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rubella/proline

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Nucleotide sequence of the rubella virus capsid protein gene reveals an unusually high G/C content.

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The nucleotide sequence of the rubella virus capsid protein (C) gene has been determined from a cDNA clone derived from the 40S genomic RNA. The sequence covers the coding region of the C protein (831 nucleotides), 70 nucleotides of the 5' untranslated region, and the 5' end of the downstream E2
Rubella virus particles, consisting of a nucleocapsid surrounded by a lipid envelope in which two virus-encoded glycoproteins E1 and E2 are embedded, assemble on intracellular membranes and are secreted from cells, possibly via the cellular secretory pathway. We have recently demonstrated that the

Binding of cellular p32 protein to the rubella virus P150 replicase protein via PxxPxR motifs.

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A proline-rich region (PRR) within the rubella virus (RUBV) P150 replicase protein that contains three SH3 domain-binding motifs (PxxPxR) was investigated for its ability to bind cell proteins. Pull-down experiments using a glutathione S-transferase-PRR fusion revealed PxxPxR motif-specific binding

Calreticulin binds hYRNA and the 52-kDa polypeptide component of the Ro/SS-A ribonucleoprotein autoantigen.

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Calreticulin (CR) is a multifunctional, calcium-binding protein that has recently been shown to bind to and promote the replication of the rubella virus genome in mammalian cells. While CR is now widely recognized as a new human autoantigen, the relationship between CR and the Ro/SS-A
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