• Title/Summary/Keyword: HIV-1 p24 protein

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Characterization of KI-24, a Novel Murine Monoclonal Antibody with Specific Reactivity for the Human Immunodeficiency Virus-1 p24 Protein

  • Shin, Song-Yub;Park, Jung-Hyun;Lee, Myung-Kyu;Jang, So-Youn;Hahm, Kyung-Soo
    • BMB Reports
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    • v.33 no.1
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    • pp.92-95
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    • 2000
  • The HIV-1 p24(202-221) sequence ETINNEEEWDRVHPV HAGP contains a B-cell epitope with the earliest immune response and the highest antibody titer against anti-mouse sera obtained by immunization with p24 antigens. A novel mouse monoclonal antibody (mAb) was generated against the immunodominant B-cell epitope of the HIV-1 p24 capsid protein, p24(202-221). BALB/c mice were immunized with the four branched multiple antigenic peptide (MAP) containing the HIV-1p24(202-221) sequence, and antibody-secreting hybridoma were produced by fusion of mouse splenocytes with P3X63Ag8.653, mouse myeloma cells. One clone which produced the antigen-specific mAb named KI-24 (Isotype IgG1, light chain: ${\kappa}$) was identified. mAb KI-24 was highly specific for both the p24(202-221) and p24 proteins when analyzed by ELISA and Western blotting. Since p24(202-221) also contains a cytotoxic T-lymphocyte epitope, this specfic peptide epitope and the monoclonal antibody with specific reactivity against the p24 protein and p24(202-221) can be used in peptide vaccine development and p24 antigen detection from HIV patients.

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Construction of a New Gene-Fusion Expression Vector, pMONSTER

  • Baek, Chang-Ho;Wee, Sec-Han
    • Journal of Microbiology and Biotechnology
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    • v.10 no.5
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    • pp.663-669
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    • 2000
  • The fur (ferric uptake regulation) expression vector pMON2064 was modified to produce a Fur-fusion expression vector. A kinker site, factor Xa cleavage site, and several restriction endonuclease sites were introduced to facilitate easy cloning and isolating of the fusion protein. The resulting fusion expression vector, pMONSTER, was then used to make fusion expression vector, pMONSTER, was then used to make fusion proteins with $\beta$-galactosidase and the protease of the human immunodeficiency virus type 1 (HIV-1 PR). Strain SW4020 harboring the Fur $\beta$-galactosidase fusion vector produced blue colonies on a 5-bromo-4-chloro-3-indolyl-$\beta$-D-galactoside plate and the resulting 133 kDa fusion protein reacted with an anti-Fur antibody. The strain harboring the Fur-HIV-1 PR fusion vector produced a 29 kDa fusion protein, which also reacted with an anti-Fur antibody. The Fur-HIV-1 PR fusion protein was purified by a single column application that was designed to isolate the Fur protein. The purified Fur-HIV-1 PR fusion protein digested with factor Xa cleaved a recombinant Gag protein to release smaller fragments, including a p24 capsid protein. The Fur-HIV-1 PR fusion protein itself did not exhibit any proteolytic activity.

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Poliovirus Sabin 1 as a Live Vaccine Vector: Expression of HIV-1 p24 Core Protein

  • Jung, Hye-Rhan;Bae, Yong-Soo
    • BMB Reports
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    • v.31 no.5
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    • pp.432-443
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    • 1998
  • The poliovirus Sabin 1 strain has features that make it a particularly attractive live recombinant mucosal vaccine vehicle. Sabin 1 cDNA was manipulated to have multiple cloning sites and a viral specific 3C-protease cutting site at the N-terminal end of the polyprotein. The gene for the N-terminal 169 amino acids of the HIV-1 p24 was cloned into the multiple cloning site of the manipulated Sabin cDNA. A recombinant progeny virus was produced from HeLa cells when it was transfected with the RNA synthesized from the p24-Sabin chimeric cDNA. The recombinant progeny virus expresses substantial amounts of the HIV-1 p24 protein, which was clearly detected in the infected cell lysates and culture supernatants in Western blot experiments with rabbit anti-p24 serum and AIDS patients' sera. Differing from the Mahoney strain, the recombinant Sabin 1 poliovirus maintained the foreign gene stably during the subsequent passages. Replication capacity was about 1 to 1.5 log lower than that of the wild-type Sabin 1. Other physicochemical stability characteristics of the recombinant virus were similar to that of the wild-type Sabin 1. These results suggest that the manipulated Sabin 1 poliovirus can be used as a live viral vaccine vector for the development of mucosal vaccines.

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Overexpression and Purification of p24 and gp41 Proteins of Human Immunodeficiency Virus Type 1 in E. coli (대장균에서 인간면역결핍 바이러스 1형의 gag p24 및 env gp41 단백질의 과발현 및 정제)

  • Kim, Chae-Young;Shin, Soon-Cheon;Lee, Sung-Hee;Kim, Won-Bae;Kim, Byong-Moon
    • The Journal of Korean Society of Virology
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    • v.28 no.1
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    • pp.21-30
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    • 1998
  • Synthetic genes encoding the gag p24 and the part of the envelope protein gp41 of the human immunodeficiency virus (HIV-1) were cloned and overexpressed as fusion proteins in Escherichia coli, using an expression vector carrying T7 promoter and the poly-histidine leader, sequence. The overexpressed p24 fusion protein was purified by centrifugation, Ni-affinity chromatography and CM-sepharose chromatography. The overexpressed gp41 fusion protein was purified by centrifugation, $C_4$ chromatography and DEAE-sepharose chromatography. The purified fusion proteins showed a high level of purity and immunoreactivity in SDS-polyacrylamide gel electrophoresis and western blot analysis. These results suggest that this prokaryotic - expression purification method is suitable for obtaining a large amount of the viral antigen which may be useful for screening of antibodies to HIV-1 in human blood samples.

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Cloning and Expression of Human Immunodeficiency Virus-1 Epitopes in Escherichia coli (대장균에서 사람의 면역결핍 바이러스-1 epitopes 클로닝과 발현에 대한 연구)

  • 유향숙;장원희;박희동;현상원;남상욱;이영익
    • Korean Journal of Microbiology
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    • v.29 no.1
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    • pp.1-7
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    • 1991
  • Human immunodeficiency virus type 1 (HIV-1) causes a deadly infectious disease, Acquired Immunodeficiency Syndrome (ADIS). As a first step to develop a reliable and fast diagnostic procedure for HIV-1 infection, we cloned various immunodominant epitopes of HIV-1 in bacterial expression vectors containing tac or trp promoter. While the protein level of direct expression of gp160 was low, trp E fused gp120, gp41 and p17-p24 were produced at high levels (15-30% of total bacterial proteins) in E. coli. Since gp120 and gp41 contain relatively conserved regions which can react with antibodies in the plasma from most of HIV-1 infected individuals, these expression clones were used for large preparations of HIV-1 antigens.

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Expression of Human Immunodeficiency Virus Type 1 Gag Protein in Escherichia coli

  • Park, Weon-Sang
    • Journal of Life Science
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    • v.9 no.5
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    • pp.556-563
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    • 1999
  • Presence of antibody to the capsid protein p24 is the main diagnostic criterion, since this reflects reliable antibody response to HIV infection. However, it takes about 6-8 weeks for antibody production after infection and people who are infected but antibodies are not produced yet are classified as seronegative. Therefore, there is a strong need for an improved diagnostic method for better health security. As a first step for developing such an improved diagnostic system, gag protein of human immunodificiency virus type 1 was expressed in E. coli DH5$\alpha$. The gag fragment of HIV-1 (including a portion of p17 and whole p24) was amplified by polymerase chain reaction (PCR) and BamH I/EcoR I sites were created during PCR. The amplified DNA fragment was cleaved with BamH I/EcoR I and was subcloned into the GEX-2T vector which had been digested with BamHI/EcoRI, resulting gene fusion with gst gene of pGEX-2T. The recombinant DNA was transferred into E. coli DH5$\alpha$. The transformed bacteria were grown at 37$^{\circ}C$ for 3h and protein expression was induced with 0.1mM IPTG at $25^{\circ}C$ for 3h. Recombinant gag protein or GST-gag fusion protein was purified with glutathione-sepharose 4B bead and migrated as a single band when analyzed by 10% polyacrylamide gel. These proteins were confirmed by immunoblotting with anti-GST goat sera or Korean AIDS patients sera. The results of this study establish the expression and single step pulification of HIV-1 gag protein which can specifically bind with Korean AIDS patients sera.

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Comparison of Analysis Methods for Detection of Replication Competent Virus and Functional Titers of HIV-l Based Lentivirus Vector (HIV-l 유래 렌티바이러스 벡터의 복제가능 바이러스 검출과 역가측정 분석방법 비교)

  • Chang Seok Kee;Oh Il Ung;Jeong Jayoung;Ahn Kwang Soo;Sohn Yeowon
    • YAKHAK HOEJI
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    • v.49 no.3
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    • pp.217-224
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    • 2005
  • Human Immunodeficiency Virus type 1 (HIV-l) based lentivirus vector has demonstrated great potential as gene therapy vectors mediating efficient gene delivery and long-term transgene expression in both dividing and nondividing cells. However, for clinical studies it must be confirmed that vector preparations are safe and not contaminated by replication competent lentivirus (RCL) related to the parental pathogenic virus, HIV-l. In this study, we would like to establish the method for titration and RCL detection of lentivirus vector. The titration was determined by vector expression containing the green fluorescent protein, GFP in transduced cells. The titer was $1{\times}10^7$ Transducing Unit/ml in the GFP expression assay and $8.9{\times}10^7$ molecules/ml in the real-time PCR. Also, for the detection of RCL, we have used a combination method of PCR and p24 antigen detection. First, PBS/psi and VSV-G region in the genomic DNA of transduced cells was detected by PCR assay. Second, transfer and expression of the HIV-1 gag gene was detected by p24 ELISA. In an attempt to amplify any RCL, the transduced cells were cultured for 3 weeks (amplification phase) and the supernatant of amplified transduced cell was used for the second transduction to determine whether a true RCL was present (indicator phase). Analysis of cells and supernatant at day 6 in indicator phase were negative for PBS/psi, VSV-G, and p24 antigen. These results suggest that they are not mobilized and therefore there are no RCL in amplification phase. Thus, real-time PCR is a reliable and sensitive method for titration and RCL detection of lentivirus vector.