• 제목/요약/키워드: Transgenic animal

검색결과 533건 처리시간 0.019초

형질전환 생쥐에서 Antisense 비만유전자의 발현 (Expression of Antisense Mouse Obese Gene in Transgenic Mice)

  • 권범섭;홍권호;장정원;이훈택;정길생
    • 한국가축번식학회지
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    • 제24권4호
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    • pp.419-428
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    • 2000
  • 랩틴은 지방세포의 비만유전자에서 분비되는 포식인자로써 음식섭취, 에너지대사, 체중, 번식생리 및 신경호르몬 분비를 조절하는 역할을 한다. 본 연구는 antisense 비만유전자를 발현하는 형질전환 생쥐를 생산하기 위하여 실시하였다. 먼저 랩틴을 분비하는 지방세포에서 RNA 를 추출한 후 역전사 PCR을 실시하여 303 bp의 anti I과 635 bp의 anti II cDNA 들을 합성하였다. 이러한 cDNA 들을 지방세포 특이적 발현 프로모터인 aP2 프로모터와 SV40 poly(A) 사이에 역방향으로 결합하여 미세주입용 유전자를 구축하였다. 생쥐의 수정란전핵에 antisense 비만유전자를 미세 주입하여 14 마리의 형질전환 생쥐를 생산하였으며, anti I 을 지닌 4 마리의 형질전환 생쥐와 anti II를 지닌 5마리의 형질전환 생쥐계통을 확립하였다. 그리고 형질전환 생쥐의 지방세포를 추출하여 RT -PCR을 실시한 결과 antisense 비만유전자 mRNA발현을 확인하였다. 따라서, 본 연구에서 생산된 형질전환생쥐는 생체 랩틴저하에 의해 비만을 일으키는 질환모텔동물로써의 사용가능성을 나타내었다.

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Human 성장호르몬을 도입한 Transgenic Rats의 작출과 번식표현형에 관한 연구 I. mWAP/hGH을 도입한 Rat의 Endogenous GH분비 변화와 성성숙에 미치는 영향 (Studies on Phenotype of Reproduction and Production of Human Growth Hormone(hGH) with Transgenic Rats I. Changes in Endogenous Grwoth Hormone Secretion and Onset of Puberty in hGH Transgenic Rats)

  • 장규태;김성현;성환후;주학진;박미령;윤창현
    • 한국가축번식학회지
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    • 제22권2호
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    • pp.127-136
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    • 1998
  • A chimeric gene comprising murine whey acidic protein(mWAP) and human growth hormone(hGH) was used to produce transgenic rats express hGH and secrete it into the blood. Two lines of transgenic rats carrying the mWAP/hGH construct were established; High line was characterized by relatively high levels of serum hGH, and low line had relatively low levels. The secretory profiles of rat GH(rGH) as well as hGH, the transgene product, were obtained in transgenic males and females of low line; both hGH and rGH serum levels were flattened with no episodic fluctuations, and the overall mean concentration of rGH was significantly lower than in normal littermates. Although the animals of High line showed an acceles, as assessed by vaginal opening and occurrence of first ovulation, advanced by 7∼8 days in both lines of animals. Accordingly, the body weight at puberty of low line transgenic females was much lower than that of normal littermates, indicating that continuous hGH expression could induce precocious puberty without enhancing the growth rate.

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형질전환 닭에서 GFP 유전자 전이 연구 (Analysis of the Foreign Gene Transmission in the GFP Transgenic Chickens)

  • 장예진;지미란;전미향;김점순;김경운;한덕우;정학재;양병철;류재규;박진기;김태완;변승준
    • 한국가금학회지
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    • 제39권3호
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    • pp.241-244
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    • 2012
  • 본 연구는 형질전환 닭에서 주입한 외래 유전자의 세대간 전이와 발현 양상을 조사하고자 하였다. 외래 유전자 전이 양상 조사는 제3세대(G2) GFP 형질전환 수탉을 최초 부계로 사용하여 최종적으로 제9세대(G8) 형질전환 닭을 연속적으로 생산하면서 GFP 유전자 전이 양상을 조사하였다. 형질전환 병아리 유전 분석은 자외선 램프 아래에서 부화한 병아리들의 날개, 부리와 다리에서 녹색형광단백질을 발현하는 병아리들만을 형질전환으로 선발하였다. 형질전환 닭에서 외래 유전자 전이율은 대략 38~58%이었다. 이는 유전자 전이가 멘델의 유전 법칙을 따르고 있음을 보여주고 있다. 연구 결과는 GFP 유전자가 유전자 침묵 없이 멘델의 유전 법칙에 따라 다음 세대로 계속 전이와 발현된다는 것을 보여 주고 있다.

Generation of Embryonic Stem Cell-derived Transgenic Mice by using Tetraploid Complementation

  • Park, Sun-Mi;Song, Sang-Jin;Choi, Ho-Jun;Uhm, Sang-Jun;Cho, Ssang-Goo;Lee, Hoon-Taek
    • 한국발생생물학회:학술대회논문집
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    • 한국발생생물학회 2003년도 제3회 국제심포지움 및 학술대회
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    • pp.121-121
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    • 2003
  • The standard protocol for the production of transgenic mouse from ES-injected embryo has to process via chimera producing and several times breeding steps, In contrast, tetraploid-ES cell complementation method allows the immediate generation of targeted murine mutants from genetically modified ES cell clones. The advantage of this advanced technique is a simple and efficient without chimeric intermediates. Recently, this method has been significantly improved through the discovery that ES cells derived from hybrid strains support the development of viable ES mice more efficiently than inbred ES cells do. Therefore, the objective of this study was to generate transgenic mice overexpressing human resistin gene by using tetrapioid-ES cell complementation method. Human resistin gene was amplified from human fetal liver cDNA library by PCR and cloned into pCR 2.1 TOPO T-vector and constructed in pCMV-Tag4C vector. Human resistin mammalian expression plasmid was transfected into D3-GL ES cells by lipofectamine 2000, and then after 8~10 days of transfection, the human resistin-expressing cells were selected with G418. In order to produce tetraploid embryos, blastomeres of diploid embryos at the two-cell stage were fused with two times of electric pulse using 60 V 30 $\mu$sec. (fusion rate : 93.5%) and cultured upto the blastocyst stage (development rate : 94.6%). The 15~20 previously G418-selected ES cells were injected into tetraploid blastocysts, and then transferred into the uterus of E2.5d pseudopregnant recipient mice. To investigate the gestation progress, two El9.5d fetus were recovered by Casarean section and one fetus was confirmed to contain human resistin gene by genomic DNA-PCR. Therefore, this finding demonstrates that tetraploid-ES mouse technology can be considered as a useful tool to produce transgenic mouse for the rapid analysis of gene function in vivo.

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Expression of Human Type II Collagen Gene in the Milk of Transgenic Mice

  • Kenji Naruse;Yoo, Seung-Kwon;Park, Yoon-Jae;Jin, Dong-Il
    • 한국동물번식학회:학술대회논문집
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    • 한국동물번식학회 2004년도 춘계학술발표대회
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    • pp.212-212
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    • 2004
  • Collagen has been widely studied for medical applications. Previous studies have shown that the bovine β-casein promoter were able to drive cell-specific and hormone-dependent expression to a mouse mammary cell line but failed to induce accurate expression to the mammary gland. of transgenic mice. (omitted)

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Phenotype Manipulation by Gene Transfer in Animals - Review -

  • Fujiwara, Y.;Park, H.-M.;Muramatsu, T.
    • Asian-Australasian Journal of Animal Sciences
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    • 제13권2호
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    • pp.244-257
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    • 2000
  • Recent progress in molecular biology has made it possible to transfer genes of interest into cells and target tissues of living animals. This enables one to manipulate phenotype of cells and whole animals in selected and intended ways. The consequence of such gene transfer attempts have been the production of various types of "transgenic" animals that cannot be classified by classical nomenclature of exclusively either "transgenic" or "nontransgenic". Emphasis was placed on characterizing two transgenic categories, i.e., "transfectgenic and somatotransgenic" and "genuine transgenic" animals basically from a view point of their use for therapeutic purposes. Current state of art and possible solutions for problems encountered at present are discussed.

Massachusetts General Hospital 미니돼지 유래 이종이식용 형질전환 돼지의 번식 특성 분석 (Reproductive Characteristic of Transgenic Massachusetts General Hospital Miniature Pigs for Xenotransplantation)

  • 지수정;이건섭;박상현;김경운;변승준;옥선아;황성수;우제석;오건봉
    • 한국수정란이식학회지
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    • 제32권3호
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    • pp.165-170
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    • 2017
  • Pigs have been extensively used as mediators of xenotransplantation research. Specifically, the Massachusetts General Hospital (MGH) miniature pig was developed to fix major histocompatibility antigens for use in xenotransplantation studies. We generated transgenic pigs for xenotransplantation using MGH pigs. However, it has not been studied yet whether these pigs show similarity of reproductive physiological characteristics to wild types of MGH miniature pig. In this study we analyzed the estrous cycles and pregnancy characteristics of wild type (WT) and transgenic MGH miniature pigs, which were ${\alpha}1,3$-galactosyltransferase (GalT) heterozygous and homozygous knock-out, and membrane cofactor protein (MCP) inserted in its locus, $GalT^{-MCP/+}$ and $GalT^{-MCP/-MCP}$ pigs. Estrous cycles of WT, $GalT^{-MCP/+}$ and $GalT^{-MCP/-MCP}$ pigs were $20.9{\pm}0.74$, $20.1{\pm}1.26$, and $17.3{\pm}0.87days$, respectively, and periods of estrous were $3.2{\pm}0.10$, $3.1{\pm}0.12$, and $3.1{\pm}0.11days$. The periods of gestation of WT, $GalT^{-MCP/+}$ and $GalT^{-MCP/-MCP}$ pigs were $114.2{\pm}0.37$, $113.3{\pm}0.67$, and $115.4{\pm}0.51days$, respectively. Litter sizes of WT, $GalT^{-MCP/+}$ and $GalT^{-MCP/-MCP}$ pigs were $4.8{\pm}0.35$, $4.8{\pm}1.11$ and $3.0{\pm}0.32$ respectively. There were no significant differences on estrous cycle, periods of estrous and gestation, and litter size among WT, $GalT^{-MCP/+}$ and $GalT^{-MCP/-MCP}$ pigs, meaning that GalT knock-out and additional expression MCP of the MGH miniature pig did not effect on reproduction traits. These results provide relevant information to establish breeding system for MGH transgenic pig, and for propagation of $GalT^{-MCP/-MCP}$ pig to supply for xenotransplantation research.

Growth Rate of Transgenic Pigs and Size of Pig Hearts for Xenotransplantation to Cynomolgus Monkey

  • Ock, Sun A;Oh, Keon Bong;Hwang, Seongsoo;Lee, Jungkyu;Kim, Youngim;Moon, Sun-Woung;Kwon, Dae-Jin;Yun, Ik Jin;Park, Eungwoo
    • 한국수정란이식학회지
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    • 제29권4호
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    • pp.333-337
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    • 2014
  • To compensate for the critical shortage of human organs for allotransplantation, xenotransplantation studies using genetically modified pigs are being performed in Korea. Two types of pigs that are used are ${\alpha}1,3$-galactosyltransferase gene knockout (GalT KO) pigs and GalT KO+hCD46 (human complement regulatory protein) pigs. The present study measured the gestation time, birth weight, daily growth rate, and heart weight of both kinds of transgenic minipigs. The gestation period for both types of pigs was 117~119 days. There was no difference in the body weight of GalT KO (-/+) and GalT KO (-/-) piglets, but GalT KO+hCD46 ($-^{hCD46+}/+$) pigs were significantly heavier at birth than were GalT KO+hCD46 ($-^{hCD46+}/-^{hCD46+}$) pigs. During the first 10 weeks of life, the daily weight gain of GalT KO+hCD46 ($-^{hCD46+}/-^{CD46+}$) piglets, which are considered the optimal type for xenotransplantation, was 0.19 kg. The weight of hearts from GalT KO piglets up to two months of age was affected more by body weight than by age. Transgenic pigs showed no differences in gestation period or reproductive ability compared with normal pigs. These results comprise basic data that may be used in xenotransplantation studies and transgenic animal production in Korea.

체세포 핵치환 기술을 이용한 hGCSF와 GFP 유전자 동시발현 형질전환 소 배아 생산 (Production of hGCSF and GFP Co-Expressed Transgenic Cow Embryo by Somatic Cell Nuclear Transfer Technique)

  • 양정석;조소영;구본철;허영태;이수민;강만종;송혁;고대환;엄상준
    • 한국수정란이식학회지
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    • 제30권3호
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    • pp.219-224
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    • 2015
  • The purpose of this study is to develop transgenic cell line expressing targeted human granulocyte colony stimulating factor (hGCSF) and green fluorescence protein (GFP) genes as well as production of Somatic Cell Nuclear Transfer (SCNT) embryos derived from co-expressed transgenic donor cells. Constructed pPiggy-mWAP-hGCSF-EF1-GFP vector was chemically transfected into bovine fetus cells and then, only GFP expressed cells were selected as donor cells for SCNT. Cleavage and blastocyst rates of parthenogenetic, SCNT embryos using non-TG cell and hGCSF-GFP dual expressed SCNT embryos were examined (cleavage rate: $78.0{\pm}2.8$ vs. $73.1{\pm}3.2$ vs. $70.4{\pm}4.3%$, developmental rate: $27.2{\pm}3.2$ vs. $21.9{\pm}3.1$ vs. $17.0{\pm}2.9%$). Result indicated that cleavage and blastocyst rates of TG embryos were significantly lower (P<0.05) than those of parthenogenetic and non-TG embryos, respectively. In this study, we successfully produced hGCSF-GFP dual expressed SCNT embryos and cryopreserved to produce transgenic cattle for bioreactor system purpose. Further process of our research will transfer of transgenic embryos to recipients and production of hGCSF secreting cattle.

Tumorigenesis of Transgenic Mice Induced by Mouse Vasopressin-SV40 T Hybrid Oncogene

  • Lee, Eun-Ju;Kim, Myoung-Ok;Kim, Sung-Hyun;Park, Jun-Hong;Park, Jung-Ok;Cho, Kyong-In;Park, Hum-Dai;Ryoo, Zae-Young
    • 한국동물번식학회:학술대회논문집
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    • 한국동물번식학회 2002년도 춘계학술발표대회 발표논문초록집
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    • pp.92-92
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    • 2002
  • The neuropeptide vasopressin (VP) is a nine- amino acid hormone synthesized as preprohormone in the cell bodies of hypothalamic magnocellular neurons. The tumor in magnocellular neurons of the hypothalamus is associated with disfunctions of the cell bodies, leading to the diabetes insipidus. In order to produce the disease models with a defect in VP synthesis and its secretion, we have produced the transgenic mice regulated by VP constructs containing 3.8 kbp of the 5'flanking region and all the exons and introns in the mouse VP gene, which was fused at the end of exon 3 to a SV40 Tag. The two VP-transgene constructs differed by the lengths of their VP gene 3' flanking regions (2.1 versus 3.6 kbp). (omitted)

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