Abstract
Imprinting is an epigenetic modification leading to monoallelic expression of some genes, and disrupted imprinting is believed to be a barrier to human stem cell transplantation, based on studies that suggest that epigenetic marks are unstable in mouse embryonic germ (EG) and embryonic stem (ES) cells. However, stem cell imprinting has not previously been examined directly in humans. We found that three imprinted genes, TSSC5, H19, and SNRPN, show monoallelic expression in in vitro differentiated human EG-derived cells, and a fourth gene, IGF2, shows partially relaxed imprinting at a ratio from 4:1 to 5:1, comparable to that found in normal somatic cells. In addition, we found normal methylation of an imprinting control region (ICR) that regulates H19 and IGF2 imprinting, suggesting that imprinting may not be a significant epigenetic barrier to human EG cell transplantation. Finally, we were able to construct an in vitro mouse model of genomic imprinting, by generating EG cells from 8.5-day embryos of an interspecific cross, in which undifferentiated cells show biallelic expression and acquire preferential parental allele expression after differentiation. This model should allow experimental manipulation of epigenetic modifications of cultured EG cells that may not be possible in human stem cell studies.
MeSH Terms
Alleles
Animals
Cell Lineage
Cells, Cultured
DNA Methylation
Female
GC Rich Sequence
Gene Expression
Genes, Tumor Suppressor
Genomic Imprinting
Germ Cells
Humans
Insulin-Like Growth Factor II/genetics
Male
Mice
Mice, Inbred C57BL
Ribonucleoproteins, Small Nuclear/genetics
Chemicals
Ribonucleoproteins, Small Nuclear
Insulin-Like Growth Factor II
Authors & Affiliations
7 authors, click to expand affiliations / ORCID
Onyango Patrick
Institute of Genetic Medicine and Department of Medicine, Johns Hopkins University School of Medicine, 1064 Ross, 720 Rutland Avenue, Baltimore, MD 21205, USA.
Jiang Shan
Uejima Hiroshi
Shamblott Michael J
Gearhart John D
Cui Hengmi
Feinberg Andrew P
References (25)
25 references, click to expand
-
Human embryonic germ cell derivatives express a broad range of developmentally distinct markers and proliferate extensively in vitro.
Proc Natl Acad Sci U S A. 2001 Jan 2;98(1):113-8
PMID: 11134532
-
Derivation of pluripotent stem cells from cultured human primordial germ cells.
Proc Natl Acad Sci U S A. 1998 Nov 10;95(23):13726-31
PMID: 9811868
-
Epigenetic heterogeneity at imprinted loci in normal populations.
Biochem Biophys Res Commun. 2001 May 25;283(5):1124-30
PMID: 11355889
-
Loss of imprinting of insulin-like growth factor-II in Wilms' tumor commonly involves altered methylation but not mutations of CTCF or its binding site.
Cancer Res. 2001 Jul 1;61(13):4947-50
PMID: 11431321
-
Epigenetic instability in ES cells and cloned mice.
Science. 2001 Jul 6;293(5527):95-7
PMID: 11441181
-
CpG methylation regulates the Igf2/H19 insulator.
Curr Biol. 2001 Jul 24;11(14):1128-30
PMID: 11509237
-
CTCF is a uniquely versatile transcription regulator linked to epigenetics and disease.
Trends Genet. 2001 Sep;17(9):520-7
PMID: 11525835
-
Erasing genomic imprinting memory in mouse clone embryos produced from day 11.5 primordial germ cells.
Development. 2002 Apr;129(8):1807-17
PMID: 11934847
-
BORIS, a novel male germ-line-specific protein associated with epigenetic reprogramming events, shares the same 11-zinc-finger domain with CTCF, the insulator protein involved in reading imprinting marks in the soma.
Proc Natl Acad Sci U S A. 2002 May 14;99(10):6806-11
PMID: 12011441
-
Relaxation of imprinted genes in human cancer.
Nature. 1993 Apr 22;362(6422):747-9
PMID: 8385745
-
Isolation and culture of primordial germ cells.
Methods Enzymol. 1993;225:58-77
PMID: 8231873
-
Quantitation of specific transcripts by RT-PCR SNuPE assay.
PCR Methods Appl. 1994 Feb;3(4):S48-50
PMID: 7513585
-
A functional analysis of imprinting in parthenogenetic embryonic stem cells.
Development. 1994 Jun;120(6):1473-82
PMID: 8050357
-
Expression and methylation of imprinted genes during in vitro differentiation of mouse parthenogenetic and androgenetic embryonic stem cell lines.
Development. 1994 Jun;120(6):1651-60
PMID: 8050371
-
Loss of imprinting in choriocarcinoma.
Nat Genet. 1995 Feb;9(2):109-10
PMID: 7719334
-
Mouse embryonic germ (EG) cell lines: transmission through the germline and differences in the methylation imprint of insulin-like growth factor 2 receptor (Igf2r) gene compared with embryonic stem (ES) cell lines.
Development. 1994 Nov;120(11):3197-204
PMID: 7720562
-
Genetically selected cardiomyocytes from differentiating embronic stem cells form stable intracardiac grafts.
J Clin Invest. 1996 Jul 1;98(1):216-24
PMID: 8690796
-
Reversal of loss of imprinting in tumor cells by 5-aza-2'-deoxycytidine.
Cancer Res. 1997 Jan 1;57(1):48-50
PMID: 8988039
-
UBE3A/E6-AP mutations cause Angelman syndrome.
Nat Genet. 1997 Jan;15(1):70-3
PMID: 8988171
-
Human KVLQT1 gene shows tissue-specific imprinting and encompasses Beckwith-Wiedemann syndrome chromosomal rearrangements.
Nat Genet. 1997 Feb;15(2):181-5
PMID: 9020845
-
Epigenotype switching of imprintable loci in embryonic germ cells.
Dev Genes Evol. 1998 Feb;207(8):551-61
PMID: 9510550
-
Altered imprinted gene methylation and expression in completely ES cell-derived mouse fetuses: association with aberrant phenotypes.
Development. 1998 Jun;125(12):2273-82
PMID: 9584126
-
Epigenetic reprogramming of the human H19 gene in mouse embryonic cells does not erase the primary parental imprint.
Genes Cells. 1998 Apr;3(4):245-55
PMID: 9663659
-
Strain-dependent developmental relaxation of imprinting of an endogenous mouse gene, Kvlqt1.
Genomics. 1998 Nov 1;53(3):395-9
PMID: 9799609
-
Loss of imprinting in normal tissue of colorectal cancer patients with microsatellite instability.
Nat Med. 1998 Nov;4(11):1276-80
PMID: 9809551