1.Progress in preparation of small monoclonal antibodies of knock out technique.
Jing LIU ; Xin-min MAO ; Lin-lin LI ; Xin-xia LI ; Ye WANG ; Yi LAN
China Journal of Chinese Materia Medica 2015;40(19):3737-3741
With the application of monoclonal antibody technology more and more widely, its production technology is becoming more and more perfect. Small molecule monoclonal antibody technology is becoming a hot research topic for people. The application of traditional Chinese medicine small molecule monoclonal antibody technology has been more and more widely, the technology for effective Chinese medicine component knockout provide strong technical support. The preparation of monoclonal antibodies and small molecule knockout technology are reviewed in this paper. The preparation of several steps, such as: in the process of preparation of antigen, hapten carrier coupling, coupling ratio determination and identification of artificial antigen and establishment of animal immunization and hybridoma cell lines of monoclonal antibody, the large-scale preparation; small molecule monoclonal antibody on Immune in affinity chromatography column method is discussed in detail. The author believes that this technology will make the traditional Chinese medicine research on a higher level, and improve the level of internationalization of Chinese medicine research.
Animals
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Antibodies, Monoclonal
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chemistry
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genetics
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immunology
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Humans
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Hybridomas
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metabolism
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Immunologic Techniques
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methods
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trends
2.Expression and renaturation of a novel human single-chain Fv antibody against SARS-CoV.
Jin-Zhu DUAN ; Cai QI ; Wei HAN ; Zhan-Hui WANG ; Gang JIN ; Xi-Yun YAN
Chinese Journal of Biotechnology 2005;21(5):692-697
A novel human ScFv H12 against SARS-CoV has been selected from a SARS immune library. In order to produce a large amount of ScFv H12, pET28a-H12 expression vector was constructed and ScFv H12 was expressed at yield about 30% of total proteins in E. coli . Here two different refolding procedures were used to refold ScFv H12 from inclusion body: gel filtration chromatography and dilution. The results showed that ScFv H12 could be efficiently refolded by both procedures. However, the refolding via gel filtration was 1.5 time more effective than that of dilution. The affinity of ScFv H12 to SARS-CoV virion was detected as Kd = 73.5 nmol/mL.
Antibodies, Monoclonal
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biosynthesis
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genetics
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Antibodies, Viral
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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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Humans
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Immunoglobulin Fragments
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biosynthesis
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genetics
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immunology
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Immunoglobulin Variable Region
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biosynthesis
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genetics
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immunology
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Inclusion Bodies
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genetics
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immunology
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Protein Renaturation
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Recombinant Proteins
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biosynthesis
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chemistry
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immunology
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SARS Virus
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immunology
3.Application of monoclonal antibody immobilized polyurethane film for site-specific gene therapy.
Lin-Hua ZHANG ; Cun-Xian SONG ; Man-Yan WANG ; Jing YANG ; Li-Na TANG
Acta Academiae Medicinae Sinicae 2006;28(3):350-354
OBJECTIVETo study the feasibility of delivering viral gene vector from a collagen-coated polyurethane (PU) film through a mechanism involving monoclonal antiviral antibody tethering.
METHODSAnti-adenoviral monoclonal antibodies were covalently bound to the collagen-coated PU surface. These antibodies enabled tethering of replication defective adenoviruses through highly specific antigen-antibody affinity. The PU film-based gene delivery using antibody-tethered adenovirus encoding green fluorescent protein (GEP) was tested in rat arterial smooth muscle cell (A10 cell) culture in vitro. The virus binding stability was studied by incubating the collagen-coated PU film in PBS solution at 37 degrees C for 20 days, followed with A10 cell cultures with the incubated films and the corresponding buffer solution.
RESULTSPU films with antibody-tethered adenovirus encoding GFP demonstrated efficient and highly localized gene delivery to A10 cells. Virus binding was stable for at least 10 days at physiological conditions, more than 77% of the originally bound virus remained in the film after 15 day's incubation.
CONCLUSIONGene delivery using PU film-based anti-viral antibody tethering of vectors exhibited potentials of applications in a wide array of single or multiple therapeutic gene strategies, and in further stent-based gene delivery therapeutic strategies.
Adenoviridae ; genetics ; Antibodies, Monoclonal ; immunology ; Antibody Specificity ; immunology ; Gene Transfer Techniques ; Genetic Therapy ; Genetic Vectors ; Humans ; Polyurethanes ; chemistry ; Protein Binding
4.Generation and epitope mapping of a monoclonal antibody against nucleoprotein of Ebola virus.
Xiaodu WANG ; Yang LIU ; Haoting WANG ; Zixue SHI ; Fanfan ZHAO ; Jianchao WEI ; Donghua SHAO ; Zhiyong MA
Chinese Journal of Biotechnology 2012;28(11):1317-1327
Ebola virus (EBOV) causes highly lethal hemorrhagic fever in humans and nonhuman primates and has a significant impact on public health. The nucleoprotein (NP) of EBOV (EBOV-NP) plays a central role in virus replication and has been used as a target molecule for disease diagnosis. In this study, we generated a monoclonal antibody (MAb) against EBOV-NP and mapped the epitope motif required for recognition by the MAb. The MAb generated via immunization of mice with prokaryotically expressed recombinant NP of the Zaire Ebola virus (ZEBOV-NP) was specific to ZEBOV-NP and able to recognize ZEBOV-NP expressed in prokaryotic and eukaryotic cells. The MAb cross-reacted with the NP of the Reston Ebola virus (REBOV), the Cote-d'Ivoire Ebola virus (CIEBOV) and the Bundibugyo Ebola virus (BEBOV) but not with the NP of the Sudan Ebola virus (SEBOV) or the Marburg virus (MARV). The minimal epitope sequence required for recognition by the MAb was the motif PPLESD, which is located between amino acid residues 583 and 588 at the C-terminus of ZEBOV-NP and well conserved among all 16 strains of ZEBOV, CIEBOV and BEBOV deposited in GenBank. The epitope motif is conserved in four out of five strains of REBOV.
Animals
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Antibodies, Monoclonal
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immunology
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Ebolavirus
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chemistry
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immunology
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Epitope Mapping
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methods
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Escherichia coli
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genetics
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metabolism
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Mice
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Mice, Inbred BALB C
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Nucleoproteins
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immunology
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Recombinant Proteins
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biosynthesis
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genetics
;
immunology
5.Regulation of Fc receptor expression by immune complexes on neutrophils and U937 cells.
Acta Academiae Medicinae Sinicae 2004;26(5):510-514
OBJECTIVETo study the regulation of Fc receptor expression by immune complexes (ICs) on neutrophils and U937 cells.
METHODSIgA ICs, IgG1 ICs, IgG2 ICs, IgG3 ICs, IgG4 ICs, and IgM ICs were incubated with neutrophils or U937 cells for 1 h. Then their surface Fc receptors were stained by anti-Fc gammaR I, anti-Fc gammaR II , anti-Fc gammaR III, and anti-Fc alphaR I monoclonal antibodies and analyzed by fluorescent activated cell sorting (FACS).
RESULTSIgG1 ICs and IgG3 ICs up-regulated Fc gammaR II and Fc gammaR III on U937 cells, Fc gammaR I and Fc alphaR I on neutrophils. Almost all ICs down-regulated Fc gammaR II on neutrophils.
CONCLUSIONSICs can regulate Fc receptor expression on neutrophils and U937 cells, among which IgG1 ICs and IgG3 ICs are most effective.
Antibodies, Anti-Idiotypic ; immunology ; Antibodies, Monoclonal ; pharmacology ; Antigen-Antibody Complex ; immunology ; metabolism ; Antigens, CD ; immunology ; Humans ; Immunoglobulin A ; classification ; immunology ; Immunoglobulin G ; chemistry ; classification ; immunology ; metabolism ; Neutrophils ; metabolism ; Receptors, Fc ; biosynthesis ; genetics ; Receptors, IgG ; immunology ; U937 Cells ; immunology
6.Identification of peptide mimotopes of an abroad-spectrum neutralizing epitope of highly pathogenic avian influenza hemagglutinin.
Hui-Juan SONG ; Wen-Xin LUO ; Zhen-Hua ZHENG ; Ying-Wei CHEN ; Yi-Xin CHEN ; Zi-Min CHEN ; Jun ZHANG ; Ning-Shao XIA
Chinese Journal of Virology 2008;24(6):421-426
A monoclonal antibody (8H5), which showed strong neutralization activity against 33 strains of H5N1 viruses isolated from hosts at various regions from 2002 to 2006, was characterized in our lab recently. This result indicated the presence of highly conserved neutralizing site on hemagglutinin (HA) of various H5N1 subtypes. In the present study, the peptide phage display technique was applied to generate mimotope of the conserved neutralizing epitope recognized by 8H5 mAb. Five peptides displayed on phage were identified to specifically bind to 8H5 mAb. One of the five peptides, 123, was further displayed on the virus-like particle assembled from aa 1-149 fragment of HBcAg. The chimeric particle HBc-T123 conserved the specific binding to 8H5 mAb, and competed with H5N1 viruses for 8H5 mAb. The antiserum induced by HBc-T123 intensively stained on SF21 cells infected by recombinant baculovirus containing HA gene of YU22 virus, indicating the production of cross-reactive antibody to H5N1 HA.
Amino Acid Sequence
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Animals
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Antibodies, Monoclonal
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immunology
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Epitopes
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chemistry
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genetics
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immunology
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Hemagglutinin Glycoproteins, Influenza Virus
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chemistry
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genetics
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immunology
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Humans
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Influenza A Virus, H5N1 Subtype
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chemistry
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genetics
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immunology
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Influenza, Human
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virology
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Mice
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Mice, Inbred BALB C
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Molecular Sequence Data
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Peptide Library
7.Preparation and characterization of specific monoclonal antibodies against hexon of HAdV 3.
Rong ZHOU ; Hui-Ying SHENG ; Xin-Gui TIAN ; Chang-Bing WANG ; Si-Tang GONG ; Qiao-Lian CHEN
Journal of Southern Medical University 2008;28(6):1008-1010
OBJECTIVETo obtain the monoclonal antibody against hexon protein of human adenovirus.
METHODSBALB/c mice were immunized with purified recombinant hexon protein, and the spleen cells of the mice were isolated and fused with myloma cells. Four hybridoma cell strains were screened by indirect ELISA and cultured, and the sensitivity, specificity and virus neutralizing activity were analyzed with ELISA, Western blotting and neutralizing test.
RESULTSThe mouse ascites produced by these hybridoma cells contained specific monoclonal antibodies against hexon protein of human adenovirus as identified by ELISA and Western blot, and the antibody generated by 4C6 strain showed human adenovirus type 3-neutralizing activity.
CONCLUSIONThe monoclonal antibodies against hexon protein with high specificity have been successfully obtained, and these antibodies can be useful in developing assays for early diagnosis of HAdV3 infection and also in study of therapeutic drugs of the infection.
Adenoviruses, Human ; chemistry ; immunology ; Animals ; Antibodies, Monoclonal ; biosynthesis ; immunology ; Antibodies, Viral ; biosynthesis ; immunology ; Blotting, Western ; Capsid Proteins ; biosynthesis ; genetics ; immunology ; Enzyme-Linked Immunosorbent Assay ; Escherichia coli ; genetics ; Humans ; Hybridomas ; secretion ; Mice ; Mice, Inbred BALB C ; Recombinant Proteins ; biosynthesis ; immunology
8.Preparation of monoclonal antibody against lung cancer and identification of its targeting antigen.
Zejun LU ; Qifang SONG ; Qi SONG ; Shasha JIANG ; Jinliang YANG ; Feng LUO
Journal of Biomedical Engineering 2010;27(1):147-151
A mouse-anti-human monoclonal antibody was produced by using the membrane proteins of human lung carcinoma cell line A549 as the immunogen to generate monoclonal antibodies against lung carcinoma with the use of hybridoma techniques. McAb4E7 was prepared successfully. To identify its antigen, proteomic technologies such as two-dimenstional electrophoresis, western blotting and mass spectrometry were employed. The targeting antigen of McAb4E7 expressed positive in human lung cancer cell lines A549 and human hepatocarcinoma cell line HepG2, moreover, the expression of the antigen was stronger in A549 cells. Finally, we obtained one positive protein in A549 cell line that has strong affinity and specificity for McAb4E7, which was identified to be ATP synthase beta subunit. We identified ATP synthase beta subunit as the targeting antigen of lung carcinoma special monoclonal antibody McAb4E7.
Animals
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Antibodies, Monoclonal
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biosynthesis
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chemistry
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immunology
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Antibodies, Neoplasm
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immunology
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Antibody Specificity
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Antigens, Neoplasm
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genetics
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immunology
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Cell Line, Tumor
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Humans
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Lung Neoplasms
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immunology
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Membrane Proteins
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immunology
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Mice
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Mice, Inbred BALB C
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Mitochondrial Proton-Translocating ATPases
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immunology
9.Epitope mapping of hepatitis C virus non-structure protein 5 from a 7 peptide phage library by using immobilized specific monoclonal antibody.
Yan Wei ZHONG ; Jun CHENG ; Gang WANG ; Xiao Jun TIAN ; Xinhua CHEN ; Yan LIU ; Li LI ; Ling Xia ZHANG ; Ju Mei CHEN
Chinese Journal of Hepatology 2002;10(4):266-268
OBJECTIVETo screen HCV NS5 mimotopes by using monoclonal antibody and phage peptide library.
METHODSBy using HCV NS5 monoclonal antibody as selective molecule, a 7 peptide phage library was biopanned and positive clones were selected by ELISA, competition assay and DNA sequencing.
RESULTSTwelve positive clones were chosen for DNA sequencing. From the experiment and sequencing comparison results, one epitope was confirmed as the mimotope of HCV NS5.
CONCLUSIONSHCV mimotope is obtained by phage peptide library screening. The result provides a new approach for HCV therapy and vaccine development.
Amino Acid Sequence ; Antibodies, Monoclonal ; immunology ; Enzyme-Linked Immunosorbent Assay ; Epitope Mapping ; Hepatitis C ; therapy ; Peptide Library ; Viral Nonstructural Proteins ; chemistry ; genetics ; immunology ; Viral Vaccines ; immunology
10.Investigation of a special neutralizing epitope of HEV E2s.
Min YOU ; Lu XIN ; Yi YANG ; Xiao ZHANG ; Yingwei CHEN ; Hai YU ; Shaowei LI ; Jun ZHANG ; Zhiqiang AN ; Wenxin LUO ; Ningshao XIA
Protein & Cell 2014;5(12):950-953
Antibodies, Monoclonal
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chemistry
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immunology
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Antigens, Viral
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chemistry
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genetics
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immunology
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Binding Sites
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Capsid Proteins
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chemistry
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genetics
;
immunology
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Epitopes
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chemistry
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genetics
;
immunology
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Escherichia coli
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genetics
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metabolism
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Gene Expression
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Hepatitis E
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immunology
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prevention & control
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virology
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Hepatitis E virus
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chemistry
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immunology
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Humans
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Molecular Docking Simulation
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Mutagenesis, Site-Directed
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Peptide Mapping
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Protein Binding
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Recombinant Proteins
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chemistry
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genetics
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immunology
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Viral Hepatitis Vaccines
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administration & dosage
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biosynthesis