• 제목/요약/키워드: somatic cells nuclear transfer

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소 형질전환 복제란의 유전자 이상발현 규명 (Differential Gene Expression in the Bovine Transgenic Nuclear Trasnsfer Embryos)

  • 조종기;송봉석;용환율;이두수;구덕본;이경광;신상태
    • 한국임상수의학회지
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    • 제24권3호
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    • pp.295-299
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    • 2007
  • 체세포 핵이식을 통한 형질전환 소를 생산 시 초기 수정란 발육 시 발생하는 주요 유전자의 이상 발현을 규명을 목적으로 본 연구를 수행하였다. 형질전환 복제수정란의 낮은 발육능의 원인을 규명하기 위해 하기 위하여 단위 발생란, 체외수정란 및 형질전환 복제수정란에서 초기 배 발육에 중요한 유전자인 IFN-t, Oct4 및 Fgf4유전자의 발현량을 비교 분석하였다. RNA는 각각 10개 수정란에서 추출한 후 reverse-transcription하여 first cDNA를 합성하고 이를 가지고 실시간 중합효수 연쇄반응을 실시하였다. IFN-t유전자의 발현은 형질전환 복제란에서 유의적으로 높게 나왔다 (P<0.05).그러나 Oct4 및 Fgf4 유전자의 경우 형질전환 복제란에서 체외수정란에 비해 유의적으로 낮게 나옴을 확인하였다. 이상의 결과로, 형질전환 복제수정란의 낮은 발육능이 원인이 발육에 중요한 유전자의 이상 발현에 기인된다고 사료된다.

핵치환에 의한 cloning, stem cell, 그리고 효소 telomerase (Mammalian Cloning by Nuclear transfer, Stem Cell, and Enzyme Telomerase)

  • 한창열
    • 식물조직배양학회지
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    • 제27권6호
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    • pp.423-428
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    • 2000
  • In 1997 when cloned sheep Dolly and soon after Polly were born, it had become head-line news because in the former the nucleus that gave rise to the lamb came from cells of six-year-old adult sheep and in the latter case a foreign gene was inserted into the donor nucleus to make the cloned sheep produce human protein, factor IX, in e milk. In the last few years, once the realm of science fiction, cloned mammals especially in livestock have become almost commonplace. What the press accounts often fail to convey, however, is that behind every success lie hundreds of failures. Many of the nuclear-transferred egg cells fail to undergo normal cell divisions. Even when an embryo does successfully implant in the womb, pregnancy often ends in miscarriage. A significant fraction of the animals that are born die shortly after birth and some of those that survived have serious developmental abnormalities. Efficiency remains at less than one % out of some hundred attempts to clone an animal. These facts show that something is fundamentally wrong and enormous hurdles must be overcome before cloning becomes practical. Cloning researchers now tent to put aside their effort to create live animals in order to probe the fundamental questions on cell biology including stem cells, the questions of whether the hereditary material in the nucleus of each cell remains intact throughout development, and how transferred nucleus is reprogrammed exactly like the zygotic nucleus. Stem cells are defined as those cells which can divide to produce a daughter cell like themselves (self-renewal) as well as a daughter cell that will give rise to specific differentiated cells (cell-differentiation). Multicellular organisms are formed from a single totipotent stem cell commonly called fertilized egg or zygote. As this cell and its progeny undergo cell divisions the potency of the stem cells in each tissue and organ become gradually restricted in the order of totipotent, pluripotent, and multipotent. The differentiation potential of multipotent stem cells in each tissue has been thought to be limited to cell lineages present in the organ from which they were derived. Recent studies, however, revealed that multipotent stem cells derived from adult tissues have much wider differentiation potential than was previously thought. These cells can differentiate into developmentally unrelated cell types, such as nerve stem cell into blood cells or muscle stem cell into brain cells. Neural stem cells isolated from the adult forebrain were recently shown to be capable of repopulating the hematopoietic system and produce blood cells in irradiated condition. In plants although the term$\boxDr$ stem cell$\boxUl$is not used, some cells in the second layer of tunica at the apical meristem of shoot, some nucellar cells surrounding the embryo sac, and initial cells of adventive buds are considered to be equivalent to the totipotent stem cells of mammals. The telomere ends of linear eukaryotic chromosomes cannot be replicated because the RNA primer at the end of a completed lagging strand cannot be replaced with DNA, causing 5' end gap. A chromosome would be shortened by the length of RNA primer with every cycle of DNA replication and cell division. Essential genes located near the ends of chromosomes would inevitably be deleted by end-shortening, thereby killing the descendants of the original cells. Telomeric DNA has an unusual sequence consisting of up to 1,000 or more tandem repeat of a simple sequence. For example, chromosome of mammal including human has the repeating telomeric sequence of TTAGGG and that of higher plant is TTTAGGG. This non-genic tandem repeat prevents the death of cell despite the continued shortening of chromosome length. In contrast with the somatic cells germ line cells have the mechanism to fill-up the 5' end gap of telomere, thus maintaining the original length of chromosome. Cem line cells exhibit active enzyme telomerase which functions to maintain the stable length of telomere. Some of the cloned animals are reported prematurely getting old. It has to be ascertained whether the multipotent stem cells in the tissues of adult mammals have the original telomeres or shortened telomeres.

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한우의 귀세포와 태아섬유아세포의 융합 방법과 Passage 배양이 복제수정란의 발달에 미치는 영향 (Effect of Fusion Method and Passage Culture of Hanwoo (Korean Cattle) Ear Skin and Fetal Fibroblasts on the Development of Nuclear Transfer Embryos)

  • 양병철;임기순;이상기;김세웅;김동훈;성환후;양보석
    • Reproductive and Developmental Biology
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    • 제30권1호
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    • pp.53-58
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    • 2006
  • 본 연구는 한우 성체 유래 귀세포(Korean bovine ear skin fibroblasts, KbESF)와 태아 섬유아세포(Korean bovine fetal fibroblasts, KbFF)를 이용한 체세포 복제(SCNT) 시 세포종류, 배양기간 그리고 융합방법이 핵이식 수정란의 발달에 미치는 영향을 알아보기 위하여 실시하였다. 태아 섬유아세포는 임신 51일령의 한우태아에서 분리하였고, 귀세포는 28개월령의 성우의 귀에서 채취하였다. 세포는 15주 동안 체외에서 배양하며 체세포 핵이식(SCNT)에 공시하였다. 융합방법을 비교하기 위해 챔버방법과 전극 바늘을 이용한 방법으로 핵과 세포질을 융합하였다. 세포의 doubling time은 KbFF에서 17.3시간, KbESF에서 24.3시간으로 나타났다. 핵이식 후 융합과 분할율은 needle 방법에서 보다 유의적으로 높았으나(각 각 76.1과 81.2%, P<0.05), 배반포 발달율은 차이가 없었다. KbESF의 경우, 배반포 발달율은 passage $5{\sim}9$(39.4%)와 $13{\sim}15$(40.4%)에서 passage $1{\sim}4$에 비하여 유의적으로 높았다(P<0.05). KbFF의 경우, 융합율은 passage $5{\sim}8$$13{\sim}15$에서 각각 75.0 및 76.8%로 passage $1{\sim}4$(61.5%)보다 높았으나, 난분할율과 배반포 발달율은 차이가 없었다. 결론적으로, SCNT 수정란의 발달은 융합 방법에 의해 영향을 받을 수 있으나, 계대배양 15회까지 장기배양을 한 경우는 복제수정란의 발육에 영향을 주지 않는 것으로 판단된다.

Human lactoferrin efficiently targeted into caprine beta-lactoglobulin locus with transcription activator-like effector nucleases

  • Yuan, Yu-Guo;Song, Shao-Zheng;Zhu, Meng-Ming;He, Zheng-Yi;Lu, Rui;Zhang, Ting;Mi, Fei;Wang, Jin-Yu;Cheng, Yong
    • Asian-Australasian Journal of Animal Sciences
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    • 제30권8호
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    • pp.1175-1182
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    • 2017
  • Objective: To create genetically modified goat as a biopharming source of recombinant human lacotoferrin (hLF) with transcription activator-like effector nucleases. Methods: TALENs and targeting vector were transferred into cultured fibroblasts to insert hLF cDNA in the goat beta-lactoglobulin (BLG) locus with homology-directed repair. The gene targeted efficiency was checked using sequencing and TE7I assay. The bi-allelic gene targeted colonies were isolated and confirmed with polymerase chain reaction, and used as donor cells for somatic cell nuclear transfer (SCNT). Results: The targeted efficiency for BLG gene was approximately 10%. Among 12 Bi-allelic gene targeted colonies, five were used in first round SCNT and 4 recipients (23%) were confirmed pregnant at 30 d. In second round SCNT, 7 (53%), 4 (31%), and 3 (23%) recipients were confirmed to be pregnant by ultrasound on 30 d, 60 d, and 90 d. Conclusion: This finding signifies the combined use of TALENs and SCNT can generate biallelic knock-in fibroblasts that can be cloned in a fetus. Therefore, it might lay the foundation for transgenic hLF goat generation and possible use of their mammary gland as a bioreactor for large-scale production of recombinant hLF.

Activated Leukocyte Cell Adhesion Molecule: Expression in the Uterine Endometrium during the Estrous Cycle and Pregnancy in Pigs

  • Kim, Min-Goo;Shim, Jang-Soo;Seo, Hee-Won;Choi, Yo-Han;Lee, Chang-Kyu;Ka, Hak-Hyun
    • Asian-Australasian Journal of Animal Sciences
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    • 제24권7호
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    • pp.919-928
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    • 2011
  • The pig exhibits true epitheliochorial placentation, where the fetal membrane maintains attachment throughout pregnancy but does not invade into the maternal uterine endometrium. Accordingly, the expression and function of cell adhesion molecules are very important for embryo implantation and the establishment of pregnancy. In our recent microarray analysis, we found that activated leukocyte cell adhesion molecule (ALCAM) was expressed in the uterine endometrium during pregnancy in pigs. To better understand the roles of ALCAM in the establishment and maintenance of pregnancy, we examined ALCAM expression in the uterine endometrium during the estrous cycle and pregnancy in pigs. Real-time RT-PCR analysis showed that ALCAM was differentially expressed in the uterine endometrium during the estrous cycle and pregnancy, with the highest levels on D12 of pregnancy. ALCAM mRNA was localized to the luminal and glandular epithelial cells and to the trophectoderm of conceptuses during early pregnancy. The steroid hormones estrogen and progesterone had no effect on ALCAM expression in an endometrial explant culture study. Further, we found that ALCAM expression in the uterine endometrium from gilts with somatic cell nuclear transfer-derived embryos was not different from that in gilts with embryos from natural mating. ALCAM was expressed in a pregnancy stage- and cell type-specific manner in the uterine endometrium and conceptuses during pregnancy. These findings suggest that ALCAM may play a role in the establishment of pregnancy. Further analysis of ALCAM will provide insight into the implantation process and establishment of pregnancy in pigs.

후성 유전학적 리프로그래밍과 클로닝 (Epigenetic Reprogramming and Cloning)

  • 한용만;강용국;구덕본;이경광
    • 한국발생생물학회지:발생과생식
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    • 제7권2호
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    • pp.61-68
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    • 2003
  • 포유동물의 초기 발생과정 중 접합체가 전능성이나 다능성을 가지기 위해서는 전반적인 DNA 메틸화를 포함하는 후성 유전학적 리프로그래밍의 복잡한 과정을 거쳐야만 한다. 본 연구팀에서는 공여핵의 후성 유전학적 리프로그래밍 과정을 조사하기 위하여 소 복제수정란에서 메틸화 양상을 분석하였다. 복제수정란의 비정상적인 메틸화 양상이 다양한 반복염기서열에서 관찰되었지만 single-copy유전자들의 염기서열은 정상적인 메틸화 양상을 보여주었다. 전반적으로 복제수정란의 전반적인 메틸화 상태는 정상수정란과 완전히 다른 양상을 보여주었다. 또한 복제 배반포의 영양외배엽세포에서 특이적으로 높은 메틸화 수준은 현 복제동물에서 빈번히 나타나는 불완전한 태반형성에 작용할 수 있을 것이다. 결론적으로 복제수정란의 비정상적 발생은 공여핵의 불완전한 후성 유전학적 리프로그래밍에 기인할 수 있다는 사실을 제시하게 되었다. 이러한 공여핵의 후성 유전학적 과정의 이해는 복제수정란의 비정상적 발생을 보다 분명히 밝힐 수 있을 것이다.

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체세포에 있어서 Knock-in 벡터 상동영역 구조에 따른 Knock-in 효율 (Knock-in Efficiency Depending on Homologous Arm Structure of the Knock-in Vector in the Bovine Fibroblasts)

  • 김세은;박다솜;구덕본;강만종
    • Reproductive and Developmental Biology
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    • 제41권1호
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    • pp.7-16
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    • 2017
  • The knock-in efficiency in the fibroblast is very important to produce transgenic domestic animal using nuclear transfer. In this research, we constructed three kinds of different knock-in vectors to study the efficiency of knock-in depending on structure of knock-in vector with different size of homologous arm on the ${\beta}-casein$ gene locus in the somatic cells; DT-A_cEndo Knock-in vector, DT-A_tEndo Knock-in vector I, and DT-A_tEndo Knock-in vector II. The knock-in vector consists of 4.8 kb or 1.06 kb of 5' arm region and 1.8 kb or 0.64 kb of 3' arm region, and neomycin resistance gene(neor) as a positive selection marker gene. The cEndo Knock-in vector had 4.8 kb and 1.8 kb homologous arm. The tEndo Knock-in vector I had 1.06 kb and 0.64 kb homologous arm and tEndo Knock-in vector II had 1.06 kb and 1.8 kb homologous arm. To express endostatin gene as transgene, the F2A sequence was fused to the 5' terminal of endostatin gene and inserted into exon 7 of the ${\beta}-casein$ gene. The knock-in vector and TALEN were introduced into the bovine fibroblast by electroporation. The knock-in efficiencies of cEndo, tEndo I, and tEndo II vector were 4.6%, 2.2% and 4.8%, respectively. These results indicated that size of 3' arm in the knock-in vector is important for TALEN-mediated homologous recombination in the fibroblast. In conclusion, our knock-in system may help to create transgenic dairy cattle expressing human endostatin protein via the endogenous expression system of the bovine ${\beta}-casein$ gene in the mammary gland.

Production of Thrombopoietin Gene Targeted Clones by Homologous Recombination at $\beta$-casein Locus of Primary Bovine Ear Skin Fibroblasts

  • Mira Chang;Oh, Keon-Bong;Lee, Kyung-Kwang;Han, Yong-Mahn
    • 한국발생생물학회:학술대회논문집
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    • 한국발생생물학회 2003년도 제3회 국제심포지움 및 학술대회
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    • pp.86-86
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    • 2003
  • Research has been in progress for more than a decade to production of useful proteins by genetic modification in cattle. However, the levels of protein production in transgenic cattle have been reported very low. To enhance protein production in transgenic animal, we tried homologous recombination to donor cells for production of transgenic clone cattle through nuclear transfer procedure. Thus, we constructed the two targeting vectors of human thrombopoietin (TPO) at bovine $\beta$-casein locus using homologous recombination with 13.6 kb and 9.6 kb homology. In two targeting vectors, positive selection was through the neomycin resistance gene and negative selection was by the diphtheria toxin (DT). Gene targeting was attempted in bovine embryonic fibroblasts (bEF) and bovine ear skin fibroblasts (bESF). To determine the most appropriate concentration of neomycin for bEF and bESF, G4l8 resistance was confirmed by culturing the cells in various concentrations of the drug and both of the cells were optimally selected at $900 \mu g/ml$ of neomycin. The transfected bEF and bESF by the targeting vectors were colonized efficiently at the ratio of DNA to transfection reagent such as $4 \mu g$:2 ${mu}ell$ and $1 \mu g$:$2 \mu l$. Comparing number of healthy clones from passage 4 to passage 8, bESF (17%) persist in culture for much longer than bEF (6%). The two gene-targeted bESF clones of 30 random-integrated clones with 9.6 kb homology length were confirmed, however, nothing was out of 72 random integration clones with 13.6 kb homology length, The DT also worked more efficiently in clones transfected with the vector of 9.6 kb homology length. Our data suggests that the choice of donor cell for long culture period should be considered to obtain targeted cell clone, and the gene-targeting frequency and the DT working efficiency are dependent on the length of target homology.

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Demecolcine 처리에 의한 탈핵과 수핵란 세포질의 세포 주기가 소 핵이식란의 발육에 미치는 영향 (Effect of Demecolcine-Assisted Enucleation and Recipient Cell Cycle Stage on the Development of Nuclear Transfer Bovine Embryos)

  • 백진주;박춘근;양부근;김정익;정희태
    • Reproductive and Developmental Biology
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    • 제29권3호
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    • pp.175-180
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    • 2005
  • 본 연구는 demecolcine 처리에 의한 탈핵과 수핵란 세포질의 세포 주기가 소 체세포 핵이식란의 발육에 미치는 영향을 검토하였다. 체외에서 $16\~20$시간 성숙배양된 난자를 극체 방출 유무 및 MI, MII기 난자로 구분하여 $0.4\;\muL/mL$ demecolcine으로 40분간 처리 후 염색체 부위가 돌출된 난자는 탈핵 후 핵이식에 공시하였다. 소의 귀 피부 세포를 탈핵란에 이식하여 전기융합과 활성화 처리(Ca-ionophore+DMAP)를 거쳐 체외 배양하였다. Demecolcine처리 후 $86.2\%$의 난자가 염색체 부위의 돌출을 보여 이 중 $98.8\%$가 탈핵에 성공하였다. Demecolcine은 핵이식란의 발육에 영향을 주지 않았다. 제1극체 방출란 유래 핵이식란의 배반포 발육율은 극체 미방출란 유래 핵이식란에 비하여 유의적으로 높았다($18.2\%\;vs.\;4.6\%\cdot$, P<0.05). 한편, MI 난자 유래 핵이식란의 분할율 및 배반포 발육율은($69.4\%$$5.9\%$) MII 난자 유래 핵이식란에 비하여 유의적으로 낮았다($96.7\%$$23.9\%$, P<0.05). 본 연구의 결과는 demecolcine 처리가 소 난자의 탈핵에 매우 효과적이며 MII기 난자가 MI기 난자에 비하여 수핵란 세포질로 더 적절하나 극체 미방출란 및 MI기 난자도 비록 제한적이기는 하지만 핵이식란의 배반포 발육을 지원할 수 있음을 보여준다.

Methylation Pattern of H19 Gene at Various Preimplantation Development Stages of In Vitro Fertilized and Cloned Porcine Embryos

  • Im, Young-Bin;Han, Dong-Wook;Gupta, Mukesh Kumar;Uhm, Sang-Jun;Heo, Young-Tae;Kim, Jin-Hoi;Park, Chan-Kyu;Lee, Hoon-Taek
    • Reproductive and Developmental Biology
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    • 제31권2호
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    • pp.83-90
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    • 2007
  • Insulin-like growth factor II (IGF2) and H19 genes are mutually imprinted genes which may be responsible for abnormalities in the cloned fetuses and offspring. This study was performed to identify putative differentially methylated regions (DMRs) of porcine H19 locus and to explore its genomic imprinting in in vitro fertilized (IVF) and somatic cell nuclear transferred (SCNT) embryos. Based on mice genomic data, we identified DMRs on H19 and found porcine H19 DMRs that included three CTCF binding sites. Methylation patterns in IVF and SCNT embryos at the 2-, 4-, $8{\sim}16$-cells and blastocyst stages were analyzed by BS (Bisulfite Sequencing)-PCR. The CpGs in CTCF1 was significantly unmethylated in the 2-cell stage IVF embryos. However, the 4- (29.1%) and $8{\sim}16$-cell (68.2%) and blastocyst (48.2%) stages showed higher methylation levels (p<0.01). On the other hand, SCNT embryos were unmethylayted ($0{\sim}2%$) at all stages of development. The CpGs in CTCF2 showed almost unmethylation levels at the 2-,4- and $8{\sim}16$-cell and blastocyst stages of development in both IVF ($0{\sim}14.1%$) and SCNT ($0{\sim}6.4%$) embryos. At all stages of development, CTCF3 was unmethylated in IVF ($0{\sim}17.3%$) and SCNT ($0{\sim}1.2%$) embryos except at the blastocyst stage (54.5%) of IVF embryos. In conclusion, porcine SCNT embryos showed an aberrant methylation pattern comprised to IVF embryos. Therefore, we suggest that the aberrant methylation pattern of H19 loci may be a reason for increased abnormal fetus after embryo transfer of porcine SCNT embryos.