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Biochemical Features of a Catalytic Antibody Light Chain, 22F6, Prepared from Human Lymphocytes

Human antibody light chains belonging to subgroup II of germ line genes were amplified by a seminested PCR technique using B-lymphocytes taken from a human adult infected with influenza virus. Each gene of the human light chains was transferred into the Escherichia coli system. The recovered light c...

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Autores principales: Hifumi, Emi, Fujimoto, Naoko, Arakawa, Mitsue, Saito, Eri, Matsumoto, Shingo, Kobayashi, Nobuyuki, Uda, Taizo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3707657/
https://www.ncbi.nlm.nih.gov/pubmed/23677996
http://dx.doi.org/10.1074/jbc.M113.454579
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author Hifumi, Emi
Fujimoto, Naoko
Arakawa, Mitsue
Saito, Eri
Matsumoto, Shingo
Kobayashi, Nobuyuki
Uda, Taizo
author_facet Hifumi, Emi
Fujimoto, Naoko
Arakawa, Mitsue
Saito, Eri
Matsumoto, Shingo
Kobayashi, Nobuyuki
Uda, Taizo
author_sort Hifumi, Emi
collection PubMed
description Human antibody light chains belonging to subgroup II of germ line genes were amplified by a seminested PCR technique using B-lymphocytes taken from a human adult infected with influenza virus. Each gene of the human light chains was transferred into the Escherichia coli system. The recovered light chain was highly purified using a two-step purification system. Light chain 22F6 showed interesting catalytic features. The light chain cleaved a peptide bond of synthetic peptidyl-4-methyl-coumaryl-7-amide (MCA) substrates, such as QAR-MCA and EAR-MCA, indicating amidase activity. It also hydrolyzed a phosphodiester bond of both DNA and RNA. From the analysis of amino acid sequences and molecular modeling, the 22F6 light chain possesses two kinds of active sites as amidase and nuclease in close distances. The 22F6 catalytic light chain could suppress the infection of influenza virus type A (H1N1) of Madin-Darby canine kidney cells in an in vitro assay. In addition, the catalytic light chain clearly inhibited the infection of the influenza virus of BALB/c mice via nasal administration in an in vivo assay. In the experiment, the titer in the serum of the mice coinfected with the 22F6 light chain and H1N1 virus became considerably lowered compared with that of 22F6-non-coinfected mice. Note that the catalytic light chain was prepared from human peripheral lymphocyte and plays an important role in preventing infection by influenza virus. Considering the fact that the human light chain did not show any acute toxicity for mice, our procedure developed in this study must be unique and noteworthy for developing new drugs.
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spelling pubmed-37076572013-07-19 Biochemical Features of a Catalytic Antibody Light Chain, 22F6, Prepared from Human Lymphocytes Hifumi, Emi Fujimoto, Naoko Arakawa, Mitsue Saito, Eri Matsumoto, Shingo Kobayashi, Nobuyuki Uda, Taizo J Biol Chem Developmental Biology Human antibody light chains belonging to subgroup II of germ line genes were amplified by a seminested PCR technique using B-lymphocytes taken from a human adult infected with influenza virus. Each gene of the human light chains was transferred into the Escherichia coli system. The recovered light chain was highly purified using a two-step purification system. Light chain 22F6 showed interesting catalytic features. The light chain cleaved a peptide bond of synthetic peptidyl-4-methyl-coumaryl-7-amide (MCA) substrates, such as QAR-MCA and EAR-MCA, indicating amidase activity. It also hydrolyzed a phosphodiester bond of both DNA and RNA. From the analysis of amino acid sequences and molecular modeling, the 22F6 light chain possesses two kinds of active sites as amidase and nuclease in close distances. The 22F6 catalytic light chain could suppress the infection of influenza virus type A (H1N1) of Madin-Darby canine kidney cells in an in vitro assay. In addition, the catalytic light chain clearly inhibited the infection of the influenza virus of BALB/c mice via nasal administration in an in vivo assay. In the experiment, the titer in the serum of the mice coinfected with the 22F6 light chain and H1N1 virus became considerably lowered compared with that of 22F6-non-coinfected mice. Note that the catalytic light chain was prepared from human peripheral lymphocyte and plays an important role in preventing infection by influenza virus. Considering the fact that the human light chain did not show any acute toxicity for mice, our procedure developed in this study must be unique and noteworthy for developing new drugs. American Society for Biochemistry and Molecular Biology 2013-07-05 2013-05-15 /pmc/articles/PMC3707657/ /pubmed/23677996 http://dx.doi.org/10.1074/jbc.M113.454579 Text en © 2013 by The American Society for Biochemistry and Molecular Biology, Inc. Author's Choice—Final version full access. Creative Commons Attribution Unported License (http://creativecommons.org/licenses/by/3.0/) applies to Author Choice Articles
spellingShingle Developmental Biology
Hifumi, Emi
Fujimoto, Naoko
Arakawa, Mitsue
Saito, Eri
Matsumoto, Shingo
Kobayashi, Nobuyuki
Uda, Taizo
Biochemical Features of a Catalytic Antibody Light Chain, 22F6, Prepared from Human Lymphocytes
title Biochemical Features of a Catalytic Antibody Light Chain, 22F6, Prepared from Human Lymphocytes
title_full Biochemical Features of a Catalytic Antibody Light Chain, 22F6, Prepared from Human Lymphocytes
title_fullStr Biochemical Features of a Catalytic Antibody Light Chain, 22F6, Prepared from Human Lymphocytes
title_full_unstemmed Biochemical Features of a Catalytic Antibody Light Chain, 22F6, Prepared from Human Lymphocytes
title_short Biochemical Features of a Catalytic Antibody Light Chain, 22F6, Prepared from Human Lymphocytes
title_sort biochemical features of a catalytic antibody light chain, 22f6, prepared from human lymphocytes
topic Developmental Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3707657/
https://www.ncbi.nlm.nih.gov/pubmed/23677996
http://dx.doi.org/10.1074/jbc.M113.454579
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