• 제목/요약/키워드: Baculovirus expression system

검색결과 112건 처리시간 0.029초

BmNPV의 p10 유전자를 이용한 새로운 전이벡터 개발 (Construction of the Novel Baculovirus Transfer Vector Using the p10 Gene of BmNPV)

  • 강석우;진병래
    • 한국잠사곤충학회지
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    • 제39권2호
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    • pp.180-185
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    • 1997
  • To develope the novel baculovirus transfer vector, the p10 gene was cloned from the Bombyx mori nuclear polygedrosis virus (BmNPV) vB2 strain isolated from the B. mori larvae of sericultural farms. The novel transfer vector was constructed by using the p10 gene of BmNPV vB2 strain was 210 bp. The TAAG sequence at the -71 bp of upstream from translation initiator ATG and two polyadenylation signal site at the downstream from terminator TAA were also detected in the p10 gene. The 5' and 3' flanking region of the p10 gene amplified by PCR was cloned into pBluescriptII SK(+) and then transfer vector pBm10 was construceted. The 7.9 kb pBm10 was analysed by restriction enzymes and the map was confirmed. In order to determine the expression of foreign gene of pBm10, $\beta$-galactosidase gene was inserted in the SmaI site of foreign gene cloning site of pBm10. The pBm10 containing $\beta$-galactosidase gene was cotranfected wth genomic DNA of BmNPV vB2 into BmN-4 cells. The recombinant baculovirus expressing $\beta$-galactosidase was also produced polygedra in the infected cells. The results indicated that pBm10 is functional, suggesting that in the baculovirus expression vector system, the recombinant virus produced by pBm10 was effective by oral infection for the producing recombinant proteins in in vivo expression.

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재조합 베큘로바이러스 벡터의 새로운 가능성 (A Novel Possibility of Recombinant Baculovirus Vector)

  • 김지영;김현주;홍성갑
    • 한국정보통신학회:학술대회논문집
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    • 한국정보통신학회 2015년도 추계학술대회
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    • pp.838-841
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    • 2015
  • 재조합 베큘로바이러스는 polyhedron promoter, vesicular stomatitis virus G (VSVG), polyA, cytomegalovirus (CMV) promoter, enhanced green fluorescent protein (EGFP), protein transduction domain (PTD) 유전자로 구성된다. 본 재조합 베큘로바이러스 벡터는 세포주와 조직에 감염시켰고 그 결과 다른 벡터 시스템에 비교하여 재조합된 유전자의 전이와 유전자 발현에 있어서 새로운 가능성이 발견되었다. 본 재조합 베큘로바이러스 시스템의 유전자의 전이와 발현의 효율은 타 벡터시스템 보다 우수하였다.

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Subcellular Location of Spodpotera Cell-expressed Human HepG2-type Glucose Transport Protein

  • Lee, Chong-Kee
    • 대한의생명과학회지
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    • 제18권2호
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    • pp.160-164
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    • 2012
  • The baculovirus/insect cell expression system is of great value for the large-scale production of normal and mutant mammalian passive glucose-transport proteins heterologously for structural and functional studies. In most mammalian cells that express HepG2, this transporter isoform is predominantly located at the cell surface. However, it had been reported that heterologous expression of other membrane proteins using the baculovirus system induced highly vacuolated cytoplasmic membranes. Therefore, how a cell responds to the synthesis of large amounts of a glycoprotein could be an interesting area for investigation. In order to examine the subcellular location of the human HepG2 transport proteins when expressed in insect cells, immunofluorescence studies were carried out. Insect cells were infected with the recombinant baculovirus AcNPVHIS-GT or with wild-type virus at a MOI of 5, or were not exposed to viral infection. A high level of fluorescence displayed in cells infected with the recombinant virus indicated that transporters are expressed abundantly and present on the surface of infected Sf21 cells. The evidence for the specificity of the immunostaining was strengthened by the negative results shown in the negative controls. Distribution of the transporter protein expressed in insect cells was further revealed by making a series of optical sections through an AcNPVHIS-GT-infected cell using a confocal microscope, which permits optical sectioning of cell sample. These sections displayed intense cytoplasmic immunofluorecence surrounding the region occupied by the enlarged nucleus, indicating that the expressed protein was present not only at the cell surface but also throughout the cytoplasmic membranous structures.

Recombinant human BMP-2/-7 heterodimer protein expression for bone tissue engineering using recombinant baculovirus expression system

  • Park, Seung-Won;Goo, Tae-Won;Kim, Seong Ryul;Choi, Kwang-Ho
    • International Journal of Industrial Entomology and Biomaterials
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    • 제32권2호
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    • pp.49-53
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    • 2016
  • Bone morphogenetic proteins (BMPs) are essential growth factors for bone formation, skeletal development and bone regeneration. The BMP-2/7 heterodimer is known to have remarkable effects on osteogenic induction that are even stronger than the BMP-2 or BMP-7 homodimers. We designed a recombinant human BMP-2/7 (rhBMP-2/7) heterodimer protein with four glycine residues between BMP-2 and BMP-7 protein to facilitate free bond rotation of domains. The Baculovirus Expression Vector System (BEVS) is routinely used to produce recombinant proteins in the milligram scale. In this study, the BEVS was used to express the rhBMP-2/7 protein whrer the recombinant baculovirus was recovered in the host Sf9 cells. To confirm the biological activity of rhBMP-2/7 protein secreted from the BEVS as an osteogenic differentiation and induction factor, we measured the BMP-induced ALP activity. rhBMP-2/7 could be used as an alternative to BMPs to overcome limitations like short half-life and requirement for high concentrations. Furthermore, rhBMP-2/7 may be an efficient tool for various application studies such as bone regeneration and skeletal development.

Construction and Characterization of Transformed Insect Cells Expressing Baculovirus Very Late Factor in an Infection-Independent Manner

  • Park, Hye-Jin;Lee, Kwang-Sik;Cho, Eun-Sook;Yun, Eun-Young;Kang, Seok-Woo;Kim, Keun-Young;Sohn, Hung-Dae;Jin, Byung-Rae
    • International Journal of Industrial Entomology and Biomaterials
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    • 제2권1호
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    • pp.19-26
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    • 2001
  • Transformed Spodoptera frugiperda (Sf9) cells expressing baculovirus very late factor (VLF-1) were constructed by using Autograha nuclear polyhedrosis virus (AcNPV) immediate earthy gene (ie1). Neomycin-resistance gene as a selectable marker was introduced under the control of AcNPV ie1 promoter, and Bombyx mori nuclear polyhedrosis (BmNPV-K1) vlf-1 gene was introduced under the control of the Drosophila heat shock protein gene (hspr70) promoter to yield dual expression plasmid with two independent transcription units. It was transfected into Sf9 cells and cell clones expressing vlf-1 were selected by G4l8 treatment. Genomic DNA from transformed cells was isolated and integration of AcNPV iel harboring vlf-1 was confirmed by PCR using AcNPV iel-specific primers and Southern blot analysis. The transformed cells expressing VLF-1 in an infection-independent manner expressed foreign gene product of recombinant baculovirus in the earlier stage of infection compared with control Sf9 cells. These results suggest the possible to develop highly efficient transformed insect cells for baculovirus expression vector system.

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Establishment of Baculovirus Infected Insect Cell Line Expressing Porcine Salivary Lipocalin(SAL1) Protein

  • Seo, Hee-Won;Park, Da-Young;Kim, Min-Goo;Ahn, Mi-Hyun;Ko, Ki-Narm;Ko, Ki-Sung;Ka, Hak-Hyun
    • Reproductive and Developmental Biology
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    • 제33권2호
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    • pp.71-76
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    • 2009
  • Salivary lipocalin (SAL1) is a member of the lipocalin protein family that has a property to associate with many lipophilic molecules. The importance of SAL1 during pregnancy in pigs has been suggested by our previous study which has shown that SAL1 is expressed in the uterine endometrium in a cell type- and implantation stage-specific manner and secreted into the uterine lumen. However, function of SAL1 in the uterus during pregnancy in pigs is not known. To understand SAL1 function in the uterus during pregnancy, we generated recombinant porcine SAL1 protein in an insect cell line. Porcine SAL1 cDNA was cloned into a baculovirus expression vector using RT-PCR and total RNA from uterine endometrium on day 12 of pregnancy, and the expression vector was used to generate recombinant Bacmid containing the SAL1 gene. The recombinant Bacmid was then transfected Sf9 cell to produce recombinant baculovirus. By infecting Sf9 cell with recombinant baculovirus, we established a SAL1-expressing insect cell expression system. Immunoblot analysis confirmed SAL1 expression in the infected cells. Recombinant SAL1 produced by the Sf9 cell line will be useful for understanding physiological function of SAL1 during pregnancy in pigs.

Improved Baculovirus Vectors Expressing Barnase Using Promoters from Cotesia plutellae Bracovirus

  • Choi, Jae Young;Kim, Yang-Su;Wang, Yong;Kang, Joong Nam;Roh, Jong Yul;Shim, Hee Jin;Woo, Soo-Dong;Jin, Byung Rae;Je, Yeon Ho
    • Molecules and Cells
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    • 제28권1호
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    • pp.19-24
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    • 2009
  • The goal of this study was to create a novel baculovirus expression system that does not require recombinant virus purification steps. Transfection of insect cells with transfer vectors containing barnase under control of the Cotesia plutellae bracovirus (CpBV) promoters ORF3004 or ORF3005 reduced cell growth. Co-transfection with bApGOZA DNA yielded no recombinant viruses and nonrecombinant backgrounds. To further investigate the detrimental effects of barnase on insect cells, two recombinant bacmids harboring the barnase gene under control of the CpBV promoters, namely bAcFast-3004ProBarnase and bAcFast-3005ProBarnase, were constructed. While no viral replication was observed when only the recombinant bacmids were transfected, recombinant viruses were generated when the bacmids were co-transfected with the transfer vector, pAcUWPolh, through substitution of the barnase gene with the native polyhedrin gene by homologous recombination. Moreover, no non-recombinant backgrounds were detected from unpurified recombinant stocks using PCR analysis. These results indicate that CpBV promoters can be used to improve baculovirus expression vectors by means of lethal gene expression under the control of these promoters.

초파리 S2 세포 시스템에서 녹색형광단백질 생산을 위한 재조합 배큘로바이러스의 감염조건들의 영향 (Effects of Recombinant Baculovirus Infection Conditions on Production of Green Fluorescent Protein in Drosophila S2 Cells)

  • 조혜숙;김연규;김경로;차형준
    • Korean Chemical Engineering Research
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    • 제44권1호
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    • pp.40-45
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    • 2006
  • 원하는 유전자를 배큘로바이러스의 감염에 의하여 초파리 Drosophila melanogaster S2 세포에 도입하는 배큘로바이러스/S2 세포 발현 시스템은 강력하고 안전한 배큘로바이러스의 장점과 세포가 파괴되지 않는 S2 세포의 장점을 접목한 시스템이다. 본 연구에서는 외래 목적 단백질로 발현 모니터링이 손쉬운 녹색형광단백질(green fluorescent protein)을 발현시키는 재조합 배큘로바이러스를 이용하여 S2 세포에의 감염조건들에 대한 영향 연구를 수행하였다. 재조합 배큘로바이러스의 S2 세포에의 감염조건으로는 multiplicity of infection(MOI), 초기 세포 수, 배큘로바이러스 용액이 세포를 적시는 최소 부피, 배큘로바이러스를 첨가한 후 제거하기까지의 배양시간 그리고 배큘로바이러스 제거 후 S2 세포를 혈청이 존재하는 배지에서 키우는 배양시간을 선정하였다. MOI는 일반적으로 크게 하는 것이 높은 발현 수율을 위하여 좋은 결과를 보였으나 세포배양이 길어지는 경우 세포독성의 문제가 심각해 질 수 있고 실제적인 배양에서는 높은 MOI를 유지하는 것이 불가능하므로 사용하는 100 mm 배양접시에서 배큘로바이러스와 S2 세포가 접촉하는 동안의 변수들인 MOI를 적정의 값인 30으로, 배큘로바이러스 배양 시간을 1.5 시간으로 고정함으로써 배큘로바이러스가 숙주 세포인 S2에 대해 미치는 세포독성을 낮출 수 있었다. 또한, 배큘로바이러스 최소 부피는 배양접시에서 사용부피의 2.4%에서 가장 좋은 결과를 보였으며 배큘로바이러스 용액을 10배 농축시킴으로써 이 부피를 맞추기 위해 첨가시키는 새로운 배지의 비율을 높임으로써 결과적으로 배큘로바이러스에 의한 세포독성을 줄일 수 있었다. 이를 통하여 세포 파쇄 및 배양접시 표면에서 탈착되는 것을 막고 높은 생장 상태를 유지해서 감염 효율도 높일 수 있었다. 배큘로바이러스의 감염이 끝난 후의 관여하는 변수들인 감염 후 배양시간은 24시간에서 최대의 녹색형광단백질의 발현을 나타내었다.