• 제목/요약/키워드: H19 gene

검색결과 338건 처리시간 0.035초

Correlation between chromosome abnormalities and genomic imprinting in developing human - 1) Frequent biallelic expression of insulin-like growth factor II (IGF2) in gynogenetic Ovarian Teratomas: Uncoupling of H19 and IGF2 imprinting

  • Choi, Bo-Hwa;Lee, In-Hwan;Chun, Hyo-Jin;Kang, Shin-Sung;Chang, Sung-Ik
    • Journal of Genetic Medicine
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    • 제2권1호
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    • pp.41-47
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    • 1998
  • Human uniparental gestations such as gynogenetic ovarian teratomas provide a model to evaluate the integrity of parent-specific gene expression - i.e. imprinting - in the absence of a complementary parental genetic contribution. The few imprinted genes characterized so far include the insulin-like growth factor-2 gene (IGF2) coding for a fetal growth factor and H19 gene whose normal function is unknown but it is likely to act as an mRNA. IGF2 is expressed by the paternal allele and H19 by the maternal allele. This reciprocal expression is quite interesting because both H19 and IGF2 genes are located close to each other on chromosome 11p15.5. In situ RNA hybridization analysis has shown variable expression of the H19 and IGF2 alleles according to the tissue origin in 11 teratomas. Especially, Skin, derivative of ectoderm, is expressed conspicuously. We examined imprinting of H19 and IGF2 in teratomas using PCR and RT-PCR of exonic polymorphism. H19 and IGF2 transcript could be expressed either biallelically or monoallelically in the teratomas. Biallelic expression (i.e., loss of imprinting) of IGF2 occurred in 5 out of 6 mature teratomas and 1 out of 1 immature teratoma. Biallelic expression of H19 occurred in 4 out of 10 mature teratomas and 1 out of 1 immature teratoma. Expression levels of H19 and IGF2 transcript using the semi-quantitative RT-PCR had no relation between monoallelic and biallelic expression. Moreover, IGF2 biallelic expression did not affect allele-specificity or levels of H19 expression. These results demonstrate that both genes, H19 and IGF2, can be imprinted, expressed and regulated independently and individually of each other in ovarian teratoma.

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Single Nucleotide Polymorph isms of a 16 kb Region on Human Chromosome 11 p15.5 that Includes the H19 Gene

  • Park, Mi-Hyun;Ku, Hyeon-Jeong;Lee, Hye-Ja;Kim, Kwang-Joong;Park, Chan;Oh, Bermseok;Kimm, Ku-Chan;Lee, Jong-Young
    • Genomics & Informatics
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    • 제3권3호
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    • pp.74-79
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    • 2005
  • The H19 gene, located at human chromosome 11p15.5, is imprinted in most normal human tissues. However, imprinting is often lost in tumors suggesting H19 is a putative tumor suppressor. We analyzed the single nucleotide polymorphisms (SNPs) of a 16 kb region that includes the H19 gene and its imprinting control region (ICR) in the Korean population. To identify SNPs, we directly sequenced this region in 18 Korean subjects. We identified 64 SNPs, of which 7 were in the exons of H19, 2 were in the introns, 14 were in the 3' intergenic region and 41 were in the 5' intergenic region. Of the 64 SNPs, 21 had not previously been reported and thus appear to be unique to the Korean population. The identified SNPs of H19 in the Korean population may eventually be useful as genetic markers associated with various diseases. In this study, 7 of the 64 identified SNPs were at CTCF binding sites in the ICR and may affect regulation of H19 gene imprinting. Thus, several genetic variations of the H19 gene may be important markers in human diseases that involve genomic imprinting, including cancer.

돼지 체세포복제 35일령 태아에서 H19 메틸화 가변 영역의 DNA 메틸화 변화 (DNA Methylation Change of H19 Differentially Methylated Region (DMR) in Day 35 of Cloned Pig Fetuses)

  • 고응규;임기순;황성수;오건봉;우제석;조상래;최선호;이풍연;연성흠;조재현
    • 한국수정란이식학회지
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    • 제26권1호
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    • pp.79-84
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    • 2011
  • This study was performed to identify the differentially methylated region (DMR) and to examine the mRNA expression of the imprinted H19 gene in day 35 of SCNT pig fetuses. The fetus and placenta at day 35 of gestation fetuses after natural mating (Control) or of cloned pig by somatic cell nuclear transfer (SCNT) were isolated from a uterus. To investigate the mRNA expression and methylation patterns of H19 gene, tissues from fetal liver and placenta including endometrial and extraembryonic tissues were collected. The mRNA expression was evaluated by real-time PCR and methylation pattern was analyzed by bisulfite sequencing method. Bisulfite analyses demonstrated that the differentially methylated region (DMR) was located between -1694 bp to -1338 bp upstream from translation start site of the H19 gene. H19 DMR (-1694 bp to -1338 bp) exhibits a normal mono allelic methylation pattern, and heavily methylated in sperm, but not in oocyte. In contrast to these finding, the analysis of the endometrium and/or extraembryonic tissues from SCNT embryos revealed a complex methylation pattern. The DNA methylation status of DMR Region In porcine H19 gene upstream was hypo methylated in SCNT tissues but hypermethylated in control tissues. Furthermore, the mRNA expression of H19 gene in liver, endometrium, and extraembryonic tissues was significantly higher in SCNT than those of control (p<0.05). These results suggest that the aberrant mRNA expression and the abnormal methylation pattern of imprinted H19 gene might be closely related to the inadequate fetal development of a cloned fetus, contributing to the low efficiency of genomic reprogramming.

Allelic Characterization of IGF2 and H19 Gene Polymorphisms in Molar Tissues

  • Piyamongkol, Wirawit;Suprasert, Prapaporn
    • Asian Pacific Journal of Cancer Prevention
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    • 제17권9호
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    • pp.4405-4408
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    • 2016
  • Background: To investigate the characteristics of allelic distribution of IGF2 and H19 gene polymorphisms in molar tissues compared to normal placentas. Materials and Methods: Forty-nine specimens of molar tissues as well as 100 control normal placental tissues, delivered on the same days, were collected. Polymerase chain reaction (PCR) with restriction fragment length polymorphism (RFLP) on 2% agarose gel electrophoresis was conducted to determine the allelic distribution. The ApaI polymorphism within exon 9 of IGF2 and the RsaI polymorphism within exon 5 of H19 were employed to identify the allelic distribution of the IGF2 and H19 genes, respectively. Then the data for these genes in the molar and normal placenta tissues were compared. Results: The allelic distribution of IGF2 genes found in molar tissue were 21 (42.9%) aa (undigested), 10 (20.4%) ab (heterozygous) and 18 (36.7%) bb (digested), while in normal placenta tissue the values were 22 (22%) aa, 51 (51%) ab, and 27 (27%) bb. The allelic distribution of H19 in molar tissues was 8 (16.2%) aa (undigested), 8 (16.3%) ab (heterozygous) and 33 (67.4%) bb (digested) and in normal placental tissue was 16 (16%) aa, 36 (36%) ab and 48 (48%) bb in normal placenta tissue. These results were significantly different with P values of 0.001 and 0.037 for the allelic distribution of IGF2 and H19, respectively. Conclusions: Molar tissues showed significant differences of allelic distribution of IGF2 and H19 from normal placenta tissues.

Transcriptional activation of human GM3 synthase (hST3Gal V) gene by valproic acid in ARPE-19 human retinal pigment epithelial cells

  • Song, Na-Ree;Kim, Seok-Jo;Kwon, Haw-Young;Son, Sung-Wook;Kim, Kyoung-Sook;Ahn, Hee-Bae;Lee, Young-Choon
    • BMB Reports
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    • 제44권6호
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    • pp.405-409
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    • 2011
  • The present study demonstrated that valproic acid (VPA) transcriptionally regulates human GM3 synthase (hST3Gal V), which catalyzes ganglioside GM3 biosynthesis in ARPE-19 human retinal pigment epithelial cells. For this, we characterized the promoter region of the hST3Gal V gene. Functional analysis of the 5'-flanking region of the hST3Gal V gene revealed that the -177 to -83 region functions as the VPA-inducible promoter and that the CREB/ATF binding site at -143 is crucial for VPA-induced expression of hST3Gal V in ARPE-19 cells. In addition, the transcriptional activity of hST3Gal V induced by VPA in ARPE-19 cells was inhibited by SP600125, a c-Jun N-terminal kinase (JNK) inhibitor. In summary, our results identified the core promoter region in the hST3Gal V promoter and for the first time demonstrated that ATF2 binding to the CREB/ATF binding site at -143 is essential for transcriptional activation of hST3Gal V in VPA-induced ARPE-19 cells.

Bacillus circulans의 호산성 $\alpha$-amylase 유전자의 클로닝 및 발현 (Cloning and Expression of an Acidophilic $\alpha$-Amylase Gene from Bacillus circulans in Escherichia coli)

  • 이종석;김지연;김한복;이동석
    • 미생물학회지
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    • 제36권2호
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    • pp.112-118
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    • 2000
  • Bacillus circulans KCT3004 유래의 호산성 $\alpha$-amylase 유전자가 pUC19을 vector로 하여 대장균 내에서 클로닝 되었다. 클로닝된 5.8kb Pst I DNA절편은 pUC19내에서의 삽입방향과는 무관하게 $\alpha$-amylans보다 약40배 정도의 높은 효소활성을 나타내었다. 본 연구에서 클로닝 및 발현된 효소의 최적 pH와 온도는 각각 pH 3.6 $45^{\circ}C$였으며, $40^{\circ}C$에서 1시간 동안의 사전 열처리에도 활성의 감소를 일으키지 않았다. 이 효소는 SDS-PAG와 zymogram을 통해 분석해 본 결과 분자량은 약 55,000으로 추정되었으며 기질로 starch만을 가수분해하여 maltoriose 이상의 올리고당 분자들을 주로 생산할수 있었다.

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Genetic Polymorphisms of the Bovine NOV Gene Are Significantly Associated with Carcass Traits in Korean Cattle

  • Kim, B.S.;Kim, S.C.;Park, C.M.;Lee, S.H.;Cho, S.H.;Kim, N.K.;Jang, G.W.;Yoon, D.H.;Yang, B.S.;Hong, S.K.;Seong, H.H.;Choi, B.H.
    • Asian-Australasian Journal of Animal Sciences
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    • 제26권6호
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    • pp.780-787
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    • 2013
  • The objective of this study was to investigate single nucleotide polymorphisms (SNPs) in the bovine nephroblastoma overexpressed (NOV) gene and to evaluate whether these polymorphisms affect carcass traits in the Korean cattle population. We resequenced to detect SNPs from 24 unrelated individuals and identified 19 SNPs within the full 8.4-kb gene, including the 1.5-kb promoter region. Of these 19 SNPs, four were selected for genotyping based on linkage disequilibrium (LD). We genotyped 429 steers to assess the associations of these four SNPs with carcass traits. Statistical analysis revealed that g.7801T>C and g.8379A>C polymorphisms in the NOV gene were associated with carcass weight (p = 0.012 and 0.008, respectively), and the g.2005A>G polymorphism was associated with the back fat thickness (BF) trait (p = 0.0001). One haplotype of the four SNPs (GGTA) was significantly associated with BF (p = 0.0005). Our findings suggest that polymorphisms in the NOV gene may be among the important genetic factors affecting carcass yield in beef cattle.

Methylation Status of H19 Gene in Embryos Produced by Nuclear Transfer of Spermatogonial Stem Cells in Pig

  • Lee, Hyun-Seung;Lee, Sung-Ho;Gupta, Mukesh Kumar;Uhm, Sang-Jun;Lee, Hoon-Taek
    • Reproductive and Developmental Biology
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    • 제35권1호
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    • pp.67-75
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    • 2011
  • The faulty regulation of imprinting gene lead to the abnormal development of reconstructed embryo after nuclear transfer. However, the correlation between the imprinting status of donor cell and preimplantation stage of embryo development is not yet clear. In this study, to determine this correlation, we used the porcine spermatogonial stem cell (pSSC) and fetal fibroblast (pFF) as donor cells. As the results, the isolated cells with laminin matrix selection strongly expressed the GFR ${\alpha}$-1 and PLZF genes of SSCs specific markers. The pSSCs were maintained to 12 passages and positive for the pluripotent marker including OCT4, SSEA1 and NANOG. The methylation analysis of H19 DMR of pSSCs revealed that the zinc finger protein binding sites CTCF3 of H19 DMRs displayed an androgenic imprinting pattern (92.7%). Also, to investigate the reprogramming potential of pSSCs as donor cell, we compared the development rate and methylation status of H19 gene between the reconstructed embryos from pFF and pSSC. This result showed no significant differences of the development rate between the pFFs ($11.2{\pm}0.8%$) and SSCs ($13.3{\pm}1.1%$). However, interestingly, while the CTCF3 methylation status of pFF-NT blastocyst was decreased (36.3%), and the CTCF3 methylation status of pSSC-NT blastocyst was maintained. Therefore, this result suggested that the genomic imprinting status of pSSCs is more effective than that of normal somatic cells for the normal development because the maintenance of imprinting pattern is very important in early embryo stage.

H19 Gene Is Epigenetically Stable in Mouse Multipotent Germline Stem Cells

  • Oh, Shin Hye;Jung, Yoon Hee;Gupta, Mukesh Kumar;Uhm, Sang Jun;Lee, Hoon Taek
    • Molecules and Cells
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    • 제27권6호
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    • pp.635-640
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    • 2009
  • Testis-derived germline stem (GS) cells can undergo reprogramming to acquire multipotency when cultured under appropriate culture conditions. These multipotent GS (mGS) cells have been known to differ from GS cells in their DNA methylation pattern. In this study, we examined the DNA methylation status of the H19 imprinting control region (ICR) in multipotent adult germline stem (maGS) cells to elucidate how epigenetic imprints are altered by culture conditions. DNA methylation was analyzed by bisulfite sequencing PCR of established maGS cells cultured in the presence of glial cell line-derived neurotrophic factor (GDNF) alone or both GDNF and leukemia inhibitory factor (LIF). The results showed that the H19 ICR in maGS cells of both groups was hypermethylated and had an androgenetic pattern similar to that of GS cells. In line with these data, the relative abundance of the Igf2 mRNA transcript was two-fold higher and that of H19 was three fold lower than in control embryonic stem cells. The androgenetic DNA methylation pattern of the H19 ICR was maintained even after 54 passages. Furthermore, differentiating maGS cells from retinoic acid-treated embryoid bodies maintained the androgenetic imprinting pattern of the H19 ICR. Taken together these data suggest that our maGS cells are epigenetically stable for the H19 gene during in vitro modifications. Further studies on the epigenetic regulation and chromatin structure of maGS cells are therefore necessary before their full potential can be utilized in regenerative medicine.

위암에서 P16 및 hMLH1 유전자의 메틸화 (Methylation of P16 and hMLH1 in Gastric Carcinoma)

  • 성기영;전경화;송교영;김진조;진형민;김욱;박조현;박승만;임근우;박우배;김승남;전해명
    • Journal of Gastric Cancer
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    • 제5권4호
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    • pp.228-237
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    • 2005
  • 목적: 위암조직에서 P16과 hMLH1 유전자의 메틸화상태를 검사하여 위암의 발생과정에서의 작용과 유전자의 발현에 미치는 영향과 Helicobacter paylori균 감염여부 및 임상병리학적인자와의 연관성을 알아보고자 하였다. 대상 및 방법: 위암 신선 동결 절편조직 100예를 대상으로 유전자의 단백질 발현상태는 면역조직화학 염색을 시행하여 확인하였고. 메틸화 상태는 methylation-specific PCR(MSP)과 염기서열분석을 시행하였다. 결과: P16유전자의 메틸화는 19예(19%)에서 관찰되었고 이 중 18예(94.7%)에서 P16유전자의 단백질 발현 소실이 있어, P16 유전자의 단백질 발현 소실이 P16유전자의 메틸화와 연관이 있음을 알 수 있었다(kappa 계수=0.317, P=.0011). hMLH1 유전자의 메틸화는 27예(27%)에서 관찰되었고, 이 중 24예(8.8%)에서 hMLH1 단백의 소실이 hMLH1유전자의 메틸화와 연관이 있음을 보여주었다(kappa계수=0.675, p<0.0001). hMLH1 유전자의 메틸화는 나이, 암종의 크기, Lauren 분류와 연관성이 있었다. P16 유전자와 hMLH1 유전자 메틸화 모두 Helicobacter paylori균 감염여부와는 연관성이 없었다. 결론: 위암에서 P16 및 hMLH1 유전자의 불활성화에는 DNA 메틸화가 작용을 함을 알 수 있었고, hMLH1유전자의 메틸화는 나이, 암종의 크기, Lauren 분류와 연관이 있음을 알 수 있었다.

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