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1.
Cytogenet Genome Res ; 112(3-4): 202-7, 2006.
Article in English | MEDLINE | ID: mdl-16484773

ABSTRACT

Fluorescence in situ hybridization (FISH) of human bacterial artificial chromosome (BAC) clones to orangutan metaphase spreads localized a breakpoint between human chromosome 3p25.1 and orangutan chromosome 2 to a <30-kb interval. The inversion occurred in a relatively gene-rich region with seven genes within 500 kb. The underlying breakpoint is closely juxtaposed to validated genes, however no functional gene has been disrupted by the evolutionary rearrangement. An approximately 21-kb DNA segment at the 3p25.1 breakpoint region has been duplicated intrachromosomally and interchromosomally to multiple regions in the orangutan and human genomes, providing additional evidence for the role of segmental duplications in hominoid chromosome evolution.


Subject(s)
Chromosomal Instability/genetics , Chromosome Mapping , Chromosomes, Human, Pair 3/genetics , Evolution, Molecular , Animals , Gene Duplication , Gorilla gorilla/genetics , Humans , In Situ Hybridization, Fluorescence , Karyotyping , Phylogeny , Yeasts/genetics
3.
Cytogenet Genome Res ; 108(1-3): 98-105, 2005.
Article in English | MEDLINE | ID: mdl-15545721

ABSTRACT

Intrachromosomal duplications play a significant role in human genome pathology and evolution. To better understand the molecular basis of evolutionary chromosome rearrangements, we performed molecular cytogenetic and sequence analyses of the breakpoint region that distinguishes human chromosome 3p12.3 and orangutan chromosome 2. FISH with region-specific BAC clones demonstrated that the breakpoint-flanking sequences are duplicated intrachromosomally on orangutan 2 and human 3q21 as well as at many pericentromeric and subtelomeric sites throughout the genomes. Breakage and rearrangement of the human 3p12.3-homologous region in the orangutan lineage were associated with a partial loss of duplicated sequences in the breakpoint region. Consistent with our FISH mapping results, computational analysis of the human chromosome 3 genomic sequence revealed three 3p12.3-paralogous sequence blocks on human chromosome 3q21 and smaller blocks on the short arm end 3p26-->p25. This is consistent with the view that sequences from an ancestral site at 3q21 were duplicated at 3p12.3 in a common ancestor of orangutan and humans. Our results show that evolutionary chromosome rearrangements are associated with microduplications and microdeletions, contributing to the DNA differences between closely related species.


Subject(s)
Chromosome Breakage/genetics , Chromosome Inversion/genetics , Chromosomes, Human, Pair 3/genetics , Evolution, Molecular , Pongo pygmaeus/genetics , Animals , Cell Line, Transformed , Cercopithecidae/genetics , Chromosomes, Mammalian/genetics , Contig Mapping/methods , Herpesvirus 4, Human/genetics , Humans , Hybrid Cells/chemistry , Hybrid Cells/metabolism , In Situ Hybridization, Fluorescence/methods , Lymphocytes/metabolism , Lymphocytes/virology , Pan troglodytes/genetics , Sequence Deletion/genetics
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