Please use this identifier to cite or link to this item: https://ahro.austin.org.au/austinjspui/handle/1/17043
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dc.contributor.authorDamiano, John A-
dc.contributor.authorDo, Hongdo-
dc.contributor.authorOzturk, Ezgi-
dc.contributor.authorBurgess, Rosemary-
dc.contributor.authorKalnins, Renate-
dc.contributor.authorJones, Nigel C-
dc.contributor.authorDobrovic, Alexander-
dc.contributor.authorBerkovic, Samuel F-
dc.contributor.authorHildebrand, Michael S-
dc.date2017-12-20-
dc.date.accessioned2018-01-12T00:48:46Z-
dc.date.available2018-01-12T00:48:46Z-
dc.date.issued2017-12-
dc.identifier.citationEpileptic Disorders 2017; 19(4): 450-455en_US
dc.identifier.urihttps://ahro.austin.org.au/austinjspui/handle/1/17043-
dc.description.abstractSomatic mutation of the lissencephaly-1 gene is a cause of subcortical band heterotopia ("double cortex"). The severity of the phenotype depends on the level of mutation in brain tissue. Detecting and quantifying low-level somatic mosaic mutations is challenging. Here, we utilized droplet digital PCR, a sensitive method to detect low-level mutation. Droplet digital PCR was used in concert with classic genotyping techniques (SNaPshot assays and pyrosequencing) to detect and characterize the tissue mosaicism of a somatic mutation (LIS1 c.190A>T; p.K64X) in a patient with posterior bilateral SBH and refractory epilepsy. The high sensitivity of droplet digital PCR and the ability to target individual DNA molecules allowed us to detect the mutation at low level in the brain, despite the low quality of the DNA sample derived from formalin-fixed paraffin-embedded tissue. This low mutation frequency in the brain was consistent with the relatively subtle malformation resolved by magnetic resonance imaging. The presence of the mutation in other tissues from the patient permitted us to predict the timing of mutagenesis. This sensitive methodology will have utility for a variety of other brain malformation syndromes associated with epilepsy for which historical pathological specimens are available and specific somatic mosaic mutations are predicted.en_US
dc.subjectDouble Cortexen_US
dc.subjectLIS1 geneen_US
dc.subjectsomatic mosaic mutationen_US
dc.subjectsubcortical band heterotopiaen_US
dc.titleSensitive quantitative detection of somatic mosaic mutation in "double cortex" syndromeen_US
dc.typeJournal Articleen_US
dc.identifier.journaltitleEpileptic Disordersen_US
dc.identifier.affiliationEpilepsy Research Centre, Department of Medicine, University of Melbourne, Austin Health, Heidelberg, Victoria, Australiaen_US
dc.identifier.affiliationTranslational Genomics and Epigenomics Laboratory, Olivia Newton-John Cancer Research Institute, Heidelberg, Victoria, Australiaen_US
dc.identifier.affiliationSchool of Cancer Medicine, La Trobe University, Bundoora, Victoria, Australiaen_US
dc.identifier.affiliationDepartment of Pathology, University of Melbourne, Parkville, Victoria, Australiaen_US
dc.identifier.affiliationDepartment of Medicine, University of Melbourne, Royal Melbourne Hospital, Parkville, Victoria, Australiaen_US
dc.identifier.affiliationAnatomical Pathology, Austin Health, Heidelberg, Victoria, Australiaen_US
dc.identifier.pubmedurihttps://pubmed.ncbi.nlm.nih.gov/29258966en_US
dc.identifier.doi10.1684/epd.2017.0944en_US
dc.type.contentTexten_US
dc.type.austinJournal Articleen_US
local.name.researcherBerkovic, Samuel F
item.openairetypeJournal Article-
item.cerifentitytypePublications-
item.grantfulltextnone-
item.fulltextNo Fulltext-
item.openairecristypehttp://purl.org/coar/resource_type/c_18cf-
crisitem.author.deptOlivia Newton-John Cancer Research Institute-
crisitem.author.deptSurgery (University of Melbourne)-
crisitem.author.deptEpilepsy Research Centre-
crisitem.author.deptNeurology-
crisitem.author.deptEpilepsy Research Centre-
crisitem.author.deptMedicine (University of Melbourne)-
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