Formation of c Show more There are two proposed mechanisms for how togaviruses assemble their virions. a. Formation of complete nucleocapsids in the cytoplasm. These nucleocapsids then associate with the tails of the envelope glycoproteins which bind to a hydrophobic pocket on the capsid protein.
Formation of c Show more There are two proposed mechanisms for how togaviruses assemble their virions. a. Formation of complete nucleocapsids in the cytoplasm. These nucleocapsids then associate with the tails of the envelope glycoproteins which bind to a hydrophobic pocket on the capsid protein.
As the nucleocapsid buds through the plasma membrane the association between the tail of one glycoprotein with one of the capsid proteins produces the same T=4 iscosahedral structure in the envelope that is seen in the capsid. Or the capsid proteins bind to the genomic RNA in a complex that is not as structured as the complete nucleocapsid. These complexes also bind to the tails of the glycoproteins. The association between each capsid protein with a glycoprotein nucleates the assembly of the nucleocapsid as it buds through the plasma membrane allowing the capsid to form during the budding process. b. Formation of complete nucleocapsids in the cytoplasm. These nucleocapsids then associate with the tails of the envelope glycoproteins which bind to a hydrophobic pocket on the capsid protein. As the nucleocapsid buds through the golgi membrane the association between the tail of one glycoprotein with one of the capsid proteins produces the same T=4 iscosahedral structure in the envelope that is seen in the capsid. Or the capsid proteins bind to the genomic RNA in a complex that is not as structured as the complete nucleocapsid. Nucleocapsids bud through the golgi membrane allowing the capsid to form during the budding process. c. Formation of complete nucleocapsids in the cytoplasm. These nucleocapsids then associate with the tails of the envelope glycoproteins which bind to a hydrophobic pocket on the capsid protein. As the nucleocapsid buds through the nuclear membrane the association between the tail of one glycoprotein with one of the capsid proteins produces the same T=4 iscosahedral structure in the envelope that is seen in the capsid. Or the capsid proteins bind to the genomic RNA in a complex that is not as structured as the complete nucleocapsid. These complexes also bind to the tails of the glycoproteins. The association between each capsid protein with a glycoprotein nucleates the assembly of the nucleocapsid as it buds through the nuclear membrane allowing the capsid to form during the budding process. d. Formation of complete nucleocapsids in the cytoplasm. These nucleocapsids then associate with the tails of the envelope glycoproteins which bind to a hydrophobic pocket on the capsid protein. As the nucleocapsid buds through the nuclear membrane the association between the tail of one glycoprotein with one of the capsid proteins produces the same T=4 iscosahedral structure in the envelope that is seen in the capsid. Or the capsid proteins bind to the genomic RNA in a complex that is not as structured as the complete nucleocapsid. These complexes also bind to the tails of the glycoproteins. The association between each capsid protein with a glycoprotein nucleates the assembly of the nucleocapsid as it buds through the plasma membrane allowing the capsid to form during the budding process. e. Formation of complete nucleocapsids in the cytoplasm. These nucleocapsids then associate with the tails of the envelope glycoproteins which bind to a hydrophobic pocket on the capsid protein. As the nucleocapsid buds through the plasma membrane the association between the tail of one glycoprotein with one of the capsid proteins produces the same T=4 iscosahedral structure in the envelope that is seen in the capsid. Or the capsid proteins bind to the genomic RNA in a complex that is not as structured as the complete nucleocapsid. Nucleocapsids bud through the golgi membrane allowing the capsid to form during the budding process. Show less

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