• 제목/요약/키워드: nuclease gene

검색결과 47건 처리시간 0.033초

Molecular Characterization of a Nuclease Gene of Chlorella Virus SS-2

  • Park, Yun-Jung;Jung, Sang-Eun;Choi, Tae-Jin
    • The Plant Pathology Journal
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    • 제25권1호
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    • pp.47-53
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    • 2009
  • Sequence analysis of the Chlorella virus SS-2 revealed one putative nuclease gene that is 807 bp long and encodes a 31kDa protein. Multiple sequence alignment analysis reveals the presence of highly conserved PD-(D/E)XK residues in the encoded protein. The gene cloned into an expression vector was expressed as a His-tagged fusion protein in chaperone containing pKJE7 cells. The recombinant protein was purified using a His-Trap chelating HP column and used for functional analysis. Exonuclease activity of the SS-2 nuclease was detected when the DNA substrates, such as linear ssDNA, PCR amplicon, linear dsDNA with 5'-overhang ends, 3'-overhang ends, or blunt ends were used. Covalently closed circular DNA was also degraded by the SS-2 recombinant protein, suggesting that the SS-2 nuclease has an endonuclease activity. Stable activity of SS-2 nuclease was observed between $10^{\circ}C$ and $50^{\circ}C$. The optimum pH concentrations for the SS-2 nuclease were pH 6.0-8.5. Divalent ions inhibited the SS-2 nuclease activity.

Comparison of Endonuclease-Sensitive Sites by T4 Endonuclease V and UvrABC Nuclease Treatments Followed by Formamide or Sodium Hydroxide Denaturation

  • Chang, Yung-Jin
    • BMB Reports
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    • 제31권4호
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    • pp.405-408
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    • 1998
  • Endonuclease-sensitive sites detected by T4 endonuclease V or UvrABC nuclease treatments were compared in the dihydrofolate reductase gene of UV-irradiated Chinese hamster ovary B-11 cells. The number of endonuclease-sensitive sites detected by T4 endonuclease V treatment followed by NaOH denaturation was twice that of formamide denaturation. Repeated treatment of damaged genomic DNA with T4 endonuclease V resulted in no further increase in the number of endonuclease-sensitive sites detected. The numbers of endonuclease-sensitive sites detected by UvrABC nuclease using each denaturation condition were similar. Sequential treatment with the two endonucleases using formamide denaturation resulted in twice the number of endonuclease-sensitive sites detected by treatment of each nuclease alone. Due to a lack of AP endonuclease activity these results suggest the presence of T4 endonuclease V-sensitive sites which could be complemented by alkaline gel separation or by UvrABC nuclease treatment.

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Molecular Cloning, Purification, and Characterization of an Extracellular Nuclease from Aeromonas hydrophila ATCC14715

  • Nam, In-Young;Myung, Hee-Joon;Joh, Ki-Seong
    • Journal of Microbiology and Biotechnology
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    • 제14권1호
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    • pp.178-181
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    • 2004
  • A gene encoding an extracellular nuclease was cloned from Aeromonas hydrophila strain ATCC14715. The gene was overexpressed and the enzyme was purified by fusing to maltose binding protein. It was shown that the protein possessed DNase activity on both single-stranded and double-stranded DNAs. It exhibited both endo- and exonuclease activities. It was also shown that the protein had an RNase activity. Possible roles of this extracellular enzyme in the A. hydrophila life cycle are discussed.

Generation of Fibroblasts Lacking the Sal-like 1 Gene by Using Transcription Activator-like Effector Nuclease-mediated Homologous Recombination

  • Kim, Se Eun;Kim, Ji Woo;Kim, Yeong Ji;Kwon, Deug-Nam;Kim, Jin-Hoi;Kang, Man-Jong
    • Asian-Australasian Journal of Animal Sciences
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    • 제29권4호
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    • pp.564-570
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    • 2016
  • The Sal-like 1 gene (Sall1) is essential for kidney development, and mutations in this gene result in abnormalities in the kidneys. Mice lacking Sall1 show agenesis or severe dysgenesis of the kidneys. In a recent study, blastocyst complementation was used to develop mice and pigs with exogenic organs. In the present study, transcription activator-like effector nuclease (TALEN)-mediated homologous recombination was used to produce Sall1-knockout porcine fibroblasts for developing knockout pigs. The vector targeting the Sall1 locus included a 5.5-kb 5' arm, 1.8-kb 3' arm, and a neomycin resistance gene as a positive selection marker. The knockout vector and TALEN were introduced into porcine fibroblasts by electroporation. Antibiotic selection was performed over 11 days by using $300{\mu}g/mL$ G418. DNA of cells from G418-resistant colonies was amplified using polymerase chain reaction (PCR) to confirm the presence of fragments corresponding to the 3' and 5' arms of Sall1. Further, mono- and bi-allelic knockout cells were isolated and analyzed using PCR-restriction fragment length polymorphism. The results of our study indicated that TALEN-mediated homologous recombination induced bi-allelic knockout of the endogenous gene.

식물에서의 상동재조합을 이용한 효율적인 진타겟팅 시스템 (An efficient gene targeting system using homologous recombination in plants)

  • 권용익;이효연
    • Journal of Plant Biotechnology
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    • 제42권3호
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    • pp.154-160
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    • 2015
  • The plant breeding technology was developed with genetic engineering. Many researchers and breeders have turned from traditional breeding to molecular breeding. Genetically modified organisms (GMO) were developed via molecular breeding technology. Currently, molecular breeding technologies facilitate efficient plant breeding without introducing foreign genes, in virtue by of gene editing technology. Gene targeting (GT) via homologous recombination (HR) is one of the best gene editing methods available to modify specific DNA sequences in genomes. GT utilizes DNA repair pathways. Thus, DNA repair systems are controlled to enhance HR processing. Engineered sequence specific endonucleases were applied to improve GT efficiency. Engineered sequence specific endonucleases like the zinc finger nuclease (ZFN), TAL effector nuclease (TALEN), and CRISPR-Cas9 create DNA double-strand breaks (DSB) that can stimulate HR at a target site. RecQl4, Exo1 and Rad51 are effectors that enhance DSB repair via the HR pathway. This review focuses on recent developments in engineered sequence specific endonucleases and ways to improve the efficiency of GT via HR effectors in plants.

시험관내에서 합성한 오이모자이크 바이러스 RNA단편을 성공적으로 절단한 ribozyme의 식물체내의 발현 (Expression of in vitro-tested ribozyme against cucumber mosaic virus RNA in tobacco plant)

  • 박상규
    • Applied Biological Chemistry
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    • 제39권5호
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    • pp.355-360
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    • 1996
  • 시험관내에서 합성한 오이모자이크 바이러스 RNA단편을 성공적으로 절단한 ribozyme (한국농화학회지 37: 56-63(1994))을 담배 식물체에 발현시켜 바이러스 저항성 식물체를 만들려고 하였다. 해당 ribozyme의 염기서열을 함유한 DNA 단편을 꽃양배추 바이러스 35S promoter와 nopaline 합성효소 terminator에 연결시키고 연결 부위 및 ribozyme의 염기서열을 확인하였다. 염기서열을 확인한 합성유전자를 Agrobacterium tumefaciens LBA4404에 합성유전자를 함유한 E. coli HB101을 E. coli HB101(pRK2073)를 helper로 Agrobacterium tumefaciens LBA4404와 함께 배양하는 tri-parental mating system을 이용하여 도입시켰다. Ribozyme 유전자를 함유한 Agrobacterium 세포를 담배잎 조각과 함께 배양한 후 항생제인 kanamycin을 함유한 MS 배지에서 자란 열개의 작은 식물체를 재분화하였다. 형질전환한 식물체내에 ribozyme 유전자가 존재하는지의 여부는 합성효소증폭반응(PCR)을 이용하였던바, 일곱개체가 예상된 570 염기쌍의 DNA 단편을 가지고 있었다. 이들 중 네 개체로부터 RNA을 분리하여 formamide를 함유한 agarose에서 전기영동한 후 35S-ribozyme-nos의 DNA 단편으로 Northern hybridization을 행하였던 바, 식물세포내의 nuclease에 의해 ribozyme RNA가 분해된 듯 감지 할 수 없었다. 따라서 ribozyme을 이용하여 바이러스 저항성 식물체를 얻으려면 nuclease에 의해 분해되지 않는 ribozyme이 필요할 것으로 사료된다.

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유전자 표적화를 위한 단백질공학 연구동향: Homing Endonucleases and Zinc Finger Nucleases (Trends in Protein Engineering for Gene Targeting: Homing Endonucleases and Zinc Finger Nucleases)

  • 정대은;김근중
    • KSBB Journal
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    • 제25권3호
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    • pp.215-222
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    • 2010
  • Monogenic disease의 치료를 위한 하나의 전략으로 viral vector를 이용한 gene therapy에 비해 독성이 적은 gene targeting 기술을 이용하기 위한 연구가 진행되고 있다. 이러한 연구의 주된 관점은 자연적인 HR의 낮은 효율을 개선하기 위한 DSB 유도 방법으로, 선택성을 높일 수 있는 긴 염기서열의 인식이 가능한 artificial endonuclease의 개발이다. 본 글에서는 이러한 artificial endonuclease 중, 가장 많이 연구 되고 있는 homing endonuclease와 zinc finger nuclease를 간략히 소개하였다. 전자와 후자 모두, 인식 서열에 대한 일정 수준의 tolerance (인식 서열 일부가 특이적이지 않아 다른 염기로 구성된 경우)가 존재하여, 일정한 비율로 다른 target을 절단할 수 있는 가능성이 존재한다. 이러한 점은, meganucleases를 치료 목적으로 이용할 때 세포 독성을 나타내는 근본원인 중 하나이다. 두 종 모두 이러한 특성을 가짐에도 불구하고, 완전한 비자연적인 후자보다는 전자의 경우가 보다 효과적이며 낮은 세포독성을 보이는 것으로 보고되고 있다. 물론 실험 조건이나 적용되는 세포 종류, 인위적인 단백질의 발현 정도에 따라 세포 독성유무 또는 정도에 차이가 나타남이 확인되고 있다. 이러한 사실들에 근거할 때, gene targeting을 유도하기 위한 artificial endonuclease의 서열 특이성을 증대시키는 것이 가장 중요하나, 그 외 여러 인자들에 대한 복합적인 연구 역시 필요함을 보여준다. 현재까지 실제 치료제로 쓰인 예는 없지만, 시험관내에서 보이는 결과와 모델 개체에서 이루어진 표적화정도, 관련된 단백질 치료제들이 지닌 잠재성을 비교할 때 매우 큰 가능성을 지니고 있음은 충분히 확인할 수 있다.

Generation of knockout mouse models of cyclin-dependent kinase inhibitors by engineered nuclease-mediated genome editing

  • Park, Bo Min;Roh, Jae-il;Lee, Jaehoon;Lee, Han-Woong
    • Laboraroty Animal Research
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    • 제34권4호
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    • pp.264-269
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    • 2018
  • Cell cycle dysfunction can cause severe diseases, including neurodegenerative disease and cancer. Mutations in cyclin-dependent kinase inhibitors controlling the G1 phase of the cell cycle are prevalent in various cancers. Mice lacking the tumor suppressors $p16^{Ink4a}$ (Cdkn2a, cyclin-dependent kinase inhibitor 2a), $p19^{Arf}$ (an alternative reading frame product of Cdkn2a,), and $p27^{Kip1}$ (Cdkn1b, cyclin-dependent kinase inhibitor 1b) result in malignant progression of epithelial cancers, sarcomas, and melanomas, respectively. Here, we generated knockout mouse models for each of these three cyclin-dependent kinase inhibitors using engineered nucleases. The $p16^{Ink4a}$ and $p19^{Arf}$ knockout mice were generated via transcription activator-like effector nucleases (TALENs), and $p27^{Kip1}$ knockout mice via clustered regularly interspaced short palindromic repeats/CRISPR-associated nuclease 9 (CRISPR/Cas9). These gene editing technologies were targeted to the first exon of each gene, to induce frameshifts producing premature termination codons. Unlike preexisting embryonic stem cell-based knockout mice, our mouse models are free from selectable markers or other external gene insertions, permitting more precise study of cell cycle-related diseases without confounding influences of foreign DNA.

Enhancement of antimicrobial peptide genes expression in Cactus mutated Bombyx mori cells by CRISPR/Cas9

  • Park, Jong Woo;Yu, Jeong Hee;Kim, Seong-Wan;Kweon, Hae Yong;Choi, Kwang-Ho;Kim, Seong-Ryul
    • International Journal of Industrial Entomology and Biomaterials
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    • 제37권1호
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    • pp.21-28
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    • 2018
  • CRISPR/Cas9 gene editing system is an efficient method to mutation in a sequence specific manner. Here we report the direct transfection of the Cas9 nuclease and gene specific guide RNA can be used in BM-N cell line derived from Bombyx mori ovarian tissue to enfeeble function of endogenous gene in vitro. We have used gene editing system to negative regulation components of major signaling cascade, the Toll pathway, which controls B. mori resistance to microbe infections, such as fungi and gram positive bacteria. We demonstrate that the $I{\kappa}B-like$ protein Cactus may controls the activation of transcription factors such as Rel A and Rel B. The direct transfection of Cas9 nuclease and Cactus-specific guide-RNA complex may be used in BM-N cells to disrupt the function of endogenous genes in vitro. A mutation frequency of 30-40% was observed in the transfected cells, and various mutations caused the target region. Moreover, RT-PCR analysis revealed that Cactus gene was down regulated after these mutations. More importantly, mutation of BmCactus stimulated expression of lysozyme, moricin, and lebocin genes. These results suggest that the CRISPR/Cas9 systems are expected to efficiently induce site-specific mutations and it was possible to produce antimicrobial peptide through the gene editing.

대장균에 발현된 Serratia marcescens의 Nuclease의 정제와 세포내 분포 (Purification and Cellular Localization of Extracellular Nuclease of Serratia marcescens Expressed in Escherichia coli)

  • 김외연;이훈실;서숙재;조무제;이상열;김재원
    • 미생물학회지
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    • 제32권2호
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    • pp.147-154
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    • 1994
  • Serratia marcescens가 세포외로 분비하는 nuclease의 유전자가 발현된 Escherichia coli JM107을 배양하여 다량의 효소를 정제하였다. Matrex green gel과 heparin agarose gel column chromatography법으로 약 50배 정제한 효소는 분자량이 29KDa였으며, 전기영동 상에서 단일 띠를 보였다. 이 단백질을 이용하여 polyclonal antibody를 만들고, 면역조직화학법으로 세포내의 분포를 조사하였다. Nuclease는 주로 세포막에 존재하였고, 이를 토대로 효소가 세포질에서 합성된 후 세포막으로 빠르게 이동함을 알 수 있었다. 이 결과는 세포의 막분획에서 효소의 활성의 대부분이 회수되며, 면역블럿 방법으로 효소의 대부분이 세포막에서 검출된다는 결과와 일치하였다.

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