• Title/Summary/Keyword: molecular cloning

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Molecular cloning, tissue distribution and quantitative analysis of two proopiomelanocortin mRNAs in Japanese flounder (Paralichthys olivaceus)

  • Kim, Kyoung-Sun;Kim, Hyun-Woo;Chen, Thomas T.;Kim, Young-Tae
    • BMB Reports
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    • v.42 no.4
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    • pp.206-211
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    • 2009
  • Proopiomelanocortin (POMC) plays an essential role in the stress response of the hypothalamic-pituitary-adrenal axis, and is the precursor of biologically active peptides such as adrenocorticotropin (ACTH), $\alpha$-melanocyte-stimulating hormone ($\alpha$-MSH), $\beta$-melanocyte-stimulation hormone ($\beta$-MSH) and $\beta$-endorphin. We have synthesized two different forms of POMC cDNA clones, POMC-I and POMC-II, from a pituitary cDNA library for Paralichthys olivaceus, or Japanese flounder. jfPOMC-I cDNA consists of 954bp and encodes a polypeptide of 216 amino acid residues, whereas jfPOMC-II consists of 971bp which encode a polypeptide of 194 amino acid residues. The high levels of jfPOMC-I and -II mRNAs detected in the pituitary tissue and moderate levels detected in the brain tissue plus our quantitative RT-PCR analysis, which showed there to be no significant difference between the levels of jfPOMC-I and -II mRNAs, indicate that there may be no functional separation between these two mRNAs in the flounder.

Expression and cDNA Cloning of klp-12 Gene Encoding an Ortholog of the Chicken Chromokinesin, Mediating Chromosome Segregation in Caenorhabditis elegans

  • Ali, M. Yusuf;Khan, M.L.A.;Shakir, M.A.;Kobayashi, K. Fukami;Nishikawa, Ken;Siddiqui, Shahid S.
    • BMB Reports
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    • v.33 no.2
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    • pp.138-146
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    • 2000
  • In eukaryotes, chromosomes undergo a series of complex and coordinated movements during cell division. The kinesin motor proteins, such as the chicken Chromokinesin, are known to bind DNA and transport chromosomes on spindle microtubles. We previously cloned a family of retrograde C-terminus kinesins in Caenorhabditis elegans that mediate chromosomal movement during embryonic development. Here we report the cloning of a C. elegans klp-12 cDNA, encoding an ortholog of chicken Chromokinesin and mouse KIF4. The KLP-12 protein contains 1609 amino acid and harbors two leucine zipper motifs. The insitu RNA hybridization in embryonic stages shows that the klp-12 gene is expressed during the entire embryonic development. The RNA interference assay reveals that, similar to the role of Chromokinesin, klp-12 functions in chromosome segregation. These results support the notion that during mitosis both types, the anterograde N-terminus kinesins such as KLP-12 and the retrograde C-terminus kinesins, such as KLP-3, KLP-15, KLP-16, and KLP-17, may coordinate chromosome assembly at the metaphase plate and chromosomal segregation towards the spindle poles in C. elegans.

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Isolation of Xenopus FGF-8b and Comparison with FGF-8a

  • Shim, Sangwoo;Bae, Narina;Park, Sang Yoon;Kim, Won-Sun;Han, Jin-Kwan
    • Molecules and Cells
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    • v.19 no.3
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    • pp.310-317
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    • 2005
  • The Xenopus FGF-8a and FGF-8b isoforms have been reported to be neural crest and neuronal inducers, respectively. However, cloning of Xenopus FGF-8b (XFGF-8b) has not been reported previously and the two isoforms do not seem to have been clearly distinguished in Xenopus experiments. Here, we describe the cloning and expression of XFGF-8b and compare the effects of the two isoforms. XFGF-8b has an 11 amino acid insert in its N-terminal region compared with XFGF-8a. Both isoforms are expressed in the anterior neural regions of the early embryo, and in the apical ectodermal ridge of limb buds and tips of growing digits in the larval stages. However, XFGF-8b is more abundant than XFGF-8a throughout early development. The two isoforms are also regulated in similar fashion by retinoic acid in early development. However, although both XFGF-8a and XFGF-8b induce ectopic neurogenesis, only XFGF-8a appears to be involved in neural crest induction.

Cloning and Nucleotide Sequencing of a Partial Glutamate Decarboxylase Gene from Arabidopsis thaliana cDNA Library (애기장대 cDNA library로부터 Glutamate Decarboxylase 유전자의 부분 클로닝 및 서열분석)

  • 오석흥;최원규;최동성
    • KSBB Journal
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    • v.16 no.1
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    • pp.36-40
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    • 2001
  • In order to study the molecular mechanism of $\gamma$-aminobutyric acid (GABA) production in plants, we cloned and sequenced a partial glutamate decarboxylase (GAD) cDNA from the Arabidopsis thaliana cDNA library, using primers targeted at highly conserved sequences of the petunia GAD gene. The cDNA fragment was inserted into TA cloning vector with T7 promoter and the recombinant plasmid obtained was used to transform E. coli. The plasmid DNA purified from the transformed E. coli was digested with EcoRI and the presence of the insert was confirmed. Nucleotide sequence analysis showed that the fragment is a partial Arabidopsis thaliana GAD gene and that the sequence showed 98% and 78% identity to the region of the putative Arabidopsis thaliana GAD sequences deposited in GenBank, Accession nos: U46665 and U10034, respectively. The amino acid sequence deduced from the partial Arabidopsis thaliana GAD gene showed 99% and 91% identities to the GAD sequences deduced from the genes of the U46665 and U10034, respectively. The partial cDNA sequence determined may facilitate the study of the molecular mechanism of GABA metabolism in plants.

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Positional Cloning and Phenotypic Characterization of a New Mutant Mouse with Neuronal Migration Abnormality

  • Park, Chankyu;Ackerman, Susan-L
    • Proceedings of the Korean Society of Developmental Biology Conference
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    • 2001.10a
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    • pp.14-17
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    • 2001
  • Positional clonging (map-based cloning) of mutations or genetic variations has been served as an invaluable tool to understand in-vivo functions of genes and to identify molecular components underlying phenotypes of interest. Mice homozygous for the cerebellar deficient folia (cdf) mutation are ataxic, with cerebellar hypoplasia and abnormal lobulation of the cerebellum. In the cdf mutant cerebellum approximately 40% of Purkinje cells are ectopically located within the white matter and the inner granule cell layer (IGL). To identify the cdf gene, a high-resolution genetic map for the cdf-gene-encompassing region was constructed using 1997 F2 mice generated from C3H/HeSnJ-cdf/cdf and CAST/Ei intercross. The cdf gene showed complete linkage disequilibrium with three tightly linked markers D6Mit208, D6Mit359, and D6Mit225. A contig using YAC, BAC, and P1 clones was constructed for the cdf critical region to identify the gene. A deletion in the cdf critical region on chromosome 6 that removes approximately 150 kb of DNA selection. cdf mutant mice with the transgenic copy of the identified gene restored the brain abnormalities of the mutant mice. The positional cloning of cdf gene provides a good example showing the identification of a gene could lead to finding a new component of important molecular pathways.

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Molecular Cloning of Serratia rnarcescens Metalloprotease Gene into Escherichia coli (Serratia marcescens Metalloprotease 유전자의 대장균에로의 클로닝)

  • 김기석;이창원;이상열;이병룡;신용철
    • Microbiology and Biotechnology Letters
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    • v.20 no.3
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    • pp.280-288
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    • 1992
  • Molecular cloning of metalloprotease gene from Serratia marcescens ATCC 21074 into Escherichia coli JM109 was carried out. Chromosomal DNA of S. marcescens was completely digested with Hind111 and southern hybridization with a synthetic oligonucleotide probe revealed that a 50 KD metalloprotease gene was contained in 4.0 Kb chromosomal DNA fragment, 4.0 Kb chromosomal DNA fragments eluted from agarose gel were ligated with pUC19 and transformed into E. coli JM109. Nine positive clones were obtained from about $1\times 10^3$ transformants by colony hybridization. Their recombinant plasmids, pSPl and pSP2 have same chromosomal DNA fragments in pUC19 in opposite-orientations. When cloned metalloprotease gene was expressed in E. coli, about 52 KD precursor protein of metalloprotease was detected by western blot analysis from E. coli harboring a recombinant plasmid pSP2. Plasmid pSP2 showed no protease activities in E. coli but overproduced the active metalloprotease in S. rnarcescens ATCC 27117.

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Cloning and Expression of the Extracellular $\beta$-lactamase gene from streptomyces sp. SMF13 in streptomyces lividans

  • Rak, Choi-Sang;Lee, Kye-Joon
    • Korean Journal of Microbiology
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    • v.30 no.3
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    • pp.149-153
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    • 1992
  • Cloning of the gene encoding extracellular .betha.-lactamase from Streptomyces sp. SMF13 in a plasmid pIJ702 and expression of the gene in Streptomyces invidans were carried out. Optimal conditions for the formation of protoplasts of S.lividans and the regeneration of the protoplasts were evaluated. Streptomyces sp. SMF-13 was selected as a donor strain of .betha.-lactamase gene and totla DNA of the strain was partially digested with Sau3A I. DNA fragments ranged from 4kb to 10 kb were ligated to pIJ702 AT Bgl II site and then the ligated DNAs were transformed to the protoplasts of S, livivans. The transformation efficiency was $2 *10^{3}$ .$\mu$g DNA for the ligated DNA mixture. One colony among a thousand colonies regenerated showed extracellular .betha.-lactamase and the size of the inserted DNA fragment was estimated to be 3.94 kb. The .betha.-lactamase activity in the culture broth of the recombinant strain was maximum at 3 days culture to be 1.0 unit/ml.

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Novel Vectors for the Convenient Cloning and Expression of In Vivo Biotinylated Proteins in Escherichia coli

  • Cho, Eun-Wie;Park, Jung-Hyun;Na, Shin-Young;Kim, Kil-Lyong
    • BMB Reports
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    • v.32 no.5
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    • pp.497-501
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    • 1999
  • Biotinylation of recombinant proteins is a powerful tool for the detection and analysis of proteins of interest in a large variety of assay systems. The recent development of in vivo biotinylation techniques in E. coli has opened new possibilities for the production of site-specifically biotinylated proteins without the need for further manipulation after the isolation of the recombinantly expressed proteins. In the present study, a novel vector set was generated which allows the convenient cloning and expression of proteins of interest fused with an N-terminal in vivo biotinylated thioredoxin (TRX) protein. These vectors were derived from the previously reported pBIOTRX vector into which was incorporated part of the pBluescript II+phagemid multiple cloning site (MCS), amplified by PCR using a pair of sophisticated oligonucleotide primers. The functionality of these novel vectors was examined in this system by recombinant expression of rat transforming growth factor-$\beta$. Western-blot analysis using TRX-specific antibodies or peroxidase-conjugated streptavidin confirmed the successful induction of the fusion protein and the in vivo conjugation of biotin molecules, respectively. The convenience of molecular subcloning provided by the MCS and the effective in vivo biotinylation of proteins of interest makes this novel vector set an interesting alternative for the production of biotinylated proteins.

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Molecular Cloning of Pseudomonas sp.Inulinase Gene and its Expresstion in E. coli (Pseudomonas sp. Inulinase 유전자의 클로닝 및 Escherichia coli에서의 발현)

  • 엄수정;권영만;최용진
    • Microbiology and Biotechnology Letters
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    • v.23 no.5
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    • pp.550-555
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    • 1995
  • A strain of Pseudomonas sp. isolated from soil was shown to produce a high level of extracellular endo-inulinase. In this work, the endo-inulinase gene (inu1) of the bacterial strain was cloned into the plasmid pBR322 by using EcoRI restriction endonuclease and E. coli HB101 as a host strain. One out of 7, 000 transformants obtained from the above cloning experiment formed a clear zone around its colony on the selective medium supplemented with 2.0% inulin after a prolonged incubation at 37$\circ$C and subsequent cold shock treatment. The functional clone was found to carry a recombinant plasmid (pKMG50) with a 3.7 kb genomic insert containing the genetic information for the inulinase activity. The inulinase from E. coli HB101/pKMG50 was proved to be an endo-acting enzyme and produced constitutively in the recombinant E. coli cells. Zymogram of the enzyme from the recombinant cells with inulin substrate indicated that the molecular mass of the active protein was 190 Kd, while that of the endo-inulinase from the Pseudomonas strain was 170 Kd. This size discrepancy suggested that the inulinase from the recombinant E. coli HB101 cells might be the initial product of translation, not the mature form produced in the strain of Pseudomonas sp..

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