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  2. Introduction to viruses - Wikipedia

    en.wikipedia.org/wiki/Introduction_to_viruses

    A virus with this "viral envelope" uses it—along with specific receptors—to enter a new host cell. Viruses vary in shape from the simple helical and icosahedral to more complex structures. Viruses range in size from 20 to 300 nanometres; it would take 33,000 to 500,000 of them, side by side, to stretch to 1 centimetre (0.4 in).

  3. Virus - Wikipedia

    en.wikipedia.org/wiki/Virus

    The capsid and entire virus structure can be mechanically (physically) probed through atomic force microscopy. [43] [44] In general, there are five main morphological virus types: Helical These viruses are composed of a single type of capsomere stacked around a central axis to form a helical structure, which may have a central cavity, or tube ...

  4. Virology - Wikipedia

    en.wikipedia.org/wiki/Virology

    Gamma phage, an example of virus particles (visualised by electron microscopy) Virology is the scientific study of biological viruses.It is a subfield of microbiology that focuses on their detection, structure, classification and evolution, their methods of infection and exploitation of host cells for reproduction, their interaction with host organism physiology and immunity, the diseases they ...

  5. Capsid - Wikipedia

    en.wikipedia.org/wiki/Capsid

    3D model of a helical capsid structure of a virus. Many rod-shaped and filamentous plant viruses have capsids with helical symmetry. [22] The helical structure can be described as a set of n 1-D molecular helices related by an n-fold axial symmetry. [23]

  6. Viral envelope - Wikipedia

    en.wikipedia.org/wiki/Viral_envelope

    Viral envelope persistence, whether it be enveloped or naked, are a factor in determining longevity of a virus on inanimate surfaces. [15] Enveloped viruses possess great adaptability and can change in a short time in order to evade the immune system. Enveloped viruses can cause persistent infections. [citation needed]

  7. Viral protein - Wikipedia

    en.wikipedia.org/wiki/Viral_protein

    The genetic material of a virus is stored within a viral protein structure called the capsid. The capsid is a "shield" that protects the viral nucleic acids from getting degraded by host enzymes or other types of pesticides or pestilences. It also functions to attach the virion to its host, and enable the virion to penetrate the host cell membrane.

  8. Realm (virology) - Wikipedia

    en.wikipedia.org/wiki/Realm_(virology)

    The names of realms consist of a descriptive first part and the suffix -viria, which is the suffix used for virus realms. [1] The first part of Duplodnaviria means "double DNA", referring to dsDNA viruses, [2] the first part of Monodnaviria means "single DNA", referring to ssDNA viruses, [3] the first part of Riboviria is taken from ribonucleic acid (RNA), [4] and the first part of ...

  9. Nucleoprotein - Wikipedia

    en.wikipedia.org/wiki/Nucleoprotein

    Although computational methods of deducing RNP structures are less accurate than experimental methods, they provide a rough model of the structure which allows for predictions of the identity of significant amino acids and nucleotide residues. Such information helps in understanding the overall function the RNP. Cell infected with influenza A ...