Arid
DOI10.1371/journal.pone.0028853
Genome-Wide Signatures of ’Rearrangement Hotspots’ within Segmental Duplications in Humans
Uddin, Mohammed; Sturge, Mitch; Peddle, Lynette; O’Rielly, Darren D.; Rahman, Proton
通讯作者Uddin, Mohammed
来源期刊PLOS ONE
ISSN1932-6203
出版年2011
卷号6期号:12
英文摘要

The primary objective of this study was to create a genome-wide high resolution map (i.e., >100 bp) of ’rearrangement hotspots’ which can facilitate the identification of regions capable of mediating de novo deletions or duplications in humans. A hierarchical method was employed to fragment segmental duplications (SDs) into multiple smaller SD units. Combining an end space free pairwise alignment algorithm with a ’seed and extend’ approach, we have exhaustively searched 409 million alignments to detect complex structural rearrangements within the reference-guided assembly of the NA18507 human genome (186 coverage), including the previously identified novel 4.8 Mb sequence from de novo assembly within this genome. We have identified 1,963 rearrangement hotspots within SDs which encompass 166 genes and display an enrichment of duplicated gene nucleotide variants (DNVs). These regions are correlated with increased nonallelic homologous recombination (NAHR) event frequency which presumably represents the origin of copy number variations (CNVs) and pathogenic duplications/deletions. Analysis revealed that 20% of the detected hotspots are clustered within the proximal and distal SD breakpoints flanked by the pathogenic deletions/duplications that have been mapped for 24 NAHR-mediated genomic disorders. FISH Validation of selected complex regions revealed 94% concordance with in silico localization of the highly homologous derivatives. Other results from this study indicate that intra-chromosomal recombination is enhanced in genic compared with agenic duplicated regions, and that gene desert regions comprising SDs may represent reservoirs for creation of novel genes. The generation of genome-wide signatures of ’rearrangement hotspots’, which likely serve as templates for NAHR, may provide a powerful approach towards understanding the underlying mutational mechanism(s) for development of constitutional and acquired diseases.


类型Article
语种英语
国家Canada
收录类别SCI-E
WOS记录号WOS:000298369100111
WOS关键词COPY NUMBER VARIATION ; MICRODELETION ; EVOLUTION ; DELETIONS ; MICRODUPLICATION ; CHROMOSOME ; DIVERSITY ; MECHANISM ; DISCOVERY ; VARIANTS
WOS类目Multidisciplinary Sciences
WOS研究方向Science & Technology - Other Topics
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/170106
作者单位Mem Univ, Discipline Med & Genet, Fac Med, St John, NF, Canada
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GB/T 7714
Uddin, Mohammed,Sturge, Mitch,Peddle, Lynette,等. Genome-Wide Signatures of ’Rearrangement Hotspots’ within Segmental Duplications in Humans[J],2011,6(12).
APA Uddin, Mohammed,Sturge, Mitch,Peddle, Lynette,O’Rielly, Darren D.,&Rahman, Proton.(2011).Genome-Wide Signatures of ’Rearrangement Hotspots’ within Segmental Duplications in Humans.PLOS ONE,6(12).
MLA Uddin, Mohammed,et al."Genome-Wide Signatures of ’Rearrangement Hotspots’ within Segmental Duplications in Humans".PLOS ONE 6.12(2011).
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