<HashMap><database>EGA</database><scores/><additional><omics_type>Genomics</omics_type><study_type>Other</study_type><full_dataset_link>https://ega-archive.org/studies/EGAS00001005680</full_dataset_link><host>EGA</host><description>EGA study EGAS00001005680</description><dataset_title>Targeted sequencing of candidate regions on chromosome 22q predisposing to multiple schwannomas</dataset_title><repository>EGA</repository><category>restricted</category></additional><is_claimable>false</is_claimable><name>Targeted sequencing of candidate regions on chromosome 22q predisposing to multiple schwannomas</name><description>Constitutional LZTR1 or SMARCB1 pathogenic variants have been found in ~86% of familial and ~40% of sporadic schwannomatosis cases. Hence, we performed massively parallel sequencing of the entire LZTR1, SMARCB1 and NF2 genomic loci in 35 individuals with schwannomas negative for constitutional first-hit pathogenic variants in the LZTR1/SMARCB1/NF2 coding sequences, however with 22q deletion and/or a different NF2 pathogenic variant in each tumor, including six cases with only one tumor available. Furthermore, we verified whether any other LZTR1/SMARCB1/NF2 (likely) pathogenic variant(s) could be found in 16 cases carrying a SMARCB1 constitutional variant in the 3Ã¢Â€Â™ untranslated region (3Ã¢Â€Â™-UTR) c.*17C>T, c.*70C>T or c.*82C>T. As no additional variants were found, functional studies were performed to clarify the effect of these 3Ã¢Â€Â™-UTR variants on the transcript. The 3Ã¢Â€Â™-UTR variants c.*17C>T and c.*82C>T showed pathogenicity by negatively affecting SMARCB1 transcript level. Two novel deep intronic SMARCB1 variants, c.500+883T>G and c.500+887G>A, resulting in out-of-frame missplicing of intron 4, were identified in two unrelated individuals. Further resequencing of the entire repeat - masked genomics sequences of chromosome 22q in individuals negative for pathogenic variants in the SMARCB1/LZTR1/NF2 coding- and non-coding regions revealed five potential schwannomatosis-predisposing candidate genes, i.e. MYO18B, NEFH, SGSM1, SGSM3 and SBF1, pending further verification.</description><dates><updated>2022-03-23 10:16:13</updated></dates><accession>EGAS00001005680</accession><cross_references><TAXONOMY>9606</TAXONOMY><EGA>EGAD00001008271</EGA><EGA>EGAC00001002363</EGA></cross_references></HashMap>