHMN-2B is variable, ranging from childhood to adulthood. As a distal hereditary motor neuropathy, dHMN-2B predominantly affects the motor nerves, producing weakness and atrophy of the distal limbs while sensation is typically preserved. Nerve conduction studies usually show somewhat slowed conduction velocities and reduced amplitudes, consistent with an axonal form of CMT.

dHMN-2B symptoms may include:

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

Disease Course

dHMN-2B 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
dHMN-2B

Classification
dHMN/HMN

Neuropathy Type
Axonal

Inheritance Pattern
autosomal dominant

Genetic Context

HGNC-Approved Gene Symbol
HSPB1

Gene Full Name
Heat Shock Protein Family B (small) Member 1

HGNC Gene Alias(es)
HSP27

Chromosome
7q11.23

Zygosity of Responsible Variant
Heterozygous

Variant Mechanism

Toxic Gain of Function (GoF)

Details

Mechanistic basis:
Neomorphic

Confidence:
Medium

Prediction:
The literature predicts a toxic gain-of-function mechanism for dHMN-2B: dominant HSPB1 mutations confer aberrant, gained interactions, with increased binding to tubulin and HDAC6 and reduced tubulin acetylation, disrupted neurofilament assembly, impaired axonal transport, and a tendency to aggregate, rather than simple loss. Functional work supports a neomorphic toxic activity that HDAC6 inhibition can rescue, so added wild-type is not predicted to rescue, though a dominant-negative contribution to the chaperone oligomer keeps confidence at medium.

Rationale:
Dominant HSPB1 alleles acquire aberrant tubulin and HDAC6 binding, tubulin hypo-acetylation, and impaired axonal transport that HDAC6 inhibition may rescue, a neomorphic toxic gain. A still-debated dominant-negative pull on the chaperone oligomer keeps confidence at medium.

ClinVar Pathogenic Variants

View dHMN-2B ClinVar Variants

dHMN-2B OMIM Entry

dHMN-2B OMIM

HSPB1 OMIM Entry

HSPB1 OMIM

More Info

dHMN-2B Research Opportunity

CMT Natural History Study

Original Discovery Publication

Publication Title

Mutant Small Heat-Shock Protein 27 Causes Axonal Charcot-Marie-Tooth Disease and Distal Hereditary Motor Neuropathy

Authors

Evgrafov, O. V., Mersiyanova, I., Irobi, J., Van Den Bosch, L., Dierick, I., Leung, C. L., Schagina, O., Verpoorten, N., Van Impe, K., Fedotov, V., Dadali, E., Auer-Grumbach, M., Windpassinger, C., Wagner, K., Mitrovic, Z., Hilton-Jones, D., Talbot, K., Martin, J. J., Vasserman, N., Tverskaya, S., … Timmerman, V.

Publication Date
May 2, 2004

Updated: July 20, 2026 | By: K. Raymond

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