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Overexpression of bovine leukemia virus receptor SLC7A1/CAT1 enhances cellular susceptibility to BLV infection on luminescence syncytium induction assay (LuSIA)
by
Aida, Yoko
, Borjigin, Liushiqi
, Sato, Hirotaka
, Bai, Lanlan
in
Animals
/ Antibodies
/ Biomedical and Life Sciences
/ Biomedicine
/ Bovine leukemia virus
/ Bovine leukosis
/ CAT1/SLC7A1
/ Cationic Amino Acid Transporter 1 - genetics
/ Cattle
/ Cattle industry
/ Cell Line
/ cell lines
/ Cloning
/ coculture
/ Coculture Techniques
/ Disease susceptibility
/ enzootic bovine leukosis
/ Fluorescence
/ giant cells
/ Giant Cells - virology
/ Green fluorescent protein
/ Green Fluorescent Proteins - genetics
/ Infection
/ Infections
/ Infectivity
/ Leukemia
/ Leukemia Virus, Bovine - genetics
/ Leukemia Virus, Bovine - immunology
/ Leukemia Virus, Bovine - pathogenicity
/ Leukosis
/ Luminescence
/ Luminescence syncytium induction assay
/ Luminescent Measurements - methods
/ Neomycin
/ pathogenicity
/ plasmids
/ Proteins
/ Receptor
/ Receptors, Virus - genetics
/ Retroviruses
/ Scientific equipment industry
/ Sensitivity and Specificity
/ Short Report
/ Syncytia
/ Virology
/ virus receptors
2020
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Overexpression of bovine leukemia virus receptor SLC7A1/CAT1 enhances cellular susceptibility to BLV infection on luminescence syncytium induction assay (LuSIA)
by
Aida, Yoko
, Borjigin, Liushiqi
, Sato, Hirotaka
, Bai, Lanlan
in
Animals
/ Antibodies
/ Biomedical and Life Sciences
/ Biomedicine
/ Bovine leukemia virus
/ Bovine leukosis
/ CAT1/SLC7A1
/ Cationic Amino Acid Transporter 1 - genetics
/ Cattle
/ Cattle industry
/ Cell Line
/ cell lines
/ Cloning
/ coculture
/ Coculture Techniques
/ Disease susceptibility
/ enzootic bovine leukosis
/ Fluorescence
/ giant cells
/ Giant Cells - virology
/ Green fluorescent protein
/ Green Fluorescent Proteins - genetics
/ Infection
/ Infections
/ Infectivity
/ Leukemia
/ Leukemia Virus, Bovine - genetics
/ Leukemia Virus, Bovine - immunology
/ Leukemia Virus, Bovine - pathogenicity
/ Leukosis
/ Luminescence
/ Luminescence syncytium induction assay
/ Luminescent Measurements - methods
/ Neomycin
/ pathogenicity
/ plasmids
/ Proteins
/ Receptor
/ Receptors, Virus - genetics
/ Retroviruses
/ Scientific equipment industry
/ Sensitivity and Specificity
/ Short Report
/ Syncytia
/ Virology
/ virus receptors
2020
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Overexpression of bovine leukemia virus receptor SLC7A1/CAT1 enhances cellular susceptibility to BLV infection on luminescence syncytium induction assay (LuSIA)
by
Aida, Yoko
, Borjigin, Liushiqi
, Sato, Hirotaka
, Bai, Lanlan
in
Animals
/ Antibodies
/ Biomedical and Life Sciences
/ Biomedicine
/ Bovine leukemia virus
/ Bovine leukosis
/ CAT1/SLC7A1
/ Cationic Amino Acid Transporter 1 - genetics
/ Cattle
/ Cattle industry
/ Cell Line
/ cell lines
/ Cloning
/ coculture
/ Coculture Techniques
/ Disease susceptibility
/ enzootic bovine leukosis
/ Fluorescence
/ giant cells
/ Giant Cells - virology
/ Green fluorescent protein
/ Green Fluorescent Proteins - genetics
/ Infection
/ Infections
/ Infectivity
/ Leukemia
/ Leukemia Virus, Bovine - genetics
/ Leukemia Virus, Bovine - immunology
/ Leukemia Virus, Bovine - pathogenicity
/ Leukosis
/ Luminescence
/ Luminescence syncytium induction assay
/ Luminescent Measurements - methods
/ Neomycin
/ pathogenicity
/ plasmids
/ Proteins
/ Receptor
/ Receptors, Virus - genetics
/ Retroviruses
/ Scientific equipment industry
/ Sensitivity and Specificity
/ Short Report
/ Syncytia
/ Virology
/ virus receptors
2020
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Overexpression of bovine leukemia virus receptor SLC7A1/CAT1 enhances cellular susceptibility to BLV infection on luminescence syncytium induction assay (LuSIA)
Journal Article
Overexpression of bovine leukemia virus receptor SLC7A1/CAT1 enhances cellular susceptibility to BLV infection on luminescence syncytium induction assay (LuSIA)
2020
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Overview
Bovine leukemia virus (BLV) causes enzootic bovine leukosis, the most common neoplastic disease in cattle. We previously reported the development and protocol of the luminescence syncytium induction assay (LuSIA), a method for evaluating BLV infectivity based on CC81-GREMG cells. These cells form syncytia expressing enhanced green fluorescent protein when co-cultured with BLV-infected cells. Recently, we confirmed CAT1/SLC7A1 functions as a receptor of BLV. Here, we focused on CAT1/SLC7A1 to increase the sensitivity of LuSIA. We constructed a bovine CAT1-expressing plasmid and established a new CC81-GREMG-derived reporter cell line highly expressing bovine CAT1 (CC81-GREMG-CAT1). The new LuSIA protocol using CC81-GREMG-CAT1 cells measures cell-to-cell infectivity and cell-free infectivity of BLV faster and with greater sensitivity than the previous protocol using CC81-GREMG. The new LuSIA protocol is quantitative and more sensitive than the previous assay based on CC81-GREMG cells and will facilitate the development of several new BLV assays.
Publisher
BioMed Central,BioMed Central Ltd,Springer Nature B.V,BMC
Subject
/ Biomedical and Life Sciences
/ Cationic Amino Acid Transporter 1 - genetics
/ Cattle
/ Cloning
/ Green Fluorescent Proteins - genetics
/ Leukemia
/ Leukemia Virus, Bovine - genetics
/ Leukemia Virus, Bovine - immunology
/ Leukemia Virus, Bovine - pathogenicity
/ Leukosis
/ Luminescence syncytium induction assay
/ Luminescent Measurements - methods
/ Neomycin
/ plasmids
/ Proteins
/ Receptor
/ Scientific equipment industry
/ Syncytia
/ Virology
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