4.1 Article

Sequence Analysis of 17 NRXN1 Deletions

出版社

WILEY
DOI: 10.1002/ajmg.b.32204

关键词

neurexin 1; deletion; breakpoints

资金

  1. Lundbeck Foundation [R34-A3243]
  2. Danish National Advanced Technology Foundation [001-2009-2]
  3. Danish Council for Independent Research in Medical Sciences
  4. Danish Psychiatric Research Foundation
  5. European Union [LSHM-CT-2006-037761]
  6. Lundbeck Foundation [R151-2013-14290, R155-2014-1724] Funding Source: researchfish
  7. Medical Research Council [MR/L010305/1] Funding Source: researchfish

向作者/读者索取更多资源

BackgroundGenome instability plays fundamental roles in human evolution and phenotypic variation within our population. This instability leads to genomic rearrangements that are involved in a wide variety of human disorders, including congenital and neurodevelopmental disorders, and cancers. Insight into the molecular mechanisms governing such genomic rearrangements may increase our understanding of disease pathology and evolutionary processes. Here we analyse 17 carriers of non-recurrent deletions in the NRXN1 gene, which have been associated with neurodevelopmental disorders, e.g. schizophrenia, autism and epilepsies. Methods17 non-recurrent NRXN1 deletions identified by GWA were sequenced to map the breakpoints of each. Meme ... etc. was used to identify shared patterns between the deletions and compare these were previously studies on non-recurrent deletions. ResultsWe discovered two novel sequence motifs shared between all 17 NRXN1 deletions and a significantly higher AT nucleotide content at the breakpoints, compared to the overall nucleotide content on chromosome 2. We found different alteration of sequence at the breakpoint; small insertions and duplications giving rise to short microhomology sequences. ConclusionsNo single mechanism seems to be implicated in the deletion events, but the results suggest that NHEJ, FoSTeS or MMBIR is implicated. The two novel sequence motifs together with a high AT content in all in NRXN1 deletions may lead to increased instability leading to a increase susceptibility to a single stranded structures. This favours potentially repaired by NHEJ mechanism of double strand breaks or may leading to replication errors. (c) 2013 Wiley Periodicals, Inc.

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