ArticleBrain : a journal of neurology2024
Novel loss-of-function variants expand ABCC9-related intellectual disability and myopathy syndrome.
Article in Brain : a journal of neurology, 2024. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 10 papers.
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Who cites it
10 citing papers in PubMed, 9 citations in OpenAlex.
- ABCC9/SUR2 has a Complex Expression Pattern in Human Brain Gliovascular Unit Cells, Including Astrocytes.Journal of molecular neuroscience : MN · 2026Article
- Cognitive Decline, Neurologic Involvement, and Neonatal Crisis inNeurology. Genetics · 2026Article
- From Array-CGH to Whole-Genome Sequencing: A 29-Year Diagnostic Journey Culminating in the Identification of a De Novo ABCC9 Variant Consistent with Cantú Syndrome.Diagnostics (Basel, Switzerland) · 2026Article
- Expanding the ABCA2-associated neurodevelopmental phenotype.HGG advances · 2026Article
- Bayliss-Starling Prize Lecture: KThe Journal of physiology · 2025Article
- Article
- Sulfonylurea Receptor Pharmacology Alters the Performance of Two Central Pattern Generating Circuits in Cancer borealis.Function (Oxford, England) · 2024Article
- A NovelGenes · 2024Article
- Sulfonylurea receptor coupled conductances alter the performace of two central pattern generating circuits inbioRxiv : the preprint server for biology · 2024Article
- Limbic-predominant age-related TDP-43 encephalopathy (LATE-NC): Co-pathologies and genetic risk factors provide clues about pathogenesis.Journal of neuropathology and experimental neurology · 2024Review
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Authors and funding
29 authors at 15 institutions in 9 countries.
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Abstract
Loss-of-function mutation of ABCC9, the gene encoding the SUR2 subunit of ATP sensitive-potassium (KATP) channels, was recently associated with autosomal recessive ABCC9-related intellectual disability and myopathy syndrome (AIMS). Here we identify nine additional subjects, from seven unrelated families, harbouring different homozygous loss-of-function variants in ABCC9 and presenting with a conserved range of clinical features. All variants are predicted to result in severe truncations or in-frame deletions within SUR2, leading to the generation of non-functional SUR2-dependent KATP channels. Affected individuals show psychomotor delay and intellectual disability of variable severity, microcephaly, corpus callosum and white matter abnormalities, seizures, spasticity, short stature, muscle fatigability and weakness. Heterozygous parents do not show any conserved clinical pathology but report multiple incidences of intra-uterine fetal death, which were also observed in an eighth family included in this study. In vivo studies of abcc9 loss-of-function in zebrafish revealed an exacerbated motor response to pentylenetetrazole, a pro-convulsive drug, consistent with impaired neurodevelopment associated with an increased seizure susceptibility. Our findings define an ABCC9 loss-of-function-related phenotype, expanding the genotypic and phenotypic spectrum of AIMS and reveal novel human pathologies arising from KATP channel dysfunction.
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