Rubella virus: Difference between revisions

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==Genome Structure==
==Genome Structure==
The Rubella virus genome is composed of 9762 [[nucleotides]] and encodes 2 nonstructural [[polypeptides]] (p150 and p90) within its 5′-terminal two-thirds and 3 structural [[polypeptides]] (C, E2, and E1) within its 3′-terminal one-third. Both [[envelope proteins]] E1 and E2 are [[glycosylated]]. The Rubella virus has the highest concentration of G/C [[nucleotides]] of any [[RNA virus]], with 69.5% of the [[genome]] consisting of those [[nucleotide|nucleotides]]. Rubella has been sequenced completely for three strains showing >95% homology between the three strains.<br>
The Rubella virus genome is composed of 9762 [[nucleotides]] and encodes 2 nonstructural [[polypeptides]] (p150 and p90) within its 5′-terminal two-thirds and 3 structural [[polypeptides]] (C, E2, and E1) within its 3′-terminal one-third. Both [[envelope proteins]] E1 and E2 are [[glycosylated]]. The Rubella virus has the highest concentration of G/C [[nucleotides]] of any [[RNA virus]], with 69.5% of the [[genome]] consisting of those [[nucleotide|nucleotides]]. Rubella has been sequenced completely for three strains showing >95% [[homology]] between the three strains.<br>


There are three sites that are highly conserved in [[Togaviruses]]:  
There are three sites that are highly conserved in [[Togaviruses]]:  
*A [[stem-and-loop]] structure at the 5' end of the [[genome]]  
*A [[Stem-loop|stem-and-loop]] structure at the 5' end of the [[genome]]  
*A 51-[[nucleotide]] conserved sequence near the 5' end of the [[genome]] and  
*A 51-[[nucleotide]] conserved sequence near the 5' end of the [[genome]] and  
*A 20-[[nucleotide]] conserved sequence at the subgenomic [[RNA]] start site. [[Homologous sequences]] are present in the rubella [[genome]].<br>
*A 20-[[nucleotide]] conserved sequence at the subgenomic [[RNA]] start site. [[Homologous sequences]] are present in the rubella [[genome]].<br>

Revision as of 15:31, 16 January 2017

Editor-In-Chief: C. Michael Gibson, M.S., M.D. [1]; Associate Editor(s)-in-Chief: Dima Nimri, M.D. [2]

Overview

Rubella virus is a single stranded, positive sense RNA virus (ssRNA). It is the only member of the genus Rubivirus belongs to the family of Togaviridae. Rubella virus is only known to infect humans, and it is responsible for causing the common childhood Rubella infection. Rubella infection is also known as German Measles or Three Day Measles. The most devastating consequence is when Rubella virus infects pregnant women during their first trimester, as it may result in congenital rubella syndrome in the newborn. Rubella infection has largely been eradicated in the developed world since the introduction of the MMR vaccine. However, it is still a challenge in many parts of the developing world due to cost and availability of the MMR vaccine.

Genome Structure

The Rubella virus genome is composed of 9762 nucleotides and encodes 2 nonstructural polypeptides (p150 and p90) within its 5′-terminal two-thirds and 3 structural polypeptides (C, E2, and E1) within its 3′-terminal one-third. Both envelope proteins E1 and E2 are glycosylated. The Rubella virus has the highest concentration of G/C nucleotides of any RNA virus, with 69.5% of the genome consisting of those nucleotides. Rubella has been sequenced completely for three strains showing >95% homology between the three strains.

There are three sites that are highly conserved in Togaviruses:

The genome encodes several non-coding RNA structures. Among those is the rubella virus 3' cis-acting element, which contains multiple stem-loops and one of the stem-loop structures has been found to be essential for viral replication.


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