Domain organization of allele–specific replication within the GABRB3 gene cluster requires a biparental 15q11–13 contribution
- 1 April 1995
- journal article
- Published by Springer Nature in Nature Genetics
- Vol. 9 (4) , 386-394
- https://doi.org/10.1038/ng0495-386
Abstract
Imprinting marks the parental origin of chromosomes, resulting in allele-specific changes in chromatin organization, transcription and replication. We report a 50-60 kb domain of allele-specific replication between the gamma-aminobutyric acid receptor subunit beta 3 (GABRB3) and alpha 5 (GABRA5) genes. Replication of this domain occurs in early S phase on the maternal chromosome 15 but is delayed until the end of S phase on the paternal homologue. In contrast, the genomic regions flanking this domain exhibit paternal earlier replication in mid to late S phase. Uniparental disomy or hemizygous deletion of chromosome 15 results in altered allele-specific replication kinetics compared with normals, suggesting that allele-specific replication within the GABRB3/A5 region may be regulated by reciprocal imprints on the maternal and paternal chromosomes.Keywords
This publication has 31 references indexed in Scilit:
- PARENTAL ORIGIN OF CHROMOSOME 15 DELETION IN PRADER-WILLI SYNDROMEThe Lancet, 2003
- IGF2 is parentally imprinted during human embryogenesis and in the Beckwith–Wiedemann syndromeNature Genetics, 1993
- Relaxation of imprinted genes in human cancerNature, 1993
- Monoallelic expression of the human H19 geneNature Genetics, 1992
- Parental imprinting of the mouse H19 geneNature, 1991
- Parental imprinting of the mouse insulin-like growth factor II geneCell, 1991
- The mouse insulin-like growth factor type-2 receptor is imprinted and closely linked to the Tme locusNature, 1991
- Genetic imprinting suggested by maternal heterodisomy in non-deletion Prader-Willi syndromeNature, 1989
- Completion of mouse embryogenesis requires both the maternal and paternal genomesCell, 1984
- Development of reconstituted mouse eggs suggests imprinting of the genome during gametogenesisNature, 1984