SummaryPrader-Willi syndrome (PWS) and Angelman syndrome (AS) are two clinically distinct neurogenetic disorders arising from a loss of expression of imprinted genes within the human chromosome region 15q11-q13. Recent evidence suggests that the SNRPN gene, which is defective in PWS, plays a central role in the imprinting-center regulation of the PWS/AS region. To increase our understanding of the regulation of expression of this imprinted gene, we have developed single-cell–sensitive procedures for the analysis of expression of the SNRPN gene during early human development. Transcripts of SNRPN were detected in human oocytes and at all stages of preimplantation development analyzed. Using embryos heterozygous for a polymorphism within the ...
The Angelman/Prader-Willi syndrome (AS/PWS) domain contains at least 8 imprinted genes regulated by ...
Genomic imprinting, representing parent-specific expression of alleles at a locus, raises many quest...
Certain mammalian genes are expressed exclusively from either the paternal or the maternal chromosom...
SummaryPrader-Willi syndrome (PWS) and Angelman syndrome (AS) are two clinically distinct neurogenet...
Deletions and other abnormalities of human chromosome 15q11-q13 are associated with two developmenta...
Microdeletions of a region termed the imprinting center (IC) in chromosome 15q11-q13 have been ide...
SummaryMicrodeletions of a region termed the “imprinting center” (IC) in chromosome 15q11-q13 have b...
iii! In vitro fertilisation (IVF) potentially provides a profoundly abnormal environment for an embr...
Imprinting in 15q11-q13 is controlled by a bipartite imprinting center (IC), which maps to the SNURF...
The imprinted SNRPN locus is a complex transcrip-tional unit that encodes the SNURF and SmN polypep-...
Prader-Willi syndrome (PWS) and Angelman syndrome (AS) are distinct neurobehavioral disorders associ...
SummaryThe Prader-Willi syndrome (PWS) and the Angelman syndrome (AS) are caused by the loss of func...
BackgroundPrader-Willi syndrome (PWS) is an imprinting disorder caused by the absence of paternal ex...
The Prader-Willi syndrome (PWS) and the Angelman syndrome (AS) are caused by the loss of function of...
In vitro fertilisation (IVF) potentially provides a profoundly abnormal environment for an embryo. S...
The Angelman/Prader-Willi syndrome (AS/PWS) domain contains at least 8 imprinted genes regulated by ...
Genomic imprinting, representing parent-specific expression of alleles at a locus, raises many quest...
Certain mammalian genes are expressed exclusively from either the paternal or the maternal chromosom...
SummaryPrader-Willi syndrome (PWS) and Angelman syndrome (AS) are two clinically distinct neurogenet...
Deletions and other abnormalities of human chromosome 15q11-q13 are associated with two developmenta...
Microdeletions of a region termed the imprinting center (IC) in chromosome 15q11-q13 have been ide...
SummaryMicrodeletions of a region termed the “imprinting center” (IC) in chromosome 15q11-q13 have b...
iii! In vitro fertilisation (IVF) potentially provides a profoundly abnormal environment for an embr...
Imprinting in 15q11-q13 is controlled by a bipartite imprinting center (IC), which maps to the SNURF...
The imprinted SNRPN locus is a complex transcrip-tional unit that encodes the SNURF and SmN polypep-...
Prader-Willi syndrome (PWS) and Angelman syndrome (AS) are distinct neurobehavioral disorders associ...
SummaryThe Prader-Willi syndrome (PWS) and the Angelman syndrome (AS) are caused by the loss of func...
BackgroundPrader-Willi syndrome (PWS) is an imprinting disorder caused by the absence of paternal ex...
The Prader-Willi syndrome (PWS) and the Angelman syndrome (AS) are caused by the loss of function of...
In vitro fertilisation (IVF) potentially provides a profoundly abnormal environment for an embryo. S...
The Angelman/Prader-Willi syndrome (AS/PWS) domain contains at least 8 imprinted genes regulated by ...
Genomic imprinting, representing parent-specific expression of alleles at a locus, raises many quest...
Certain mammalian genes are expressed exclusively from either the paternal or the maternal chromosom...