9477 / 2027

Lesson 3 of 6 / Viral and bacterial genetics

Influenza: copy RNA and bud

How does an RNA virus use a cell that normally transcribes DNA?

In this lesson: Outline the reproductive cycle of an enveloped influenza virus.

About 6 min

The key ideaInfluenza supplies viral RNA-copying machinery, uses host translation, and packages new genomes in budding enveloped particles.

Explore the mechanism

How does incoming RNA become new particles?

Host nucleusViral RNA synthesis

Attach and enter. Surface proteins bind a suitable host receptor. Entry and uncoating make viral RNA and polymerase accessible.

Brown = viral nucleic acid; purple = host nuclear region/DNA; teal circles = ribosomes. A simplified location map, not exact molecule numbers or scale. HIV's DNA intermediate is distinct from influenza's RNA-copying route.

Explanation

Influenza surface proteins bind suitable receptors on respiratory epithelial cells, followed by entry and uncoating. The segmented negative-sense RNA genome cannot be translated directly as an ordinary mRNA, so viral RNA-dependent RNA polymerase is needed to make complementary RNA messages.

Viral transcription and genome replication produce different RNA products: messages direct protein synthesis, while new genome segments will be packaged. Influenza carries the required polymerase into the cell. Unlike many RNA viruses, important influenza RNA synthesis occurs in the host nucleus.

Host ribosomes translate viral messages. Viral envelope proteins pass through host membrane-processing pathways and reach the cell surface, while genome segments and internal proteins assemble. New virions bud through a membrane containing viral proteins, acquiring a lipid envelope from the host.

A host-derived lipid envelope does not make the particle a host cell. It still lacks ribosomes and depends on infection for replication. Tissue damage and immune responses can impair the respiratory tract; the disease consequences are developed further in the infection chapter.

Step by step
  1. 1

    Separate entry and copying

    Uncoating makes the genome accessible.

  2. 2

    Separate message and genome

    Not every viral RNA product serves the same role.

  3. 3

    Explain budding

    Host lipid membrane becomes the envelope with viral glycoproteins.

Worked example

Work through the evidence

Why would a virus particle carrying only negative-sense influenza RNA, with no functional viral polymerase, fail to start normal protein production?

One way to explain it

The incoming RNA is not directly usable as mRNA, and host cells do not provide the appropriate viral RNA-dependent RNA polymerase to transcribe it normally.

Why this answer works
  • Genome polarity matters.
  • Host ribosomes can translate suitable mRNA but do not convert the genome into that mRNA.
Is this true? "Influenza replicates by reverse-transcribing its genome into integrated DNA."

That describes a retroviral strategy such as HIV; influenza uses RNA-dependent RNA synthesis.

Try a question

Where does a newly budded influenza envelope mainly originate?
You can return to this lesson any time.