• Title/Summary/Keyword: cloned animal

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Cloning and Characterization of Bovine 5-Cytosine DNA Methyltransferase I cDNA

  • Lee, Poongyeon;Min, Kwan-Sik;Lee, Hyun-Gi;Kim, Soon-Jeung;Chung, Hee-Kyoung;Seo, Myung-Kyu;Lee, Yun-Keun;Kim, Sung-Woo;Park, Jin-Ki
    • Proceedings of the KSAR Conference
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    • 2003.06a
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    • pp.39-39
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    • 2003
  • Methylation of DNA 5-cytosine in mammalian early embryo affects great deal in nuclear reprogramming and chromatin remodeling of developing embryo. Current efforts to clone and produce cloned animals including transgenic animals face various problems including low birth rate, irregular development, and so on. In this report, cDNA for the one of house keeping methyltransfcrase, Dnmt1 was cloned from bovine somatic tissues and was analyzed for its nucleotide sequences to investigate the structure and function of the gene in bovine early development. Nucleotide sequence of bovine Dnmt1 homologue showed 76.8% identity with that of human Dnmtl and 66.4% with mouse Dnmt1. Translated amino acid sequence showed 88.4% homology with human homologue and 75.8% homology with mouse counterpart. Three types of Dnmt1 are reported in mouse and human, and are likely present in bovine tissues. Understanding of role of Dnmt1 in bovine development may shed a light in the field of animal, especially bovine cloning.

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Endocrine Profiles and Blood Chemistry Patterns of Cloned Miniature Pigs in the Post-Puberty Period

  • Lee, Sung-Lim
    • Journal of Embryo Transfer
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    • v.29 no.2
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    • pp.119-125
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    • 2014
  • Although the majority of surviving pigs cloned by somatic cell nuclear transfer (SCNT) appear to be physiologically normal, there is a general lack of detailed hemato-physiologic studies for the period of early adulthood to substantiate this claim. In the present study, we investigated variation in blood chemistry and endocrinological parameters between mesenchymal stem cells (MSCs) derived from cloned and normal age-matched female and male miniature pigs. Cloned females and males showed normal ranges for complete blood count assessments. Biochemical assessments showed that ${\gamma}$-GGT, ALT and cholesterol levels of male and female clones were significantly (P<0.05 or P<0.01, respectively) higher than that of age-matched control miniature pigs. Variations in insulin and IGF-1 were higher in female clones than in male clones and controls. Thus, although female and male cloned miniature pigs may be physiologically similar to normal animals, or at least within normal ranges, a greater degree of physiological and endocrinological variation was found in cloned pigs. The above variation must be taken into account before considering cloned female or male miniature pigs for various biomedical applications.

Comparison of Viability, ATP and In vitro Fertilization of Boar Sperm Stored at 4℃ in the Three Different Diluents

  • Yi, Y.J.;Li, Z.H.;Kim, E.S.;Song, E.S.;Cong, P.Q.;Zhang, Y.H.;Lee, S.H.;Lee, J.W.;Park, Chang-Sik
    • Asian-Australasian Journal of Animal Sciences
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    • v.21 no.8
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    • pp.1127-1133
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    • 2008
  • This study was designed to develop a method of liquid storage of boar sperm at $4^{\circ}C$ by using the modified Beltsville F5 (BF5) diluent with bovine serum albumin (BSA) and N-acetyl-D-glucosamine. Boar sperm were stored in lactose-egg yolk and N-acetyl-D-glucosamine (LEN), BF5 and Golden-Pig liquid 4 (GPL4) diluents at $4^{\circ}C$ for 5 days and were examined for sperm viability, adenosine triphosphate (ATP) and in vitro fertilization (IVF). The percentage of sperm viability in GPL4 diluent was higher than in LEN and BF5 diluent from 1 to 5 days of storage at $4^{\circ}C$. The percentage of sperm viability steadily declined from 1 to 5 days of storage in the three different diluents. Sperm ATP in GPL4 diluent was higher than in LEN and BF5 diluents from 1 to 5 days of storage. Sperm ATP rapidly declined after 5 days of storage in the three different diluents. Porcine oocytes matured in vitro were inseminated with different sperm concentrations of liquid semen stored for 3 days in GPL4 diluent. The percentage of monospermic oocytes did not show any differences from 2.5 to $20{\times}10^5$ sperm/ml. However, the percentage of polyspermic oocytes in the sperm concentration of $2.5{\times}10^5$ sperm/ml was lower than in concentrations of 5, 10 and $20{\times}10^5$5 sperm/ml. The percentage of blastocysts from the cleaved oocytes at $2.5{\times}10^5/ml$ sperm concentration was significantly lower than at 5, 10 and $20{\times}10^5sperm/ml$ concentrations. In conclusion, GPL4 diluent can be stored at $4^{\circ}C$ for 5 days and showed higher sperm viability and sperm ATP concentration compared with LEN and BF5 diluents. Also, we found that GPL4 diluent can be used for IVF of porcine oocytes.

Analysis of TIMP-2 and Vimentin Protein Expression and Epigenetic Reprogramming in Cloned Bovine Placentae

  • Kim, Hong-Rye;Han, Rong-Xun;Lee, Hye-Ran;Yoon, Jong-Taek;Cheong, Hee-Tae;Park, Chang-Sik;Jin, Dong-Il
    • Reproductive and Developmental Biology
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    • v.31 no.2
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    • pp.97-102
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    • 2007
  • The objective of this study was to analyzed pattern of proteins expression abnormally in cloned bovine placenta. TIMP-2 protein whose function is related to extracellular matrix degradation and tissue remodeling processes was one of differentially up-regulated proteins in SCNT placenta. And one of down-regulated protein in SCNT placenta was identified as vimentin protein that is presumed to stabilize the architecture of the cytoplasm. The expression patterns of these proteins were validated by Western blotting. To evaluate how regulatory loci. of TIMP-2 and vimentin genes was programmed reprogramming in cloned placenta. the status of DNA methylation in the promoter region of TIMP-2 and vimentin genes was analyzed by sodium Bisulfite mapping. The DNA methylation results showed that there was not difference in methylation pattern of TIMP-2 and vimentin loci between cloned and normal placenta. Histone H3 acetylation state of the nucleosome was analyzed in the cloned placental and normal placenta by Western blotting. A small portion of the protein lysates were subjected to Western blotting with the antibodies against anti acetyl-Histone H3. Overall histone H3 acetylation state of SCNT placenta was significantly higher than those of normal placenta cells. It is postulated that cloned placenta at the end of gestation seems to be unusual in function and morphology of placenta via improper expression of TIMP-2 and vimentin by abnormal acetylation states of cloned genome.

A Rare and Often Unrecognized Brain Meningitis and Hepatopneumonic Congestion are a Major Cause of Sudden Death in Somatic Cloned Piglets

  • 박미령;조성근;임여정;박종주;김진회
    • Proceedings of the KSAR Conference
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    • 2003.06a
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    • pp.18-18
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    • 2003
  • In human, sudden infant death syndrome(SIDS) is synonyms for the sudden, unexpected and unexplained death of an infant. The incidence of SIDS has been estimated to be from 1 to 3%. Cloning has a relatively high rate of late abortion and early postnatal death, particularly when somatic cells are used as donors of nuclei and rates as high as 40 to 70% have been reported. However, the mechanisms for SIDS in cloned animals are not known yet. To date, few reports provide detailed information regarding phenotypic abnormality of cloned pigs. In this study, most of the cloned piglets were alive at term and readily recovered respiration. However, approximately 82% of male cloned piglets (81/22) died within a week after birth. Significant findings from histological examinations showed that 42% of somatic cloned male piglets died earlier than somatic cloned female piglets, most probably due to severe congestion of lung and liver or neutrophilic inflammation in brain, which indicates that unexpected phenotypes can appear as a result of somatic cell cloning. No anatomical defects in cloned female piglets were detected, but three of the piglets had died by diarrhea due to bacterial infection within 15 days after birth. Although most of male cloned piglets can be born normal in terms of gross anatomy, they develop phenotypic anomalies that include leydig cell hypoplasia and growth retardation post-delivery under adverse fetal environment and depigmentation of hair- and skin-color form puberty onset. This may provide a mechanism for development of multiple organ system failure in some cloned piglets. Th birth weights of male cloned pig in comparison with those of female cloned piglets are significantly reduced(0.8 vs 1.4kg) and showed longer gestational day(120 vs 114). In conclusion, brain meningitis and hepatopneumonic congestion are a major risk factor for SIDS and such pregnancy in cloned animals requires close and intensive antenatal monitoring.

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Sex Determination in Somatic and Embryonic Cells of the Pig by FISH and PCR (FISH와 PCR에 의한 돼지 체세포 및 배아세포의 성 판정)

  • Chung, Y.;Jeon, J.T.;Kim, K.D.;Lee, S.H.;Hong, K.C.
    • Korean Journal of Animal Reproduction
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    • v.20 no.3
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    • pp.323-331
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    • 1996
  • Predetermination of sex in mammalian species has many aspects of application including the prenatal diagnoses of genetic disorders in humans and sex-selected breeding programs in the animal industry. Embryos sexing can be carried out using the polymerase chain reaction (PCR) to amplify specific sequences present in the sex chromosomes, or by fluorescent in situ hybridization (FISH) of specific probes to the X and Y chromosomes. A 3.3 kb porcine male-specific DNA fragment (pEM39) was cloned previously in our laboratory. In this study, FISH and PCR methods were employed to examine if the pEM39 can be used a sex-specific DNA probes Porcine ovaries were obtained from a local slaughter house and oocytes collected. All oocytes were subjected to in vitro maturation followed by 1n vitro fertilization. Parthenogenetically activated embryos were served as a negative control. Embryonic samples were collected at the 2-cell stages and PCR was performed to analyze DNA. Among 10 embryos examined, four embryos were identified as males and six were females. The cloned male-specific DNA fragment showed male-specificity for the cells in the liver tissue and the porcine early embryos by FISH. It was also demonstrated that the cloned male-specific DNA is localized on the hetero chromatic region of the long arm in the Y chrom-osome (Yq) as shown by the FISH and karyotyping. The results suggest that the cloned male-specific DNA fragment may be useful for predetermination of sex with a few embryonic cells. The porcine male-specific sequence can be a reliable index for embryo sexing by PCR.

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

  • Ko, Yeoung-Gyu;Im, Gi-Sun;Hwang, Seong-Soo;Oh, Keon-Bong;Woo, Jae-Seok;Cho, Sang-Rae;Choi, Sun-Ho;Lee, Poong-Yeon;Yeon, Sung-Heum;Cho, Jae-Hyeon
    • Journal of Embryo Transfer
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    • v.26 no.1
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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.

Application of the modified handmade cloning technique to pigs

  • Lee, Eun Ji;Ji, Kuk Bin;Lee, Ji Hye;Oh, Hyun Ju;Kil, Tae Young;Kim, Min Kyu
    • Journal of Animal Science and Technology
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    • v.63 no.2
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    • pp.281-294
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    • 2021
  • Although somatic cell nuclear transfer (SCNT) is frequently employed to produce cloned animals in laboratories, this technique is expensive and inefficient. Therefore, the handmade cloning (HMC) technique has been suggested to simplify and advance the cloning process, however, HMC wastes many oocytes and leads to mitochondrial heteroplasmy. To solve these problems, we propose a modified handmade cloning (mHMC) technique that uses simple laboratory equipment, i.e., a Pasteur pipette and an alcohol lamp, applying it to porcine embryo cloning. To validate the application of mHMC to pig cloning, embryos produced through SCNT and mHMC are compared using multiple methods, such as enucleation efficiency, oxidative stress, embryo developmental competence, and gene expression. The results show no significant differences between techniques except in the enucleation efficiency. The 8-cell and 16-cell embryo developmental competence and Oct4 expression levels exhibit significant differences. However, the blastocyst rate is not significantly different between mHMC and SCNT. This study verifies that cloned embryos derived from the two techniques exhibit similar generation and developmental competence. Thus, we suggest that mHMC could replace SCNT for simpler and cheaper porcine cloning.

Identification of Differentially Expressed Genes Between Somatic Cell Nuclear Transfer and Normal Placenta in Cattle (소의 체세포핵이식태반과 정상태반간의 차등 발현 유전자 분석)

  • Yu, Seong-Lan;Jeong, Hang-Jin;Sang, Byung-Chan;Ryoo, Seung-Heui;Jung, Kie-Chul;Yoon, Jong-Taek;Seong, Hwan-Hoo;Jin, Dong-Il;Lee, Jun-Heon
    • Journal of Animal Science and Technology
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    • v.50 no.5
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    • pp.641-648
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    • 2008
  • There has been great success for making transgenic animals using somatic cell nuclear transfer(SCNT) up to this time. However, the success rates of the production of live transgenic animals are still very low. The current research has been carried out for delineation of differentially expressed genes between SCNT and normal placenta in cattle. In the present observations, high expression has been observed for CTSZ, LOC509426 and ELF1 genes in normal placenta. On the other hand, TIMP2, PAG1B, PAG-21, LOC782894, SERPINB6 and mKIAA2025 protein were highly expressed in SCNT placenta. Five genes, which were highly expressed in SCNT placenta, have been further investigated using semi-quantitative real-time PCR. The results were similar to that we observed using ACP. In the future, all genes affecting the SCNT and normal placenta have to be discovered and their networks will be fully investigated. The genes were identified in this study would be great help for identifying differential gene expressions in SCNT placenta.