Attachment and Infection to MA104 Cells of Avian Rotaviruses Require the Presence of Sialic Acid on the Cell Surface

To determine the characters of receptors on target cells for avian rotaviruses, the receptors on MA104 cells for the pigeon rotavirus PO-13, the turkey rotaviruses Ty-1 and Ty-3, and the chicken rotavirus Ch-1 were analyzed. Pretreatment of MA104 cells with neuraminidase greatly reduced the infectio...

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Published inJournal of Veterinary Medical Science Vol. 66; no. 4; pp. 461 - 463
Main Authors MINAMOTO, Nobuyuki, SUGIYAMA, Makoto, MORI, Yoshio, GOTO, Kazuo, UEMUKAI, Hiroko, ITO, Naoto
Format Journal Article
LanguageEnglish
Published Japan JAPANESE SOCIETY OF VETERINARY SCIENCE 01.04.2004
Japan Science and Technology Agency
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ISSN0916-7250
1347-7439
DOI10.1292/jvms.66.461

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Abstract To determine the characters of receptors on target cells for avian rotaviruses, the receptors on MA104 cells for the pigeon rotavirus PO-13, the turkey rotaviruses Ty-1 and Ty-3, and the chicken rotavirus Ch-1 were analyzed. Pretreatment of MA104 cells with neuraminidase greatly reduced the infection by all of the four avian rotavirus strains. Binding of the cell-attachment protein, purified VP8 expressed in bacteria, of strain PO-13 to MA104 cells was also inhibited by pretreatment of cells with neuraminidase. These findings suggest that avian rotaviruses primarily utilize sialic acid-containing molecules as receptors on MA 104 cells.
AbstractList To determine the characters of receptors on target cells for avian rotaviruses, the receptors on MA104 cells for the pigeon rotavirus PO-13, the turkey rotaviruses Ty-1 and Ty-3, and the chicken rotavirus Ch-1 were analyzed. Pretreatment of MA104 cells with neuraminidase greatly reduced the infection by all of the four avian rotavirus strains. Binding of the cell-attachment protein, purified VP8 expressed in bacteria, of strain PO-13 to MA104 cells was also inhibited by pretreatment of cells with neuraminidase. These findings suggest that avian rotaviruses primarily utilize sialic acid-containing molecules as receptors on MA 104 cells.
To determine the characters of receptors on target cells for avian rotaviruses, the receptors on MA104 cells for the pigeon rotavirus PO-13, the turkey rotaviruses Ty-1 and Ty-3, and the chicken rotavirus Ch-1 were analyzed. Pretreatment of MA104 cells with neuraminidase greatly reduced the infection by all of the four avian rotavirus strains. Binding of the cell-attachment protein, purified VP8 expressed in bacteria, of strain PO-13 to MA104 cells was also inhibited by pretreatment of cells with neuraminidase. These findings suggest that avian rotaviruses primarily utilize sialic acid-containing molecules as receptors on MA 104 cells.To determine the characters of receptors on target cells for avian rotaviruses, the receptors on MA104 cells for the pigeon rotavirus PO-13, the turkey rotaviruses Ty-1 and Ty-3, and the chicken rotavirus Ch-1 were analyzed. Pretreatment of MA104 cells with neuraminidase greatly reduced the infection by all of the four avian rotavirus strains. Binding of the cell-attachment protein, purified VP8 expressed in bacteria, of strain PO-13 to MA104 cells was also inhibited by pretreatment of cells with neuraminidase. These findings suggest that avian rotaviruses primarily utilize sialic acid-containing molecules as receptors on MA 104 cells.
Author MINAMOTO, Nobuyuki
GOTO, Kazuo
UEMUKAI, Hiroko
MORI, Yoshio
SUGIYAMA, Makoto
ITO, Naoto
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  fullname: SUGIYAMA, Makoto
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  fullname: MORI, Yoshio
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  fullname: GOTO, Kazuo
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Snippet To determine the characters of receptors on target cells for avian rotaviruses, the receptors on MA104 cells for the pigeon rotavirus PO-13, the turkey...
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SubjectTerms Animals
Birds - virology
Blotting, Western
Capsid Proteins - genetics
Capsid Proteins - metabolism
Cells, Cultured
DNA Primers
DNA, Complementary - genetics
Dose-Response Relationship, Drug
Electrophoresis, Polyacrylamide Gel
Glutathione Transferase - metabolism
Neuraminidase - pharmacology
Protein Binding - drug effects
Receptors, Cell Surface - metabolism
Rotavirus
Rotavirus - metabolism
sialic acid
VP8
Title Attachment and Infection to MA104 Cells of Avian Rotaviruses Require the Presence of Sialic Acid on the Cell Surface
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