Unregulated Expression of the Imprinted Genes H19 andIgf2r in Mouse Uniparental Fetuses*
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Summary
The results indicate that the parental specific expression of imprinted genes is not maintained in particular genes in uniparental embryos, which in turn suggests that both parental genomes are required to establish maternalspecific expression of the H19 and Igf2r genes by trans-acting mechanisms.
- Type
- article
- Published
- 2002-04-05
- Cited by
- 59
- References
- 39
- OpenAlex
- https://openalex.org/W11805093
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:34888241
Keywords
Humanities, Art
References
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- Maternal-specific methylation of the imprinted mouse Igf2r locus identifies the expressed locus as carrying the imprinting signal.
- A candidate mouse model for Prader–Willi syndrome which shows an absence of Snrpn expression
- Identification of the Meg1/Grb10 imprinted gene on mouse proximal chromosome 11, a candidate for the Silver-Russell syndrome gene.
- A mouse model for Prader-Willi syndrome imprinting-centre mutations
- Calcium oscillations and protein synthesis inhibition synergistically activate mouse oocytes
- The imprinting box of the mouse Igf2r gene
- The mouse insulin-like growth factor type-2 receptor is imprinted and closely linked to the Tme locus
- The imprinted antisense RNA at the Igf2r locus overlaps but does not imprint Mas1
- Disruption of Imprinted Expression ofU2afbp-rs/U2af1-rs1 Gene in Mouse Parthenogenetic Fetuses*
- Genomic imprinting of p57KIP2, a cyclin–dependent kinase inhibitor, in mouse
- DNA methylation and genomic imprinting.
- Identification of a new imprinted gene, Rian, on mouse chromosome 12 by fluorescent differential display screening.
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- Étude structurale et fonctionnelle d'un nouvel ARN non codant, Asgard, contrôlant l'autorenouvellement des cellules souches embryonnaires
- Genome-wide identification of coding small open reading frames: The unknown transcriptome
- Different temporal gene expression patterns for ovine pre-implantation embryos produced by parthenogenesis or in vitro fertilization.
- Restricted development of mouse triploid fetuses with disorganized expression of imprinted genes
- Long non-coding RNAs and control of gene expression in the immune system
- Distinguishing protein-coding and noncoding genes in the human genome
- Chromatin signature reveals over a thousand highly conserved large non-coding RNAs in mammals
- Generation and characterization of mouse parthenogenetic embryonic stem cells containing genomes from non‐growing and fully grown oocytes
- Conservation of IGF2-H19 and IGF2R imprinting in sheep: effects of somatic cell nuclear transfer.
- Putative imprinted gene expression in uniparental bovine embryo models.
- MicroRNA and lncRNA in Neurodegenerative Diseases
- Development and imprinted gene expression in uniparental preimplantation mouse embryos in vitro
- Noncanonical transcript forms in yeast and their regulation during environmental stress.
- Genome-wide analysis reveals distinct patterns of epigenetic features in long non-coding RNA loci
- Promoter-restricted histone code, not the differentially methylated DNA regions or antisense transcripts, marks the imprinting status of IGF2R in human and mouse.
- Activation of paternally expressed imprinted genes in newly derived germline-competent mouse parthenogenetic embryonic stem cell lines
- Analysis of Imprinted Gene Expression in Normal Fertilized and Uniparental Preimplantation Porcine Embryos
- In vivo and in vitro differentiation of uniparental embryonic stem cells into hematopoietic and neural cell types
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