Hemiplegic migraine: genetics and pathophysiology

Rare monogenic subtypes of migraine with aura, which include an autosomal dominant form of hemiplegic migraine (HM), are caused by exonic mutations whose functional consequences can be studied in cellular and animal models of the disease. This allows investigation of the neurobiological mechanisms at the molecular, cellular, and circuit level. Here, I review current knowledge of the genetics and pathophysiology of HM. After considering the genes whose mutations cause familial HM (FHM) and discussing how the encoded proteins are affected by the mutations, I consider the mouse models generated by introducing human FHM mutations in the orthologous genes, Cana1a , Atp1a2 , and Scna1a . I discuss their phenotypes, highlighting their shared increased susceptibility to experimentally induced cortical spreading depression (CSD, the phenomenon which underlies migraine aura and may trigger the headache mechanisms) and migraine-relevant pain behaviors. I examine the alterations in the cerebral cortex and the mechanisms underlying the facilitation of CSD in the mouse models as well as the alterations in the trigeminovascular pain pathway and their possible contributions to migraine-relevant pain phenotypes. Finally, I discuss the translational implications of the pathogenic mechanisms of CSD facilitation.

Authors

Publication Details

Journal
Journal of Clinical Investigation
Published
2026-09-14
DOI
https://doi.org/10.1172/jci208001
Primary Topic
Migraine and Headache Studies
Type
article
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article

Hemiplegic migraine: genetics and pathophysiology

Daniela Pietrobon
Journal of Clinical Investigation
Migraine and Headache Studies
article

Hemiplegic migraine: genetics and pathophysiology

Daniela Pietrobon
article en

Abstract

Rare monogenic subtypes of migraine with aura, which include an autosomal dominant form of hemiplegic migraine (HM), are caused by exonic mutations whose functional consequences can be studied in cellular and animal models of the disease. This allows investigation of the neurobiological mechanisms at the molecular, cellular, and circuit level. Here, I review current knowledge of the genetics and pathophysiology of HM. After considering the genes whose mutations cause familial HM (FHM) and discussing how the encoded proteins are affected by the mutations, I consider the mouse models generated by introducing human FHM mutations in the orthologous genes, Cana1a , Atp1a2 , and Scna1a . I discuss their phenotypes, highlighting their shared increased susceptibility to experimentally induced cortical spreading depression (CSD, the phenomenon which underlies migraine aura and may trigger the headache mechanisms) and migraine-relevant pain behaviors. I examine the alterations in the cerebral cortex and the mechanisms underlying the facilitation of CSD in the mouse models as well as the alterations in the trigeminovascular pain pathway and their possible contributions to migraine-relevant pain phenotypes. Finally, I discuss the translational implications of the pathogenic mechanisms of CSD facilitation.

Journal of Clinical InvestigationVol. 136(18)
Good health and well-being
Openalex Percentile: Top 10%
Migraine and Headache Studies
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Hemiplegic migraine: genetics and pathophysiology — Daniela Pietrobon · Journal of Clinical Investigation (2026) | TGRS Research Map | TGRS