A common haplotype containing functional CACNA1H variants is frequently coinherited with increased TPSAB1 copy number

Jonathan J Lyons1, Stephanie C Stotz2, Jack Chovanec1

  • 1Genetics and Pathogenesis of Allergy Section, Laboratory of Allergic Diseases, National Institute of Allergy and Infectious Diseases, National Institutes of Health, Bethesda, Maryland, USA.

Insights

A common CACNA1H gene variant haplotype, linked with hereditary alpha-tryptasemia, shows functional changes in lab tests but no clear clinical effects in people carrying it.

Area of Science:

  • Genetics and Molecular Biology
  • Neuroscience
  • Physiology

Background:

  • The CaV3.2 calcium channel (encoded by CACNA1H) is involved in pain, itching, and other bodily functions.
  • Hereditary α-tryptasemia is caused by increased TPSAB1 gene copies.
  • CACNA1H variants might explain varied symptoms in hereditary α-tryptasemia.

Purpose of the Study:

  • Investigate the role of CACNA1H variants in hereditary α-tryptasemia.
  • Determine if CACNA1H variants influence the clinical presentation of the syndrome.
  • Analyze the functional effects of identified CACNA1H variants.

Main Methods:

  • Genotyped TPSAB1, TPSB2, TPSG1, and CACNA1H in 46 families with hereditary α-tryptasemia.
  • Performed electrophysiology on cells with wild-type and variant CACNA1H.
  • Examined clinical phenotypes in families with TPSAB1 duplications and a volunteer cohort.

Main Results:

  • Identified a CACNA1H haplotype (three variants) in linkage disequilibrium with TPSAB1 duplications in 32/46 families.
  • In vitro studies showed variant CaV3.2 channels had altered function (reduced current, changed inactivation/deactivation).
  • No significant clinical differences were observed in individuals with the CACNA1H haplotype.

Conclusions:

  • A common CACNA1H variant haplotype is often coinherited with increased TPSAB1 copy number.
  • This haplotype exhibits partial gain of function in vitro.
  • The variant CACNA1H haplotype does not appear to cause detectable phenotypic differences in the heterozygous state.

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