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      • The dengue virus genome is a single strand of RNA. It is referred to as positive-sense RNA because it can be directly translated into proteins. The viral genome encodes ten genes (Figure 2). The genome is translated as a single, long polypeptide and then cut into ten proteins.
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  2. en.wikipedia.org › wiki › Dengue_virusDengue virus - Wikipedia

    The DENV genome is about 11000 bases of positive-sense, single-stranded RNA (ssRNA) that codes for three structural proteins (capsid protein C, membrane protein M, envelope protein E) and seven nonstructural proteins (NS1, NS2a, NS2b, NS3, NS4a, NS4b, NS5).

  3. Sep 20, 2019 · Dengue virus (DENV) belongs to the family Flaviviridae, genus Flavivirus. It is a single-stranded positive-sense ribonucleic acid virus with 10,700 bases. The genus Flavivirus includes other arthropod borne viruses such as yellow fever virus, West Nile virus, Zika virus, tick-borne encephalitis virus.

    • Amudhan Murugesan, Mythreyee Manoharan
    • 2020
    • 10.1016/B978-0-12-819400-3.00016-8
  4. The dengue virus genome is a single strand of RNA. It is referred to as positive-sense RNA because it can be directly translated into proteins. The viral genome encodes ten genes (Figure 2).

  5. The dengue virus genome encodes three structural (capsid [C], membrane [M], and envelope [E]) and seven nonstructural (NS1, NS2A, NS2B, NS3, NS4A, NS4B, and NS5) proteins.

  6. This image is linked to the following Scitable pages: Dengue Viruses. Like other viruses, the dengue virus is a microscopic structure that can only replicate inside a host organism. The...

  7. Using the RNA's positive-sense RNA as a template a negative-sense copy is made. The pair of RNA strands forms a double helix. The RNA then becomes a circle again. This time the negative-sense strand acts as a template to make a positive-sense strand. Many copies of the positive-sense RNA strand are made by repeated cycles of RNA synthesis.

  8. May 17, 2021 · Here, we profiled the RNA secondary structure of > 7000 complete viral genomes from 11 different species focusing on viral hemorrhagic fevers, including DENV serotypes, EBOV, and YFV. Results.

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