• 제목/요약/키워드: cloned placenta

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Detection of Human Taurine Transporter and Production of Monoclonal Antibody

  • An, Hye-Suk;Han, Hee-Chang;Lee, Sun-Min;Park, Taesun;Park, Kun-Koo;Kim, Ha-Won
    • 한국응용약물학회:학술대회논문집
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    • 한국응용약물학회 2001년도 추계학술대회 및 정기총회
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    • pp.102-102
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    • 2001
  • Taurine (2-ethaneaminosulfonic acid) is one of the major intracellular ${\beta}$ -amino acids in mammals and is required for a number of biological processes including membrane stabilization, osmoregulation, antioxidation, detoxification, modulation of calcium flux and neurornodulation. The taurine transporter (TAUT) which contains 12 hydrophobic membrane-spanning domains has been cloned from dog kidney, rat brain, mouse brain, human thyroid, placenta and retina. In this study, The TAUT cDNA from the human intestinal epithelial cell, HT-29 was cloned and sequenced. Reverse-transcription polymerase chain reaction (RT-PCR) was performed to amplify partial cDNA encoding human intestinal TAUT. The coding region of the PCR product was 732 bp long. The primers were designed to encode highly conserved amino acid sequences near the transmembrane domains III (IPYFIFLF) and Ⅵ (KYKYNSYR) both in human and mouse. The TAUT cDNA amplified was ligated into the pGEX 4T-1 expression vector. The resulting sequence of human intestinal TAUT cDNA (Accession number of NCBI Genebank is AF346763) was identical to the sequences of the TAUTs previously determined in the human placenta and retina except 3 base pairs from that of the reported human thyroid. TAUT specific antibodies were generated to use them as biological tools in the studies of the biological role of TAUT. Peptides of 149-162 amino acid residue (14 amino acids) of the TAUT were synthesized. The synthetic peptide used in this study was LFQSFQKELPWAHC. This region was chosen not only to avoid putative glycosylation sites but also to exclude regions of known homology with GABA transporters in the extracellular hydrophilic domains. The synthetic peptide, TAUT-1 was conjugated with carrier protein, kehole lympet hemocyanin (KLH) to use as an antigen. When used for immunization on a rabbit to produce polyclonal antiserum, the conjugates elicited high -titered specific anti-TAUT-1 antibodies, which reacted well with the ovalbumin (OVA) conjugated peptides in ELISA. The KLH-conjugated peptide was also used as immunizing antigen in BALB/c mice to produce TAUT specific monoclonal antibodies. From the culture supernatant of the hybridoma, the specificity of anti-TAUT-1 monoclonal antibodies was confirmed by ELISA. Further applications of more tools in TAUT expression analysis will be performed such as western blotting and flow cytometry.

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Identification of Novel Alternatively Spliced Transcripts of RBMS3 in Skeletal Muscle with Correlations to Insulin Action in vivo

  • Lee, Yong-Ho;Tokraks, Stephen;Nair, Saraswathy;Bogardus, Clifton;Permana, Paska A.
    • 대한의생명과학회지
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    • 제15권4호
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    • pp.301-307
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    • 2009
  • Whole-body insulin resistance results largely from impaired insulin-stimulated glucose disposal in skeletal muscle. Our previous studies using differential display and quantitative real-time RT-PCR have shown that a novel cDNA band (DD23) had a higher level of expression in insulin resistant skeletal muscle and it was correlated with whole-body insulin action, independent of age, sex, and percent body fat. In this study, we cloned and characterized DD23. The DD23 sequence is part of the 3'UTR region of the RNA binding motif, single stranded interacting protein (RBMS3). We have cloned the full length cDNA for RBMS3 and identified two splice variants. These variants named DD23-L and DD23-S have 15 and 14 exons respectively and differ from RBMS3 in the 3'UTR significantly. Northern blot analyses showed that an ~8.8 kb mRNA transcript of DD23 was predominantly expressed in skeletal muscle and to a lesser extent in placenta, but not in heart, brain, lung, liver, or kidney, unlike RBMS3. Elevated expression levels of these novel alternatively spliced variants of RBMS3 in skeletal muscle may play a role in whole body insulin resistance.

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재조합 리보솜 단백질 L7/L12을 이용한 개 브루셀라병의 진단 (Diagnosis of canine brucellosis using recombinant ribosomal protein L7/L12)

  • 이향근;김종완;하윤미;허문;김지연;이기찬;강성일;정석찬
    • 대한수의학회지
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    • 제52권1호
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    • pp.25-31
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    • 2012
  • Brucella (B.) canis is mainly transmitted by direct or indirect contact with aborted fetuses and placenta. It's also known to be able to infect human, which likely results in providing veterinarians and companion animal owners for infectious risk. To develop diagnostic ELISA, we cloned and expressed rp1L gene of B. canis, which encodes the ribosomal protein L7/L12. Using this purified recombinant protein, indirect-ELISA (iELISA) was evaluated using 78 positive and 44 negative sera. The sensitivity and the specificity of iELISA were 94% and 89%, respectively. The results indicated that indirect-ELISA using recombinant ribosomal protein L7/L12 may be useful for diagnosis of canine brucellosis.

Kluyverromyces fragilis의 Alkaline Phosphatase 유전자의 구조 분석 (Structural Analysis of Alkaline Phosphatase Gen from Kluyveromyces Fragilis)

  • 박수영;황선갑;하상철;김종국;박완;홍순덕
    • 한국미생물·생명공학회지
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    • 제22권1호
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    • pp.31-36
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    • 1994
  • From the pSKH201 plasmid which had been previously cloned in our laboratory, a 3.0kbp insert DNA encoding the alkaline phosphatase of Kluyveromyces fragilis was cleaved with several restriction endonucleases and ligated int the appropriate sites of M13mp18/19 vectors and sequenced by Sanger's dideoxy chain termination method. The sequence contained a 1,638 bp open reading frame(ORP) whose similarities in nucleotide, when compared with those of Saccharomyces cerevisiae and Escherichia coli by GENETYX program, were found to be 61% and 46%, respectively. The deduced amino acid sequence consists of 546 amino acids and contains several homologous regions in the alkaline phosphatases of E. coli, S.cerevisiae and human placenta.

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말의 융모성 성선자극 호르몬의 분비와 기능 (On the Secretion and Functions of Equine Chorionic Gonadotropin)

  • Min, K.S.
    • 한국가축번식학회지
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    • 제24권2호
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    • pp.125-142
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    • 2000
  • 임신초기 말의 태반으로부터 분비되는 융모성성선자극 호르몬 (eCG)은 황체형성 (LH), 난포자극 (FSH) 및 갑상선자극 (TSH) 호르몬과 같이 알파 및 베타 단체의 비공유결합으로 구성되어져 있는 당단백질 호르몬이다. 알파단체의 아미노산 배열은 동물종내에서 동일하지만, 베타단체는 호르몬에 따라 작용의 특이성을 가지고 있다고 알려져 있다. 말의 융모성 성선자극 호르몬은 모체의 자궁내막에 침입한 태아 유래의 융모조직 (자궁내막배)에서 합성ㆍ분비되어진다. eCG 는 당단백칠 호르몬중 탄수화물 함량이 40% 이상으로 가장 많이 함유되어 있으며, 알파단체는 두 개의 N-linked 당쇄첨가 부위 (아미노산 56 및 82번), 베타단체는 13번에 1개의 N -linked 당쇄첨가 부위와 카르복실기 말단부위에 적어도 11개의 O-linked 당쇄첨가 부위를 가지고 있는 것이 특징이다. 또한, eCG 는 다른 동물에 있어서 강력한 난포자극 및 황체형성 호르몬의 기능을 가지고 있는 아주 특이한 호르몬이다. 말의 태반과 뇌하수체 조직으로부터 eCG $\alpha$$\beta$ 단체와 eFSH $\beta$ 단체의 cDNA를 cloning 하였으며, 각 단체의 mRNA 발현은 태반과 뇌하수체에서 독립적으로 조절되어진다. 따라서, eCG 의 기능 및 수용체에 대한 호르몬의 특이한 작용을 분자생물학, 생화학적인 측면에서 연구하는데 아주 흥미로운 호르몬이다. 왜 eCG 가 이러한 이중활성을 가지고 있는지에 대해서는 아직까지 구체적으로 연구된 바가 없지만, 지금까지의 eCG 연구를 종합하면, eCG 의 알파 및 베타 단체 의 cDNA 의 유전자 구조 (알파단체는 96개 아미노산 ; 베타단체는 149개아미노산) 가 밝혀짐으로서 각각의 당쇄첨가 부위에 대한 기능연구에 박차를 가하게 될 것으로 보인다. 따라서 Site-directed mutagenesis 를 활용 어느 특정부위의 당쇄 수식이 없는 유전자 재조합 eCG 에 대한 연구로 이들 당단백질 호르몬에 대한 생물학적 특성에 대해서 확실하게 밝혀질 것으로 기대하고, 이러한 연구가 계속 진행되고 있으며, 가까운 미래에 eCG 에 있어서 지금까지 의문으로 남아있는 난포자극 및 황체형성의 이중활성에 대한 당쇄의 기능이 완전히 해결될 것으로 기대한다. eCG 의 황체형성에 대한 당쇄의 기능은 본 연구팀에 의해 알파단체의 56 번 N-linked 당쇄첨가 부위가 필수불가결하다는 결과를 얻었지만, 앞으로 난포자극 활성에 미치는 당쇄의 중요성에 관해서는 현재 연구 중에 있다.

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