1.Predication of secondary structures and epitopes of fusion protein pp150/MDBP.
Dadong GUO ; Xueqin GAO ; Jinxiang HAN
Journal of Biomedical Engineering 2007;24(5):1123-1127
The secondary structures of fusion protein pp150/MDBP, including alpha-helix, beta-sheet, turn regions, were analyzed by Garnier-Robson's and Chou-Fasman's methods; the antigenic epitopes of B cells were analysed by using hydrophilicity plot. The results showed that the fusion protein pp150/MDBP might have less alpha-helix, but be rich in beta-sheet and turn regions. The epitopes recognized by B cells may be at 7-56 amino acid residues or adjacent to 137-192 amino acid residues.
Amino Acid Sequence
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Binding Sites
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Cytomegalovirus
;
chemistry
;
Epitopes
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Humans
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Molecular Sequence Data
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Phosphoproteins
;
chemistry
;
immunology
;
Protein Structure, Secondary
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Viral Fusion Proteins
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chemistry
;
immunology
;
Viral Matrix Proteins
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chemistry
;
immunology
3.Preparation and characterization of HLA-A * 0201 monomer and tetramer loaded with HCMV antigenic peptide.
Xian-Hui HE ; Li-Hui XU ; Yi LIU ; Xiao-Chang CAI ; Yao-Ying ZENG
Chinese Journal of Biotechnology 2004;20(3):382-388
Quantification of cytotoxic T lymphocytes (CTL) is extremely important due to the pivotal role they play in controlling pathogen infection and anti-tumor actions. Previously used methods for detecting specific CTL are usually indirect. In recent years, tetramer technology has been developed to directly visualize antigen-specific CTL efficiently, and become the critical approach in studying T cell immune responses. A simplified procedure for preparing tetramers is reported here in this paper and a tetramer loaded with human cytomegalovirus (HCMV) peptide was successfully obtained using this procedure, which possessed binding activity with specific CTL. The heavy chain of HLA-A * 0201 gene was cloned by RT-PCR from HLA-A2+ donor. An expression vector, encoding the extracellular domain of HLA-A * 0201 heavy chain (A2) fused with a BirA substrate peptide (BSP) at its carboxyl terminus, was constructed by PCR with cloned A2 gene as the template. The A2 heavy chain was expressed in Escherichia coli mostly in the form of inclusion body and purified by washing inclusion body. The monomer of soluble A2 loaded with peptide was reconstructed by dilution from the heavy chain in the presence of light chain beta2-microglobulin and HLA-A2 restricted HCMV pp65(495-503) peptide (NLVPMVATV, NLV). Refolded A2-NLV monomer was biotinylated with a commercial BirA and purified by low pressure anion exchange chromatography on a Q-Sepharose (fast flow) column. The tetramer was then formed by mixing A2-NLV monomer with streptavidin-PE in a ratio of 4:0.8 leading to more than 85% multiplication as revealed by SDS-PADE under non-reducing conditions without boiling the sample. Flow cytometry analysis indicated that this tetramer could bind to specific CTL from HLA-A2+ donor. In conclusion, a simplified procedure is established to prepare HLA-A2 tetramer, which may not only facilitate the application of tetramer technology for studying specific T lymphocyte immune response but A2-NLV itself be applied clinically to monitor CMV-specific CTL in stem cell and organ transplantation.
Cloning, Molecular
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Cytomegalovirus
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genetics
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immunology
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Escherichia coli
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genetics
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metabolism
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HLA-A Antigens
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biosynthesis
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genetics
;
immunology
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HLA-A2 Antigen
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Humans
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Phosphoproteins
;
biosynthesis
;
genetics
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Recombinant Fusion Proteins
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biosynthesis
;
genetics
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T-Lymphocytes, Cytotoxic
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immunology
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metabolism
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Viral Matrix Proteins
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biosynthesis
;
genetics
4.Seroprevalence of IgM and IgG Antibodies against SARS-CoV-2 in Asymptomatic People in Wuhan: Data from a General Hospital Near South China Seafood Wholesale Market during March to April in 2020.
Rui Jie LING ; Yi Han YU ; Jia Yu HE ; Ji Xian ZHANG ; Sha XU ; Ren Rong SUN ; Wang Cai ZHU ; Ming Feng CHEN ; Tao LI ; Hong Long JI ; Huan Qiang WANG
Biomedical and Environmental Sciences 2021;34(9):743-749
The aim of this study was to estimate the seroprevalence of immunoglobulin M (IgM) and G (IgG) antibodies against SARS-CoV-2 in asymptomatic people in Wuhan. This was a cross-sectional study, which enrolled 18,712 asymptomatic participants from 154 work units in Wuhan. Pearson Chi-square test,
Adolescent
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Adult
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Aged
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Aged, 80 and over
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Antibodies, Viral/blood*
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COVID-19/immunology*
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Carrier State/immunology*
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Child
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Child, Preschool
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China/epidemiology*
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Coronavirus Nucleocapsid Proteins/immunology*
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Cross-Sectional Studies
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Female
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Humans
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Immunoglobulin G/blood*
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Immunoglobulin M/blood*
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Male
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Middle Aged
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Occupations/classification*
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Phosphoproteins/immunology*
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SARS-CoV-2/immunology*
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Seroepidemiologic Studies
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Spike Glycoprotein, Coronavirus/immunology*
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Young Adult
5.Comparison of Quantitation of Cytomegalovirus DNA by Real-Time PCR in Whole Blood with the Cytomegalovirus Antigenemia Assay.
Seonhee KWON ; Bo Kyeung JUNG ; Sun Young KO ; Chang Kyu LEE ; Yunjung CHO
Annals of Laboratory Medicine 2015;35(1):99-104
BACKGROUND: Quantitation of cytomegalovirus (CMV) DNA using real-time PCR has been utilized for monitoring CMV infection. However, the CMV antigenemia assay is still the 'gold standard' assay. There are only a few studies in Korea that compared the efficacy of use of real-time PCR for quantitation of CMV DNA in whole blood with the antigenemia assay, and most of these studies have been limited to transplant recipients. METHOD: 479 whole blood samples from 79 patients, falling under different disease groups, were tested by real-time CMV DNA PCR using the Q-CMV real-time complete kit (Nanogen Advanced Diagnostic S.r.L., Italy) and CMV antigenemia assay (CINA Kit, ArgeneBiosoft, France), and the results were compared. Repeatedly tested patients were selected and their charts were reviewed for ganciclovir therapy. RESULTS: The concordance rate of the two assays was 86.4% (Cohen's kappa coefficient value=0.659). Quantitative correlation between the two assays was a moderate (r=0.5504, P<0.0001). Among 20 patients tested repeatedly with the two assays, 13 patients were transplant recipients and treated with ganciclovir. Before treatment, CMV was detected earlier by real-time CMV DNA PCR than the antigenemia assay, with a median difference of 8 days. After treatment, the antigenemia assay achieved negative results earlier than real-time CMV DNA PCR with a median difference of 10.5 days. CONCLUSIONS: Q-CMV real-time complete kit is a useful tool for early detection of CMV infection in whole blood samples in transplant recipients.
Antiviral Agents/therapeutic use
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Cytomegalovirus/*genetics
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Cytomegalovirus Infections/drug therapy/pathology/virology
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DNA, Viral/*blood/metabolism
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Ganciclovir/therapeutic use
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Humans
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*Immunoassay
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Organ Transplantation
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Phosphoproteins/genetics/immunology/*metabolism
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*Real-Time Polymerase Chain Reaction
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Viral Matrix Proteins/genetics/immunology/*metabolism
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Virology/*methods
6.Effect of growth inhibition of the secretory protein SPLUNC1 on Pseudomonas aeruginosa.
Hou-de ZHOU ; Ming-hua WU ; Lei SHI ; Ming ZHOU ; Yi-xin YANG ; Jin ZHAO ; Tan DENG ; Xiao-ling LI ; Shou-rong SHENG ; Gui-yuan LI
Journal of Central South University(Medical Sciences) 2006;31(4):464-469
OBJECTIVE:
To express the recombinant SPLUNC1 protein in HNE1 cells and to study its function of bactericidal and binding to lipopolysaccharide (LPS).
METHODS:
Full length of SPLUNC1 gene was cloned into pCMV-tag4A vector and stably transfected into HNE1 cell lines, the supernatant of cell cultures was collected. After being treated with the supernatant, the Pseudomonas aeruginosa was seeded to LB soft agar plate, and the bacteria clones were counted and analyzed. For in vitro LPS binding assay, LPS was coated to 96-well plates. We incubated in the plate with SPLUNC1 protein, and detected the binded SPLUNC1 protein by ELISA. Incubating the FITC-LPS with the SPLUNC1 stably transfected or control cells, the intracellular intensity of fluorescence was observed under the fluorescence microscope.
RESULTS:
SPLUNC1 inhibited the bacteria clone formation obviously. Although the binding efficiency of LPS and SPLUNC1 in vitro was very low, more FITC-LPS entered into the SPLUNC1 stably transfected cells.
CONCLUSION
SPLUNC1 can inhibit the growth of Pseudomonas aeruginosa and bind LPS, and play an important defensive role in innate immunity of the upper airway.
Cell Line, Tumor
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Glycoproteins
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isolation & purification
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pharmacology
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Humans
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Membrane Proteins
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chemistry
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Nasopharyngeal Neoplasms
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genetics
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pathology
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Phosphoproteins
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isolation & purification
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pharmacology
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Pseudomonas aeruginosa
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drug effects
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Respiratory Mucosa
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chemistry
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immunology
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Respiratory System
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chemistry
;
immunology
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Transfection
7.Cotinine-conjugated aptamer/anti-cotinine antibody complexes as a novel affinity unit for use in biological assays.
Sunyoung PARK ; Dobin HWANG ; Junho CHUNG
Experimental & Molecular Medicine 2012;44(9):554-561
Aptamers are synthetic, relatively short (e.g., 20-80 bases) RNA or ssDNA oligonucleotides that can bind targets with high affinity and specificity, similar to antibodies, because they can fold into unique, three-dimensional shapes. For use in various assays and experiments, aptamers have been conjugated with biotin or digoxigenin to form complexes with avidin or anti-digoxigenin antibodies, respectively. In this study, we developed a method to label the 5' ends of aptamers with cotinine, which allows formation of a stable complex with anti-cotinine antibodies for the purpose of providing another affinity unit for the application in biological assays using aptamers. To demonstrate the functionality of this affinity unit in biological assays, we utilized two well-known aptamers: AS1411, which binds nucleolin, and pegaptanib, which binds vascular endothelial growth factor. Cotinine-conjugated AS1411/anti-cotinine antibody complexes were successfully applied to immunoblot, immunoprecipitation, and flow cytometric analyses, and cotinine-conjugated pegaptanib/anti-cotinine antibody complexes were used successfully in enzyme immunoassays. Our results show that cotinine-conjugated aptamer/anti-cotinine antibody complexes are an effective alternative and complementary technique for aptamer use in multiple assays and experiments.
Animals
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Antibodies, Anti-Idiotypic/immunology/metabolism
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*Aptamers, Nucleotide/chemistry/immunology
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Biological Assay
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*Cotinine/administration & dosage/chemistry
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Flow Cytometry
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Hep G2 Cells
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Humans
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Mice
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NIH 3T3 Cells
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Phosphoproteins/*chemistry/immunology
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Protein Binding
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RNA-Binding Proteins/*chemistry/immunology
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*Vascular Endothelial Growth Factor A/chemistry/immunology
8.T cell receptor β-chain CDR3 spectratyping and cytomegalovirus activation in allogeneic hematopoietic stem cell transplant recipients.
Zhihua WU ; Min JING ; Hanying LIANG ; Rong YANG ; Yaping HUANG ; Xiaoming CHEN ; Jianhua HU ; Jun FAN
Journal of Zhejiang University. Medical sciences 2016;45(5):515-521
To explore the association between T-cell receptor beta variable (TCR BV) complementarity determining region 3 (CDR3) spectratyping and CMV activation in the recipients of allogeneic hematopoietic stem cell transplantation (HSCT).Fluorescence quantitative PCR melting curve analysis was used to sequence 24 TCR BV families in 7 HSCT recipients and 3 healthy controls. CMV-pp65 antigenemia was measured by immunohistochemical staining. Plasma IgM specific for CMV was identified using ELISA. Relationship between TCR BV families and CMV activation was statistically analyzed.Twenty-four TCR BV families were expressed in 3 healthy controls, while TCR BV CDR3 sequencing results in 7 recipients turned out to be BV9, BV11, BV17, BV20 and so on. Amino acid sequence features were as follows:TCR BV9 contained "QVRGGTDTQ", TCR BV11 contained "VATDEQ" and "LGDEQ", TCR BV17 contained "IGQGNTEA", and TCR BV20 contained "VGLAANEQ". Five recipients suffered from pp65 antigenemia in 3 month after transplantation, and pp65-positive cells ranged from 2 to 15 per 5×10white blood cells. Three recipients were CMV-IgM positive. No significant differences were found in TCR BV families between pp65-positive recipients and pp65-negative recipients (all>0.05). But there was statistically significant difference in frequency of TCR BV11 between CMV-IgM negative recipients and CMV-IgM positive recipients (<0.05).T cell immune response was characterized by special TCR BV CDR3 spectratyping in HSCT recipients, and TCR BV11 expression may be associated with CMV activation.
Amino Acid Sequence
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Complementarity Determining Regions
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genetics
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immunology
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Cytomegalovirus
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genetics
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immunology
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Cytomegalovirus Infections
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genetics
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Genotype
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Hematopoietic Stem Cell Transplantation
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adverse effects
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Humans
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Lymphocyte Activation
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genetics
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Phosphoproteins
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Polymerase Chain Reaction
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Polymorphism, Genetic
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immunology
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Receptors, Antigen, T-Cell, alpha-beta
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genetics
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immunology
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Spleen
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T-Lymphocytes
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immunology
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virology
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Viral Matrix Proteins
9.CMV pp65 gene modified dendritic cells activate autologous T cells.
Guang-Xun GAO ; Xie-Qun CHEN ; Jin-Yi ZHANG ; Hua-Feng ZHU ; Bao-Xia DONG ; Hong-Tao GU ; Ying GAO ; Yao-Zhu PAN
Journal of Experimental Hematology 2008;16(2):397-400
Cytomegalovirus (CMV) infection is a dangerous complication in patients with chronic graft versus host disease (cGVHD). CMV-specific immunity depends on the activity of T cells. This study was aimed to investigate the effect of CMV pp65 gene modified dendritic cells (DCs) on activation of autologous T cells. Lentivirus system was utilized to introduce the CMV full-length pp65 gene into mouse DCs; CpG-DNA was used to induce mature DCs; flow cytometry and immunofluorescence were used to determine the expression of antigen and IFNgamma in T lymphocytes. The results showed that the DCs were infected with lentivirus at a multiplicity of infection (MOI) of 50 with optimal infectious efficiency of 30%-40%; mature DCs expressing pp65 gene could stimulate autologous naive T cells to express CD69 specifically; mature DCs expressing PP65 could stimulate autologous CD4+ or CD8+ T cells to produce IFNgamma. It is concluded that CMV pp65-modified and CpG-DNA-induced mature DCs can activate CMV-specific T lymphocytes in vitro.
Animals
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Antigens, CD
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genetics
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metabolism
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Antigens, Differentiation, T-Lymphocyte
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genetics
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metabolism
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Antigens, Viral
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immunology
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CD4-Positive T-Lymphocytes
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immunology
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CD8-Positive T-Lymphocytes
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immunology
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CpG Islands
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genetics
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Cytomegalovirus
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immunology
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DNA
;
genetics
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Dendritic Cells
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cytology
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immunology
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metabolism
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Humans
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Interferon-gamma
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genetics
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metabolism
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Lectins, C-Type
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Lentivirus
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genetics
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metabolism
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Mice
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Phosphoproteins
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genetics
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metabolism
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Viral Matrix Proteins
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genetics
;
metabolism
10.Preparation and detection of phosphorylated PRAS40 (Ser183) polyclonal antibody.
Hao WEI ; Bei HUANG ; Changzhi XU ; Zhuxia ZHENG ; Yu BAI
Chinese Journal of Biotechnology 2009;25(7):1049-1054
PRAS40 (proline-rich Akt substrate 40 kD) associates with mammalian target of rapamycin complex 1(mTORC1), serine 183 site (Ser183) of PRAS40 can be phosphorylated by mTORC1. To prepare the phosphorylated PRAS40 (Ser183) antibody, We chosen 10-amino acid including Ser183 as antigen peptide through antigenicity and hydrophobicity analysis, hinged on keyhole limpet hemocyanin (KLH), and used the KLH-peptide to immunize rabbits. After antibody serum titer detection by enzyme linked immunosorbent assay (ELISA), the antibody was purified with rProtein A sepharose fast flow and dephosphorylated antigen membrane. The antibody titrate reached 1:10 000 after purification and its special property was enhanced with absorption treatment of dephosphorylated antigen membrane. In addition, we used rabbit anti-PRAS40 antibody and the phosphorylated PRAS40 (Ser183) antibody to detect PRAS40 expression in several cell lines, including the normal cells HL7702, HEK293, tumor cells HepG2, A549 and S180. There were no quite difference among these cells; otherwise, we observed the decreased phosphorylation level of Ser183 after amino acid withdrawal treatment. Therefore, the polyclonal phosphorylated PRAS40 (Ser183) antibody was specific to PRAS40 (Ser183) site and could be used for the function study of PRAS40.
Adaptor Proteins, Signal Transducing
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Animals
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Antibodies
;
analysis
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Cell Line, Tumor
;
Humans
;
Male
;
Mechanistic Target of Rapamycin Complex 1
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Multiprotein Complexes
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Phosphoproteins
;
chemistry
;
immunology
;
Proteins
;
genetics
;
metabolism
;
Proto-Oncogene Proteins c-akt
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metabolism
;
Rabbits
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Serine
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metabolism
;
TOR Serine-Threonine Kinases