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PMID: 16774974 Published · ppublish English Journal Article Research Support, N.I.H., Extramural Research Support, Non-U.S. Gov't

Role of genomic architecture in PLP1 duplication causing Pelizaeus-Merzbacher disease.

Human molecular genetics ·Vol. 15 ·No. 14 ·2006-07-15 ·Pages 2250-65

Lee JA, Inoue K, Cheung SW, Shaw CA, Stankiewicz P, Lupski JR

Abstract

Genomic architecture, higher order structural features of the human genome, can provide molecular substrates for recurrent sub-microscopic chromosomal rearrangements, or may result in genomic instability by forming structures susceptible to DNA double-strand breaks. Pelizaeus-Merzbacher disease (PMD) is a genomic disorder most commonly arising from genomic duplications of the dosage-sensitive proteolipid protein gene (PLP1). Unlike many other genomic disorders that result from non-allelic homologous recombination utilizing flanking low-copy repeats (LCRs) as substrates, generating a common and recurrent rearrangement, the breakpoints of PLP1 duplications have been reported not to cluster, yielding duplicated genomic segments of varying lengths. This suggests a distinct molecular mechanism underlying PLP1 duplication events. To determine whether structural features of the genome also facilitate PLP1 duplication events, we analyzed extensively the genomic architecture of the PLP1 region and defined several novel LCRs (LCR-PMDs). Array comparative genomic hybridization showed that PLP1 duplication sizes differed, but revealed a subgroup of patients with apparently similar PLP1 duplication breakpoints. Pulsed-field gel electrophoresis analysis using probes adjacent to the LCR-PMDs detected unique recombination-specific junction fragments in 12 patients, enabled us to associate the LCR-PMDs with breakpoint regions, and revealed rearrangements inconsistent with simple tandem duplications in four patients. Two-color fluorescence in situ hybridization was consistent with directly oriented duplications. Our study provides evidence that PLP1 duplication events may be stimulated by LCRs, possibly non-homologous pairs at both the proximal and distal breakpoints in some cases, and further supports an alternative role of genomic architecture in rearrangements responsible for genomic disorders.

MeSH Terms
Base Sequence Chromosome Breakage Cohort Studies Female Gene Dosage Gene Duplication Gene Rearrangement Genome, Human Humans In Situ Hybridization, Fluorescence Male Membrane Proteins/genetics Models, Genetic Myelin Proteolipid Protein/genetics Pedigree Pelizaeus-Merzbacher Disease/genetics Recombination, Genetic Terminal Repeat Sequences
Chemicals
Membrane Proteins Myelin Proteolipid Protein PLP1 protein, human
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Lee Jennifer A
Department of Molecular and Human Genetics, Baylor College of Medicine, One Baylor Plaza, Room 604B, Houston, TX 77030, USA.
Inoue Ken
Cheung Sau W
Shaw Chad A
Stankiewicz Pawel
Lupski James R
Article Info
Journal
Human molecular genetics
Abbr.
Hum Mol Genet
ISSN
0964-6906
Published
2006-07-15
Epub
2006-00-14
Pages
2250-65
Language
English
Region
England
NLM ID
9208958
Subset
IM
Grants
NICHD NIH HHS · HD 2406407 · United States
NICHD NIH HHS · P01 HD38420 · United States
NINDS NIH HHS · R01 NS27042 · United States
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