• 제목/요약/키워드: Nucleotide binding site

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Molecular Characterization and Tissue-specific Expression of a Novel FKBP38 Gene in the Cashmere Goat (Capra hircus)

  • Zheng, X.;Hao, X.Y.;Chen, Y.H.;Zhang, X.;Yang, J.F.;Wang, Z.G.;Liu, D.J.
    • Asian-Australasian Journal of Animal Sciences
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    • 제25권6호
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    • pp.758-763
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    • 2012
  • As a member of a subclass of immunophilins, it is controversial that FKBP38 acts an upstream regulator of mTOR signaling pathway, which control the process of cell-growth, proliferation and differentiation. In order to explore the relationship between FKBP38 and mTOR in the Cashmere goat (Capra hircus) cells, a full-length cDNA was cloned (GenBank accession number JF714970) and expression pattern was analyzed. The cloned FKBP38 gene is 1,248 bp in length, containing an open reading frame (ORF) from nucleotide 13 to 1,248 which encodes 411 amino acids, and 12 nucleotides in front of the initiation codon. The full cDNA sequence shares 98% identity with cattle, 94% with horse and 90% with human. The putative amino acid sequence shows the higher homology which is 98%, 97% and 94%, correspondingly. The bioinformatics analysis showed that FKBP38 contained a FKBP_C domain, two TPR domains and a TM domain. Psite analysis suggested that the ORF encoding protein contained a leucine-zipper pattern and a Prenyl group binding site (CAAX box). Tissue-specific expression analysis was performed by semi-quantitative RT-PCR and showed that the FKBP38 expression was detected in all the tested tissues and the highest level of mRNA accumulation was detected in testis, suggesting that FKBP38 plays an important role in goat cells.

Bacillus circulans F-2의 NaCl 의존성 amylase 유전자의 DNA 염기배열 결정 (NaCl-dependent Amylase Gene From Badillus circulans F-2 Its Nucleotide Sequence)

  • 김철호;권석태;타니구치하지메;마루야마요시하루
    • 한국미생물·생명공학회지
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    • 제18권3호
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    • pp.309-316
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    • 1990
  • Bacillus circulans F-2의 생산하는 NaCl 의존성 amylase(NaCl-dependent amylase) 유전자를 함유하는 1795bp의 DNA 염기배열을 결정하였다. 본 유전자의 ORF는 총염기수 1005bp(335 아미노산)로 구성되며, 분자량 38,006의 amylase의 분자량 약 35,000과 일치하였다. 본 유전자의 상류영역(upstream region)에는 고초균(Bacillus subtiis)의 전형적인 전사발현영역(transcriptional region)과 상보적인 DNA역역이 존재하였다. 성숙단백질의 N-말단측 아미노산 배열은 Ala-Ser-Lys-Val-Gly이며, 분비에 필요한 20개의 signal 아미노산 배열을 갖는 전형적인 분비 단백질임이 확인 되었다. 한편 다른 amylase들과 비교결과, smylase 활성발현과 밀접히 관련되 있는 4개 부위의 상보성영역(homologous region)을 가지고 있었다.

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Rpi-blb2-Mediated Hypersensitive Cell Death Caused by Phytophthora infestans AVRblb2 Requires SGT1, but not EDS1, NDR1, Salicylic Acid-, Jasmonic Acid-, or Ethylene-Mediated Signaling

  • Oh, Sang-Keun;Kwon, Suk-Yoon;Choi, Doil
    • The Plant Pathology Journal
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    • 제30권3호
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    • pp.254-260
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    • 2014
  • Potato Rpi-blb2 encodes a protein with a coiled-coil-nucleotide binding site and leucine-rich repeat (CC-NBSLRR) motif that recognizes the Phytophthora infestans AVRblb2 effector and triggers hypersensitive cell death (HCD). To better understand the components required for Rpi-blb2-mediated HCD in plants, we used virus-induced gene silencing to repress candidate genes in Rpi-blb2-transgenic Nicotiana benthamiana plants and assayed the plants for AVRblb2 effector. Rpi-blb2 triggers HCD through NbSGT1-mediated pathways, but not NbEDS1- or NbNDR1-mediated pathways. In addition, the role of salicylic acid (SA), jasmonic acid (JA), and ethylene (ET) in Rpi-blb2-mediated HCD were analyzed by monitoring of the responses of NbICS1-, NbCOI1-, or NbEIN2-silenced or Rpi-blb2::NahG-transgenic plants. Rpi-blb2-mediated HCD in response to AVRblb2 was not associated with SA accumulation. Thus, SA affects Rpi-blb2-mediated resistance against P. infestans, but not Rpi-blb2-mediated HCD in response to AVRblb2. Additionally, JA and ET signaling were not required for Rpi-blb2-mediated HCD in N. benthamiana. Taken together, these findings suggest that NbSGT1 is a unique positive regulator of Rpi-blb2-mediated HCD in response to AVRblb2, but EDS1, NDR1, SA, JA, and ET are not required.

Rpi-blb2 Gene-Mediated Late Blight Resistance in Plants

  • Oh, Sang-Keun
    • 한국균학회소식:학술대회논문집
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    • 한국균학회 2015년도 추계학술대회 및 정기총회
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    • pp.26-26
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    • 2015
  • Phytophthora infestans is the causal agent of potato and tomato late blight, one of the most devastating plant diseases. P. infestans secretes effector proteins that are both modulators and targets of host plant immunity. Among these are the so-called RXLR effectors that function inside plant cells and are characterized by a conserved motif following the N-terminal signal peptide. In contrast, the effector activity is encoded by the C terminal region that follows the RXLR domain. Recently, I performed in planta functional profiling of different RXLR effector alleles. These genes were amplified from a variety of P. infestans isolates and cloned into a Potato virus X (PVX) vector for transient in planta expression. I assayed for R-gene specific induction of hypersensitive cell death. The findings included the discovery of new effector with avirulence activity towards the Solanum bulbocastanum Rpi-blb2 resistance gene. The Rpi-blb2 encodes a protein with a putative CC-NBS-LRR (a coiled-coil-nucleotide binding site and leucine-rich repeat) motif that confers Phytophthora late blight disease resistance. We examined the components required for Rpi-blb2-mediated resistance to P. infestans in Nicotiana benthamiana. Virus-induced gene silencing was used to repress candidate genes in N. benthamiana and to assay against P. infestans infections. NbSGT1 was required for disease resistance to P. infestans and hypersensitive responses (HRs) triggered by co-expression of AVRblb2 and Rpi-blb2 in N. benthamiana. RAR1 and HSP90 did not affect disease resistance or HRs in Rpi-blb2-transgenic plants. To elucidate the role of salicylic acid (SA) in Rpi-blb2-mediated resistance, we analyzed the response of NahG-transgenic plants following P. infestans infection. The increased susceptibility of Rpi-blb2-transgenic plants in the NahG background correlated with reduced SA and SA glucoside levels. Furthermore, Rpi-blb2-mediated HR cell death was associated with $H_2O_2$, but not SA, accumulation. SA affects basal defense and Rpi-blb2-mediated resistance against P. infestans. These findings provide evidence about the roles of SGT1 and SA signaling in Rpi-blb2-mediated resistance against P. infestans.

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Mutational Analysis of an Essential RNA Stem-loop Structure in a Minimal RNA Substrate Specifically Cleaved by Leishmania RNA Virus 1-4 (LRV1-4) Capsid Endoribonuclease

  • Ro, Youngtae;Patterson, Jean L.
    • Journal of Microbiology
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    • 제41권3호
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    • pp.239-247
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    • 2003
  • The LRV1-4 capsid protein possesses an endoribonuclease activity that is responsible for the single site-specific cleavage in the 5' untranslated region (UTR) of its own viral RNA genome and the formation of a conserved stem-loop structure (stem-loop IV) in the UTR is essential for the accurate RNA cleavage by the capsid protein. To delineate the nucleotide sequences, which are essential for the correct formation of the stem-loop structure for the accurate RNA cleavage by the viral capsid protein, a wildtype minimal RNA transcript (RNA 5' 249-342) and several synthetic RNA transcripts encoding point-mutations in the stem-loop region were generated in an in vitro transcription system, and used as substrates for the RNA cleavage assay and RNase mapping studies. When the RNA 5' 249-342 transcript was subjected to RNase T1 and A mapping studies, the results showed that the predicted RNA secondary structure in the stem-loop region using FOLD analysis only existed in the presence of Mg$\^$2+/ ions, suggesting that the metal ion stabilizes the stem-loop structure of the substrate RNA in solution. When point-mutated RNA substrates were used in the RNA cleavage assay and RNase T1 mapping study, the specific nucleotide sequences in the stem-loop region were not required for the accurate RNA cleavage by the viral capsid protein, but the formation of a stem-loop like structure in a region (nucleotides from 267 to 287) stabilized by Mg$\^$2+/ ions was critical for the accurate RNA cleavage. The RNase T1 mapping and EMSA studies revealed that the Ca$\^$2+/ and Mn$\^$2+/ ions, among the reagents tested, could change the mobility of the substrate RNA 5' 249-342 on a gel similarly to that of Mg$\^$2+/ ions, but only Ca$\^$2+/ ions identically showed the stabilizing effect of Mg$\^$2+/ ions on the stem-loop structure, suggesting that binding of the metal ions (Mg$\^$2+/ or Ca$\^$2+/) onto the RNA substrate in solution causes change and stabilization of the RNA stem-loop structure, and only the substrate RNA with a rigid stem-loop structure in the essential region can be accurately cleaved by the LRV1-4 viral capsid protein.

Saccharopolyspora erythraea IFO 13426으로부터 Autoregulator Receptor Protein Gene의 Cloning (Cloning of Autoregulator Receptor Gene form Saccharopolyspora erythraea IFO 13426)

  • 김현수;이경화;조재만
    • 한국미생물·생명공학회지
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    • 제31권2호
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    • pp.117-123
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    • 2003
  • 공시균인 Saccha. erythraea IFO 13426으로부터 VB-C에 의한 erythromycin 생산 유도능이 시사된 바 있으므로, 공시균으로부터 VB-C와 특이적으로 결합하는 autoregulators 및 receptor gene을 탐색하여, EM의 생산 조절 기구를 규명하고자 하였다. 탐색의 일환으로 기존의 Streptomyce속 receptor gene의 공통배열을 primer로 이용하여 PCR을 수행하였고, 예상 크기인 120bp의 단편을 pUC19 vector에 ligation하여 E. coli DH5$\alpha$에 형질전환한 후, plasmid를 분리하여 BamHI을 처리하여 2% agarose gel에 전기영동한 결과, pUC19 (2.7kbp)외에 receptor gene PCR 산물이 120bp위치에 존재하는 것을 확인하였다. 형질전환된 plasmid로 PCR을 수행하여 염기배열을 결정한 후 해석한 결과 Streptomyces sp. 유래의 receptor gene과 유사함을 확인하였다. 따라서 Saccha. erythraea IFO 13426에는 항생물질인 erythromycin의 생산에 관여한다고 추정되는 autoregulator receptor protein을 코드하는 유전자가 존재할 것으로 예상되어 120 bp의 PCR product를 probe로 이용하여 Southern 및 colony hybridization을 통하여 3.2 kbp의 SacI 단편을 가지는 plasmid(pESG)를 제작하였고, 이를 sequencing한 결과, autoregulator receptor protein 유전자가 KpnI과 SalI을 포함하는 영역에 존재한다는 것을 알 수 있었으며 이를 EsgR이라 명명하였다. 유전자 해석 결과, EsgR은 205개의 아미노산으로 구성되어 있으며, 이는 기존의 autoregulator receptor proteins과 비교시 30%이상의 상동성을 나타내었으며, 기존의 autoregulator receptor prorein들이 하부의 항생물질 생합성 유전자들의 제어를 위해 보유하고 있는 helix-turn-helix DNA binding motif를 EsgR이 보유하고 있는 점에서, EsgR은 Saccha. erythraea가 보유하는 autoregulator receptor protein을 code하는 유전자로 추정되었다.

CRP 의존성 maltose 대사 촉진 유전자 sfs4의 클로닝 및 염기배열 결정 (Nucleotide Sequence and Cloning of sfs4, One of the Genes Involved in the CRP-Dependent Expression of E. coli mal Genes.)

  • 정수열;조무제;정희태;최용락
    • Applied Biological Chemistry
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    • 제38권2호
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    • pp.111-117
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    • 1995
  • CRP (cAMP receptor protein)은 cAMP와 결합하여 cAMP-CRP 복합체를 형성하여 전사조절의 조절인자로서 작용한다. crp 유전자에 변이를 도입하여 cAMP의 비존재 상태에서 cAMP-CRP와 비슷한 기능을 가진 crp 유전자가 도입된 대장균 MK2001 (crp, cya::km)을 숙주로 사용하여 cAMP 혹은 cGMP의 비존재하에서도 mal 유전자의 발현을 촉진시키는 유전자 sfs (sugar fermentation stimulation) 수 종을 클로닝 하였다. 본 실험에서는 이미 밝혀진 nlp (Ner like protein) 유전자와 같이, sfs의 새로운 유전자를 탐색하여, 그 중 sfs4의 2126 bp 전 염기배열을 결정하고, 잠정적인 sfs4의 promoter 영역에는 CRP 단백질과의 결합 DNA 공통 염기배열(5' AAT TGTGA ACACCA TCACC CGT 3')이 존재함을 확인했다. lacZ 융합 유전자를 작성하여 TP2010R1 MK2001의 균주에서 cAMP를 첨가할 경우 각각 2.3배, 1.8배의 ${\beta}-galactosidase$ 활성이 증가하는 것으로 보아 sfs4는 cAMP-CRP에 의해 발현 조절을 받는 것으로 나타났다.

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Cloning and Characterization of an Endoglucanase Gene from Actinomyces sp. Korean Native Goat 40

  • Kim, Sung Chan;Kang, Seung Ha;Choi, Eun Young;Hong, Yeon Hee;Bok, Jin Duck;Kim, Jae Yeong;Lee, Sang Suk;Choi, Yun Jaie;Choi, In Soon;Cho, Kwang Keun
    • Asian-Australasian Journal of Animal Sciences
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    • 제29권1호
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    • pp.126-133
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    • 2016
  • A gene from Actinomyces sp. Korean native goat (KNG) 40 that encodes an endo-${\beta}$-1,4-glucanase, EG1, was cloned and expressed in Escherichia coli (E. coli) $DH5{\alpha}$. Recombinant plasmid DNA from a positive clone with a 3.2 kb insert hydrolyzing carboxyl methyl-cellulose (CMC) was designated as pDS3. The entire nucleotide sequence was determined, and an open-reading frame (ORF) was deduced. The ORF encodes a polypeptide of 684 amino acids. The recombinant EG1 produced in E. coli $DH5{\alpha}$ harboring pDS3 was purified in one step using affinity chromatography on crystalline cellulose and characterized. Sodium dodecyl sulfate-polyacrylamide gel electrophoresis/zymogram analysis of the purified enzyme revealed two protein bands of 57.1 and 54.1 kDa. The amino terminal sequences of these two bands matched those of the deduced ones, starting from residue 166 and 208, respectively. Putative signal sequences, a Shine.Dalgarno-type ribosomal binding site, and promoter sequences related to the consensus sequences were deduced. EG1 has a typical tripartite structure of cellulase, a catalytic domain, a serine-rich linker region, and a cellulose-binding domain. The optimal temperature for the activity of the purified enzyme was $55^{\circ}C$, but it retained over 90% of maximum activity in a broad temperature range ($40^{\circ}C$ to $60^{\circ}C$). The optimal pH for the enzyme activity was 6.0. Kinetic parameters, $K_m$ and $V_{max}$ of rEG1 were 0.39% CMC and 143 U/mg, respectively.

Evidence of genome duplication revealed by sequence analysis of multi-loci expressed sequence tagesimple sequence repeat bands in Panax ginseng Meyer

  • Kim, Nam-Hoon;Choi, Hong-Il;Kim, Kyung Hee;Jang, Woojong;Yang, Tae-Jin
    • Journal of Ginseng Research
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    • 제38권2호
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    • pp.130-135
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    • 2014
  • Background: Panax ginseng, the most famous medicinal herb, has a highly duplicated genome structure. However, the genome duplication of P. ginseng has not been characterized at the sequence level. Multiple band patterns have been consistently observed during the development of DNA markers using unique sequences in P. ginseng. Methods: We compared the sequences of multiple bands derived from unique expressed sequence tagsimple sequence repeat (EST-SSR) markers to investigate the sequence level genome duplication. Results: Reamplification and sequencing of the individual bands revealed that, for each marker, two bands around the expected size were genuine amplicons derived from two paralogous loci. In each case, one of the two bands was polymorphic, showing different allelic forms among nine ginseng cultivars, whereas the other band was usually monomorphic. Sequences derived from the two loci showed a high similarity, including the same primer-binding site, but each locus could be distinguished based on SSR number variations and additional single nucleotide polymorphisms (SNPs) or InDels. A locus-specific marker designed from the SNP site between the paralogous loci produced a single band that also showed clear polymorphism among ginseng cultivars. Conclusion: Our data imply that the recent genome duplication has resulted in two highly similar paralogous regions in the ginseng genome. The two paralogous sequences could be differentiated by large SSR number variations and one or two additional SNPs or InDels in every 100 bp of genic region, which can serve as a reliable identifier for each locus.

Rat Brain cDNA Library로부터 SNAP-25 유전자의 클로닝 (Cloning of SNAS-25 Gene from Rat Brain cDNA Library)

  • 조애리;지영미;유민;이순철;유관희
    • 대한의생명과학회지
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    • 제6권1호
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    • pp.11-17
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    • 2000
  • SNAP-25는 presynaptic plasma membrane에 위치하는 단백질로서 synaptic vesicle의 docking과 fusion에 있어서 매우 중요한 역할을 한다. 생쥐 SNAP-25$^{2)}$ 유전자와 99%의 높은 homology를 갖고 있는 Z2 cDNA를 probe로 사용하여 쥐의 뇌 cDNA library에서 SNAP-25유전자를 screening하였다. 그 결과 6개 의 양성 클론을 분리 해 냈으며, 이들 각각을 S1, S2, S3, S4, S5, S6으로 명명하였다. 이 중에서 생쥐 SNAP-25와 가장 높은 homology를 보여 주고 있는 S5 클론을 선택하여 염기서열을 분석하였다. 2,100 bp의 염기서열로 구성된 쥐 SNAP-25 cDNA는 206개의 아미노산을 coding하는 618 bp의 open reading frame을 가지고 있으며, ORF는 209~211 bp에 위치하는 AUG codon에서 시작하여 827~829 bp에 위치하는 stop codon TAA에서 끝난다. 3' untranslated region에서 는 28과 19개 의 CA 반복 염기서열을 보여주고 있었으며, SNAP-25 peptide sequence에서 4개의 cystein residues는 84~91에 위치하고 있었으며, amino terminus 부분에서 amphipathic $\alpha$-helix를 형성하고 있는 것을 볼 수 있었다. 사람과 쥐의 SNAP-25 유전자는 88%, 생쥐와 쥐의 경우는 97%의 homology를 보여 주고 있었다. 그리고 사람과 쥐의 ORF에서 염기서열은 94%,생쥐와 쥐의 ORF에서 염기서열은 100%의 homology를 보여주고 있었으며 사람, 생쥐, 그리고 쥐의 ORF에서 아미노산 서열은 100%의 homology를 보여주고 있었다.

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