• 제목/요약/키워드: cloning animal

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H-Y 항원 유전자의 cloning에 관한 연구 I. 친화성 크로마토그래피에 의한 H-Y 항원의 분리 정제 및 H-Y 항원 정량을 위한 화학발광 면역 분석법 (Molecular Cloning of H-Y Antigen Gene I. Purification of H-Y Antigen by Immunoaffinity Chromatography and Chemiluminescence Immunoassay for the Assay of H-Y Antigen)

  • 김종배;김재홍;백정미;김창규;정길생
    • 한국가축번식학회지
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    • 제15권2호
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    • pp.149-155
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    • 1991
  • 본 실험은 H-Y 항원 유전자 크로닝을 위한 기초연구로서 H-Y 항원의 특성을 규명하기 위하여 친화성 크로마토그래피에 의하여 H-Y 항원을 분리·정제하였다. 정소 추출액을 항체가 결합된 column에 결합시킨 뒤 10% acetic acid로 용출시켰다. 용출된 분획을 모아 농축한 후 HPLC와 SDS-PAGE를 실시하여 H-Y 항원의 분자량은 약 6,7000달톤 임을 알 수 있었으며 isoelectric focusing에 의하여 등전점(pI)은 5.0인 것으로 측정되었다. H-Y 항원에 대한 단일클론항체와 표지항원으로는 H-Y 항원-ABEI(aminobutylethyl isoluminol)를 사용하여 H-Y 항원 정량을 위한 화학발광면역분석법을 개발하였다. 항원항체 반응후 빛의 측정은 NaOH 존재하에서 microperoxidase/H2O2를 이용한 산화반응으로 실시하여 10초간 측정한 빛의 양을 적분하였다. H-Y 항원의 농도와 빛의 양과는 역비례하였으며 감도는 11.8ng/tube 정도이었다.

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소 바이러스성 설사병 바이러스의 유전자 재조합 DNA clone의 작성에 관한 연구 (Construction of recombinant DNA clone for bovine viral diarrhea virus)

  • 여상건
    • 대한수의학회지
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    • 제32권3호
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    • pp.389-398
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    • 1992
  • Molecular cloning was carried out on the Danish strain of bovine viral diarrhea virus(BVDV) to construct strategy for the diagnostic tools and effective vaccine of BVD afterwards. A recombinant DNA clone(No. 29) was established successfully from cDNA for viral RNA tailed with adenine homopolymer at 3'-end. $^{32}P$-labeled DNA probes of 300~1,800bp fragments, originating from the clone 29, directed specific DNA-RNA hybridization results with BVDV RNA. Recombinant DNA of the clone 29 was about 5,200bp representing 41.6% of the full length of Danish strain's RNA, and restriction sites were recognized for EcoR I, Sst I, Hin d III and Pst I restriction enzymes in the DNA fragment.

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소 바이러스성 설사병 바이러스 gp53 항원부위 유전자의 재조합 및 염기서열 연구 (Molecular cloning and nucleotide sequencing of bovine viral diarrhea virus gp53 antigenic region)

  • 여상건
    • 대한수의학회지
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    • 제35권2호
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    • pp.287-295
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    • 1995
  • Molecular cloning and nucleotide sequencing were undertaken for the RNA genome of gp53 antigenic region in cytopathic Singer strain of bovine viral diarrhea virus. The cloned cDNA was 939 nucleotides in length having a base composition of 31.0% A, 19.6% C, 25.5% G and 24.0% T. The sequence was corresponded to approximately 77.8%(817 bases) of predicted gp53 region and 122 bases after 3'end of gp53 region in the Singer strain when compared with NADL strain of known sequence. A single open reading frame was found in the sequence of 2nd frame and was deduced as encoding 312 amino acids.

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Molecular cloning and characterization of Izumo1 gene from bovine testis

  • Kim, Ekyune
    • Journal of Animal Science and Technology
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    • 제57권4호
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    • pp.16.1-16.7
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    • 2015
  • A well-characterized sperm specific protein of the Member of immunoglobulin superfamily, IZUMO1, has crucial role in fertilization by mediating sperm binding to the egg plasma membrane in the mouse. However little is known about IZUMO1 in bovine. Here, we describe the molecular cloning and expression analysis of bovine IZUMO1 (bIZUMO1). RT-PCR and Western blot analysis of the bovine tissues indicated that bIZUMO1 was specifically expressed in the testis and sperm, Furthermore, the result of our biotinylation assay from ejaculated bovine sperm strongly suggest the assumption that bIZUMO1 is localized on the cell surface. These data imply the potential role of bovine IZUMO1 in mammalian fertilization.

Aberrant Distributions of ICM Cells in Bovine Blastocysts Produced by Somatic Cell Nuclear Transfer

  • D. B. Koo;Y. K. Kang;Park, Y. H.;Park, J. S.;Kim, H. N.;D. S. Son;Y. M. Han;Lee, K. K.
    • 한국동물번식학회:학술대회논문집
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    • 한국동물번식학회 2001년도 춘계학술발표대회
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    • pp.20-20
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    • 2001
  • It has been reported that cloning cattle is inefficient. One of the problems was placental abnormality, finally resulting in fetal mortality after transfer of nuclear transfer (NT) bovine embryos. This study was focused on the allocations of embryonic cells to the inner cell mass (ICM) or to the trophectoderm(TE) in NT bovine blastocysts. Somatic cells were derived from a Day 45 fetus of gestation, individually transferred into enucleated oocytes and developed to the blastocyst stage in vitro. Differential staining was used to assess the qualify of blastocysts derived from NT, IVF and in vivo. Development rate of NT embryos to blastocysts (25.0%, 41/164) was similar to that of IVF embryos (28.7%, 49/171). The total cell number of NT blastocysts (101.3$\pm$45.9) was not different compared with that of IVF embryos (107.9$\pm$34.2, P>0.05), but was lower than in vivo embryos (122.5$\pm$21.6, P<0.05). Ratio of ICM/total cells was higher in NT embryos (51.6$\pm$ 18.6%) than in IVF and in vivo embryos (42.3$\pm$ 15.3% and 34.9$\pm$8.9%, respectively) (P<0.05). Most IVF (56.8%, 25/44) and in vivo blastocysts(80.8%, 21/26) was distributed in the proportion of ICM/total cells ranging from 20 to 40% group. However, most NT blastocysts was biased in the 40-60%(34.1%, 15/44) and >60% (31.8%, 14/44) groups. Our findings suggest that placental abnormalities or early fetal losses in the present cloning system may be due to aberrant allocation of NT embryos to the ICM cells.

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Development and pregnancy rates of Camelus dromedarius-cloned embryos derived from in vivo- and in vitro-matured oocytes

  • Son, Young-Bum;Jeong, Yeon Ik;Jeong, Yeon Woo;Olsson, Per Olof;Hossein, Mohammad Shamim;Cai, Lian;Kim, Sun;Choi, Eun Ji;Sakaguchi, Kenichiro;Tinson, Alex;Singh, Kuhad Kuldip;Rajesh, Singh;Noura, Al Shamsi;Hwang, Woo Suk
    • Animal Bioscience
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    • 제35권2호
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    • pp.177-183
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    • 2022
  • Objective: The present study evaluated the efficiency of embryo development and pregnancy of somatic cell nuclear transfer (SCNT) embryos using different source-matured oocytes in Camelus dromedarius. Methods: Camelus dromedarius embryos were produced by SCNT using in vivo- and in vitro- matured oocytes. In vitro embryo developmental capacity of reconstructed embryos was evaluated. To confirm the efficiency of pregnancy and live birth rates, a total of 72 blastocysts using in vitro- matured oocytes transferred into 45 surrogates and 95 blastocysts using in vivo- matured oocytes were transferred into 62 surrogates by transvaginal method. Results: The collected oocytes derived from ovum pick up showed higher maturation potential into metaphase II oocytes than oocytes from the slaughterhouse. The competence of cleavage, and blastocyst were also significantly higher in in vivo- matured oocytes than in vitro- matured oocytes. After embryo transfer, 11 pregnant and 10 live births were confirmed in in vivo- matured oocytes group, and 2 pregnant and 1 live birth were confirmed in in vitro- matured oocytes group. Furthermore, blastocysts produced by in vivo-matured oocytes resulted in significantly higher early pregnancy and live birth rates than in vitro-matured oocytes. Conclusion: In this study, SCNT embryos using in vivo- and in vitro-matured camel oocytes were successfully developed, and pregnancy was established in recipient camels. We also confirmed that in vivo-matured oocytes improved the development of embryos and the pregnancy capacity using the blastocyst embryo transfer method.

Hematological characteristics and endocrine profiles of cloned dromedary camels (Camelus dromedaries)

  • Young-Bum Son;Mohammad Shamim Hossein;Yeon Ik Jeong;Mina Kang;Huijeong Kim;Yura Bae;Kung Ik Hwang;Alex Tinson;Singh Rajesh;Al Shamsi Noura;Woo Suk Hwang
    • 한국동물생명공학회지
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    • 제39권1호
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    • pp.12-18
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    • 2024
  • Background: Somatic cell nuclear transfer (SCNT) is a prominent technology that can preserve superior genetic traits of animals and expand the population in a short time. Hematological characters and endocrine profiles are important elements that demonstrate the stability of the physiological state of cloned animals. To date, several studies regarding cloned camels with superior genes have been conducted. However, detailed hemato-physiological assessments to prove that cloned camels are physiologically normal are limited. In this study, We evaluated the hemato-physiological characteristics of cloned male and female dromedary camels (Camelus dromedaries). Methods: Therefore, we analyzed variations in hematological characteristics and endocrine profiles between cloned and non-cloned age-matched male and female dromedary camels (Camelus dromedaries). Two groups each of male and female cloned and non-cloned camels were monitored to investigate the differences in hemato-physiological characteristics. Results: All the animals were evaluated by performing complete blood count (CBC), serum chemistry, and endocrinological tests. We found no significant difference between the cloned and non-cloned camels. Furthermore, the blood chemistry and endocrine profiles in male and female camels before maturity were similar. Conclusions: These results suggest that cloned and non-cloned camels have similar hematological characteristics and endocrine parameters.

Cloning and characterization of a cDNA encoding a paired box protein, PAX7, from black sea bream, Acanthopagrus schlegelii

  • Choi, Jae Hoon;Han, Dan Hee;Gong, Seung Pyo
    • 한국동물생명공학회지
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    • 제36권4호
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    • pp.314-322
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    • 2021
  • Paired box protein, PAX7, is a key molecule for the specification, maintenance and skeletal muscle regeneration of muscle satellite cells. In this study, we identified and characterized the cDNA and amino acid sequences of PAX7 from black sea bream (Acanthopagrus schlegelii) via molecular cloning and sequence analysis. A. schlegelii PAX7 cDNA was comprised of 1,524 bp encoding 507 amino acids and multiple sequence alignment analysis of the translated amino acids showed that it contained three domains including paired DNA-binding domain, homeobox domain and OAR domain which were well conserved across various animal species investigated. Pairwise Sequence Alignment indicated that A. schlegelii PAX7 had the same amino acid sequences with that of yellowfin seabream (A. latus) and 99.8% identity and similarity with that of gilt-head bream (Sparus aurata). Molecular phylogenetic analysis confirmed that A. schlegelii PAX7 formed a monophyletic group with those of teleost and most closely related with those of the fish that belong to Sparidae family including A. latus and S. aurata. In the investigation of its tissue specific mRNA expression, the expression was specifically identified in skeletal muscle tissue and a weak expression was also shown in gonad tissue. The cultured cells derived from skeletal muscle tissues expressed PAX7 mRNA at early passage but the expression was not observed after several times of subculture.

한우 PPARγ 유전자의 동정과 mRNA의 발현 (Molecular Cloning and mRNA Expression of the Bovine Peroxisome Proliperator Receptor Gamma(PPARγ))

  • 정영희;이상미;박효영;윤두학;최재관;문승주;강만종
    • Journal of Animal Science and Technology
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    • 제46권1호
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    • pp.23-30
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    • 2004
  • 지방세포분화 과정에서 중추적인 역할을 한다고 보고되어지고 있는 PPAR$\gamma$ 유전자를 cloning 하기 위하여 한우 12개월 지방조직을 이용하여 Total RNA를 추출하고 RT-PCR을 수행하여 1515bp, 505 아미노산 서열을 가진 PPAR$\gamma$ 유전자를 cloning 하였다. bovine을 제외한 4종의 다른 동물과의 아미노산 서열을 비교한 결과 모두 90% 이상의 상동성을 나타내었다. 특히 NCBl에 보고된 Norwegian cattle PPAR$\gamma$ (NCBI Accession No. O18971)의 아미노산 서열과 비교한 결과 99.2%의 상동성을 나타내었으며 아미노산 서열중 81번째 이소루신, 140번째 아르기닌, 157번째 글루탐산, 486번째 리신이 각각 트레오닌, 트립토판, 글리신, 이소루신으로 치환된 상태의 아미노산 서열을 나타내었다. 특히 nuclear hormone receptor의 DNA binding domain 영역에 포함 되는 140번째, 157번째 아미노산의 치환은 앞으로 한우PPAR$\gamma$ 유전자가 조절하는 다른 유전자와의 관계를 밝히는데 매우 중요한 점이 될 것으로 사료되어진다. 한우 PPAR$\gamma$ 의 발현은 지방조직에서 매우 높은 발현을 보였으며, 한우 12개월령과 30개월령 지방조직에서의 PPAR$\gamma$ 발현을 비교 분석하였을 때 12개월령에서보다 30개월령 지방조직에서 PPAR$\gamma$ 발현이 약 6배정도 높았다. 이와 같은 결과는 한우 PPAR$\gamma$ 유전자도 사람과 생쥐에서와 같이 지방분화에 관여하고 있다는 보고와 일치하는 결과라고 사료된다.

Molecular Cloning and Expression of Forkhead Transcription Factor O1 Gene from Pig Sus scrofa

  • Pang, Weijun;Sun, Shiduo;Bai, Liang;Yang, Gongshe
    • Asian-Australasian Journal of Animal Sciences
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    • 제21권4호
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    • pp.499-509
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    • 2008
  • Foxo1 plays an important role in the integration of hormone-activated signaling pathways with the complex transcriptional cascade that promotes preadipocyte differentiation of clonal cell lines from rodents. We isolated the full-length cDNA of porcine FoxO1 gene using RACE, confirmed by visual Northern blotting. The deduced amino acids indicated 94% and 90% identities with the corresponding human and mice aa. Analysis of the aa sequence, showed that it included a Forkhead domain (aa 167-247), a transmembrane structure domain (aa 90-113), a LXXLL motif (aa 469-473), and 51 Ser, 8 Thr, and 4 Tyr phosphorylation sites, indicating a potential important role for FoxO1 transcriptional activity in vivo. Using the IMpRH panel, we mapped FoxO1 gene to chromosome 11p13. Our data provide basic molecular information useful for the further investigation on the function of FoxO1 gene. Time-course analysis of FoxO1 expressions indicated that levels of mRNA and protein gradually increased from day 0 to 3, and it reached almost maximal level at day 3, then decreased from day 5 to 7 in porcine primary preadipocyte differentiation. After induction by IGF-1, GPDH activity and accumulation of lipid increased, however, expressions of FoxO1 mRNA and protein were inhibited in a dose dependent manner. These results suggest that FoxO1 takes part in porcine preadipocyte differentiation and expressions of FoxO1 were regulated by IGF-1.