Optyczne mapowanie genomu identyfikuje kliniczne znaczące somatyczne zmiany strukturalne w tkance mózgowej u pacjentów z epilepsją

PubMed➕ 02.10.2026Genome Res

Optical genome mapping identifies clinically relevant somatic structural variation in epilepsy-affected brain tissue

W skrócie

Badacze opracowali nową metodę do wykrywania zmian strukturalnych w DNA pobranym z mózgu pacjentów z epilepsją. Metoda ta (zwana optycznym mapowaniem genomu) okazała się bardziej czuła niż dotychczasowe testy genetyczne i mogła zidentyfikować ważne zmiany genetyczne, które dotąd umykały diagnostyce, zwłaszcza u pacjentów, którzy byli do tej pory bez rozpoznania genetycznego. Znalezienie tych zmian może pomóc lekarzom lepiej zrozumieć przyczynę epilepsji i poprawić opiekę nad pacjentami.

Oryginalny abstract (angielski)

Somatic variants are a prominent cause of epilepsy-associated cortical malformations, but about half of patients undergoing genetic testing have no finding due partly to limitations in variant detection. Most studies have focused on single-nucleotide variants or small indels that are accessible to short-read sequencing technologies, but somatic structural variants are also emerging as important contributors despite their unique detection challenges. Optical genome mapping (OGM) is a promising methodology for the detection of structural variants, but requires high quality, high molecular weight DNA from clinical specimens. Here we successfully optimize a protocol for OGM of surgically-resected patient brain tissue which yields ~450× effective coverage suitable for detecting somatic variants at low allele fractions. We apply this approach to brain specimens from four patients with epilepsy. OGM identifies large and complex structural variants, most of which are not captured by short-read exome sequencing of the same specimen. In one patient with a known germline variant, OGM reveals a somatic variant, a 13.2kb deletion in at approximately 20% VAF, consistent with the established two-hit model in -associated lesional epilepsies. By resolving the breakpoints in PacBio HiFi sequencing data, we identify a mechanism for this somatic deletion, mediated by recombination of two elements flanking the region. Our findings demonstrate that OGM is a robust and complementary tool for detecting somatic structural variation in human brain tissue, with potential to improve diagnostic yield and refine genotype-phenotype correlations in neurological disorders.

Metadane publikacji

Journal
Genome Res
Data publikacji
01.10.2026
PMID
42823194
DOI
10.1101/gr.281418.125
Autorzy
Miller AR, Anderson JJ, Hernandez Gonzalez ME, Rao Venkata LP, Stonerock E, Mashburn-Warren L, Daley A, Leonard J, Pindrik J, Shaikhouni A
Źródło
PubMed