• 제목/요약/키워드: dual reporter gene

검색결과 36건 처리시간 0.028초

나트륨 옥소 공동수송체 유전자와 녹색 형광 유전자의 이중 리포터 유전자를 발현하는 간암세포주 확립 (Establishment of a Hepatocellular Carcinoma Cell Line Expressing Dual Reporter Genes: Sodium Iodide Symporter (NIS) and Enhanced Green Fluorescence Protein (EGFP))

  • 곽원정;구본철;권모선;이용진;이화영;유정수;김태완;전권수;천기정;이상우;안병철;이재태
    • Nuclear Medicine and Molecular Imaging
    • /
    • 제41권3호
    • /
    • pp.226-233
    • /
    • 2007
  • 목적: 광학과 핵의학 및 자기공명 분자영상 기술은 생체내에서 리포터 유전자의 발현을 비침습적으로 평가할 수 있다. 한가지 이상의 유전자 발현을 영상화 할 수 있는 복합분자영상은 유전자의 발현과 유전자 치료 후 효능의 평가를 다양한 방법으로 반복하여 평가할 수 있다는 장점이 있다. 본 연구에서는 핵의학 영상이 가능한 NIS와 광학 영상이 가능한 EGFP 두가지 유전자를 동시에 발현하는 HepG2-Retro-PNRGW (PGKp-NIS-RSVp-EGFP-WPRE) plasmid를 이용한 간암 세포주(HepG2-NE)를 구축하고, NIS와 EGFP 리포터 유전자의 기능 발현을 체내에서 광학영상과 핵의학 영상으로 확인하고자 하였다. 재료 및 방법: pcDNA-NIS로 부터 NIS 유전자를 분리하여 pRetro-PN vector를 만든 후, pLNRGW (LTR-NeoR-RSV-EGFP-WPRE)로부터 RSV-EGFP-WPRE 조각을 분리하여 최종적으로 NIS와 EGFP 유전자가 동시에 발현할 수 있는 pRetro-PNRGW vector를 구축하였다. 구축된 vector를 이용하여 Retro-PNRGW retrovirus를 생산하였으며, 이를 HepG2 세포에 감염시켜 HepG2-NE 세포주를 만들었다. 이 세포주의 NIS 유전자의 발현은 역전사효소 중합효소 연쇄반응으로 mRNA 발현을 확인하였고, EGFP 유전자의 발현은 형광현미경을 통하여 EGFP 단백질이 발현하는 녹색형광을 관찰함으로써 확인하였다. 이중 리포터 유전자 중 NIS 유전자의 기능은 세포에서 방사능 옥소의 섭취량과 유출량의 측정을 통해서 확인하였다. 이렇게 만들어진 세포를 누드마우스에 이식하여 형광 영상, I-123을 이용한 감마카메라 영상과 I-124를 이용한 소동물용 PET 영상을 획득하였다. 결과: NIS와 EGFP의 이중 리포터 유전자를 가지고 있는 HepG2 세포주가 성공적으로 만들어졌다. 세포의 약 50% 정도가 형광 현미경 아래에서 관찰되었다. NIS 유전자의 발현은 역전사효소 중합효소 연쇄반응 실험을 통해서 확인하였고, NIS가 발현된 세포의 방사능옥소 섭취량은 대조군에 비하여 약 9배 정도 높게 나타났다. 방사능옥소 유출량 실험에서는 약 9분에 반 정도의 옥소가 유출되는 것이 확인되었다. 구축된 세포주를 이식한 후 획득한 형광 영상, 감마카메라과 소동물용 PET 영상에서는 반대쪽의 대조군 세포를 이식한 것에 비하여 뚜렷한 형광신호가 보였고, 더 높은 방사능옥소 섭취가 확인되었다. 결론: NIS와 EGFP의 이중 리포터 유전자를 가지는 간암 세포주가 성공적으로 구축되었고, 소동물에서 두 유전자를 각각 치료용 리포터 유전자와 영상 리포터 유전자로의 사용이 가능할 것이라고 생각된다.

UV-조사 수정란 내로 이식한 유전자 변화 배반엽 세포의 재구성 (Recolonization of Transfected Blastodermal Cells in Developing Embryos after Transferring into UV-irradiated Fertilized Hen′s Egg)

  • 이기석;이황;김기동;박성수;이상호
    • 한국가금학회지
    • /
    • 제27권2호
    • /
    • pp.155-161
    • /
    • 2000
  • Unfortunately, there is no technique which is stable and repetitive to produce transgenic chicken, although various ways of gene transfer including PGC-and embryonic cell-mediated gene transfer, DNA microinjection, virus inoculation and sperm cells have been employed. The aims of this study were 세 develop and establish such a stable, repetitive and efficient way of gene transfer giving a faithful gene expression during development after the reconstruction of embryo in an UV-irradiated egg. A dual reporter plasmid (pJJ9), a fusion gene containing lacZ and GFP driven by a CMV promoter was used to exploit either merits of both reporting markers. lacZ with strong signal or GFP with vital marking. Electroporated embryonic blastodermal cells (EBCs) in the presence of the pJJ9 DNA faithfully showed 377 bp PCR product and lacZ or GFP expressions in the identical cells in vitro of in vivo. Furthermore, analyses of expression pattern of the foreign DNA demonstrated that microinjected EBCs cells into the UV-irradiated recipient egg should participate in normal developmental process, for example, proliferation and differentiation into various tissues. Thirty percentages of the manipulated eggs showed lacZ expression in their tissues. These results together with the specific procedures used in this study should facilitate avian transgenesis.

  • PDF

Function identification of bovine Nramp1 promoter and intron 1

  • Hao, Linlin;Zhang, Libo;Li, Mingtang;Nan, Wang;Liu, Songcai;Zhong, Jifeng
    • Animal cells and systems
    • /
    • 제15권3호
    • /
    • pp.227-233
    • /
    • 2011
  • The Nramp1/Slc11a1 locus encodes a proton-coupled divalent cation transporter, expressed in late endosomes/lysosomes of macrophages, that constitutes a component of the innate immune response to combat intracellular pathogens and it was shown to play an important role in regulating inherent immunity. The previously identified Z-DNA forming polymorphic repeat(GT)n in the promoter region of the human Nramp1 gene does act as a functional polymorphism influencing gene expression. Research has shown that INF-${\gamma}$, TNF-${\alpha}$, IL-$1{\beta}$ and bacteria LPS increase the level of Nramp1 expression. However, the molecular mechanism for Nramp1 gene regulation is unclear. In this research, bovine Nramp1 5'-flanking region (-1748~+769) was cloned and analyzed by bioinformatics. Then to find the core promoter and the cis-acting elements, deletion analysis of promoter was performed using a set of luciferase reporter gene constructs containing successive deletions of the bovine Nramp1 5'-flanking regions. Promoter activity analysis by the dual luciferase reporter assay system showed that the core promoter of Nramp1 was located at +58~-89 bp. Some positive regulatory elements are located at -89~-205 bp and -278~-1495 bp. And the repressor elements were in region -205~-278 bp, intron1 and -1495~-1748 bp. LPS-responsive regions were located at -1495~-1748 bp and -278~-205 bp. The present study provides an initial effort to explore the molecular mechanism of transcriptional activation of the bovine Nramp1 gene and should facilitate further studies to decode the complex regulatory process and for molecular breeding for disease resistance in bovines.

Yeast two-hybrid 시스템을 통한 K11 phage lysozyme과 K11 phage RNA 중합효소와의 결합에 대한 연구 (Interaction of phage K11 lysozyme with phage RNA polymerase)

  • 전현정;이상수
    • 자연과학논문집
    • /
    • 제14권2호
    • /
    • pp.83-91
    • /
    • 2004
  • 박테리오 파이지 K11 lysozyme은 최근에 우리 실험실에서 클로닝 되었으며, 숙주균주의 세포벽을 분해하는 고유의 lysozyme활성과 박테리오 파아지 K11 RNA 중합효소의 전사반응을 억제하는 활성을 가지고 있는 것으로 확인되었다. 이미 잘 연구된 박테리오 파아지 T7 lysozyme의 경우 클로닝되고 분리 정제된 T7 lysozyme 단백질의 3차 구조 및 T7 RNA 중합효소와의 결합양상에 대하여 밝혀졌다. 따라서 우리 실험실에서는 K11 lysozyme과 K11 RNA 중합효소와의 결합 정도 및 그 특성을 파악할 목적으로 yeast two hybrid 시스템을 통하여 K11 RNA 중합효소와 K11 lysozyme의 단백질-단백질 상호작용을 알아보고자 하였다. LexA 시스템을 이용하여 LexA DNA 결합 부위를 갖고 있는 pLexA에 K11 lysozyme 유전자를 삽입하여 prey로 하였따. 활성 부위로는 B42 융합 단백질을 만드는 pJG4-5에 K11 RNA 중합효소의 결합은 생체 밖에서 reporter 유전자인 lacZ와 leu2의 발현으로 확인되었으며 이들의 결합정도와 결합부위에 대한 연구들은 진행중에 있다.

  • PDF

RNA polymerase I subunit D activated by Yin Yang 1 transcription promote cell proliferation and angiogenesis of colorectal cancer cells

  • Jianfeng Shan;Yuanxiao Liang;Zhili Yang;Wenshan Chen;Yun Chen;Ke Sun
    • The Korean Journal of Physiology and Pharmacology
    • /
    • 제28권3호
    • /
    • pp.265-273
    • /
    • 2024
  • This study aims to explore possible effect of RNA polymerase I subunit D (POLR1D) on proliferation and angiogenesis ability of colorectal cancer (CRC) cells and mechanism herein. The correlation of POLR1D and Yin Yang 1 (YY1) expressions with prognosis of CRC patients in TCGA database was analyzed. Quantitative realtime polymerase chain reaction (qRT-PCR) and Western blot were applied to detect expression levels of POLR1D and YY1 in CRC cell lines and CRC tissues. SW480 and HT-29 cells were transfected with si-POLR1D or pcDNA3.1-POLR1D to achieve POLR1D suppression or overexpression before cell migration, angiogenesis of human umbilical vein endothelial cells were assessed. Western blot was used to detect expressions of p38 MAPK signal pathway related proteins and interaction of YY1 with POLR1D was confirmed by dual luciferase reporter gene assay and chromatin immunoprecipitation (ChIP). TCGA data showed that both POLR1D and YY1 expressions were up-regulated in CRC patients. High expression of POLR1D was associated with poor prognosis of CRC patients. The results showed that POLR1D and YY1 were highly expressed in CRC cell lines. Inhibition or overexpression of POLR1D can respectively suppress or enhance proliferation and angiogenesis of CRC cells. YY1 inhibition can suppress CRC progression and deactivate p38 MAPK signal pathway, which can be counteracted by POLR1D overexpression. JASPAR predicted YY1 can bind with POLR1D promoter, which was confirmed by dual luciferase reporter gene assay and ChIP. YY1 transcription can up-regulate POLR1D expression to activate p38 MAPK signal pathway, thus promoting proliferation and angiogenesis ability of CRC cells.

Computational and experimental characterization of estrogenic activities of 20(S, R)-protopanaxadiol and 20(S, R)-protopanaxatriol

  • Zhang, Tiehua;Zhong, Shuning;Hou, Ligang;Wang, Yongjun;Xing, XiaoJia;Guan, Tianzhu;Zhang, Jie;Li, Tiezhu
    • Journal of Ginseng Research
    • /
    • 제44권5호
    • /
    • pp.690-696
    • /
    • 2020
  • Background: As the main metabolites of ginsenosides, 20(S, R)-protopanaxadiol [PPD(S, R)] and 20(S, R)-protopanaxatriol [PPT(S, R)] are the structural basis response to a series of pharmacological effects of their parent components. Although the estrogenicity of several ginsenosides has been confirmed, however, the underlying mechanisms of their estrogenic effects are still largely unclear. In this work, PPD(S, R) and PPT(S, R) were assessed for their ability to bind and activate human estrogen receptor α (hERα) by a combination of in vitro and in silico analysis. Methods: The recombinant hERα ligand-binding domain (hERα-LBD) was expressed in E. coli strain. The direct binding interactions of ginsenosides with hERα-LBD and their ERα agonistic potency were investigated by fluorescence polarization and reporter gene assays, respectively. Then, molecular dynamics simulations were carried out to simulate the binding modes between ginsenosides and hERα-LBD to reveal the structural basis for their agonist activities toward receptor. Results: Fluorescence polarization assay revealed that PPD(S, R) and PPT(S, R) could bind to hERα-LBD with moderate affinities. In the dual luciferase reporter assay using transiently transfected MCF-7 cells, PPD(S, R) and PPT(S, R) acted as agonists of hERα. Molecular docking results showed that these ginsenosides adopted an agonist conformation in the flexible hydrophobic ligand-binding pocket. The stereostructure of C-20 hydroxyl group and the presence of C-6 hydroxyl group exerted significant influence on the hydrogen bond network and steric hindrance, respectively. Conclusion: This work may provide insight into the chemical and pharmacological screening of novel therapeutic agents from ginsenosides.