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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.
Abstract:
PurposeCaV3.2 signaling contributes to nociception, pruritus, gastrointestinal motility, anxiety, and blood pressure homeostasis. This calcium channel, encoded by CACNA1H, overlaps the human tryptase locus, wherein increased TPSAB1 copy number causes hereditary α-tryptasemia. Germ-line CACNA1H variants may contribute to the variable expressivity observed with this genetic trait.MethodsTryptase-encoding sequences at TPSAB1 and TPSB2, and TPSG1 and CACNA1H variants were genotyped in 46 families with hereditary α-tryptasemia syndrome. Electrophysiology was performed on tsA201 HEK cells transfected with wild-type or variant CACNA1H constructs. Effects on clinical phenotypes were interrogated in families with TPSAB1 duplications and in volunteers from the ClinSeq cohort.ResultsThree nonsynonymous variants in CACNA1H (rs3751664, rs58124832, and rs72552056) cosegregated with TPSAB1 duplications in 32/46 families and were confirmed to be in linkage disequilibrium (LD). In vitro, variant CaV3.2 had functional effects: reducing current densities, and altering inactivation and deactivation properties. No clinical differences were observed in association with the CACNA1H haplotype.ConclusionA previously unrecognized haplotype containing three functional CACNA1H variants is relatively common among Caucasians, and is frequently coinherited on the same allele as additional TPSAB1 copies. The variant CACNA1H haplotype, which in vitro imparts partial gain of function, does not result in detectable phenotypic differences in the heterozygous state.
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