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  2. Pilus - Wikipedia

    en.wikipedia.org/wiki/Pilus

    Bacterial type IV pili are similar in structure to the component proteins of archaella (archaeal flagella), and both are related to the Type II secretion system (T2SS); [15] they are unified by the group of Type IV filament systems. Besides archaella, many archaea produce adhesive type 4 pili, which enable archaeal cells to adhere to different ...

  3. P fimbriae - Wikipedia

    en.wikipedia.org/wiki/P_fimbriae

    P fimbriae are large, linear structures projecting from the surface of the bacterial cell. With lengths of 1-2um, the pili can be larger than the diameter of the bacteria itself. [4] The main body of the fimbriae is composed of approx. 1000 copies of the major fimbrial subunit protein PapA, forming a helical rod. [5]

  4. Bacterial cell structure - Wikipedia

    en.wikipedia.org/wiki/Bacterial_cell_structure

    Pili are similar in structure to fimbriae but are much longer and present on the bacterial cell in low numbers. Pili are involved in the process of bacterial conjugation where they are called conjugation pili or "sex pili". Type IV pili (non-sex pili) also aid bacteria in gripping surfaces.

  5. Twitching motility - Wikipedia

    en.wikipedia.org/wiki/Twitching_motility

    Twitching motility is a form of crawling bacterial motility used to move over surfaces. Twitching is mediated by the activity of hair-like filaments called type IV pili which extend from the cell's exterior, bind to surrounding solid substrates, and retract, pulling the cell forwards in a manner similar to the action of a grappling hook.

  6. Gliding motility - Wikipedia

    en.wikipedia.org/wiki/Gliding_motility

    Three types of gliding motility in bacteria are: a) Type IV pili: A cell attaches its pili to a surface or object in the direction it is traveling.The proteins in the pili are then broken down to shrink the pili pulling the cell closer to the surface or object that was it was attached to.

  7. This is why it's so hard to get rid of UTIs - AOL

    www.aol.com/article/2016/01/14/this-is-why-its...

    Using cryo-electron microscopy reconstruction, scientists recently discovered how pili, hairlike structures found on the surface of many bacteria, are able to anchor UTI-causing bacteria to the ...

  8. Pilin - Wikipedia

    en.wikipedia.org/wiki/Pilin

    The Saf pilin N-terminal extension protein domain helps the pili to form, via a complex mechanism named the chaperone/usher pathway. It is found in all c-u pilins. [8] This protein domain is very important for such bacteria, as without pili formation, they could not infect the host. Saf is a Salmonella operon containing a c-u pilus system. [8]

  9. Bacterial motility - Wikipedia

    en.wikipedia.org/wiki/Bacterial_motility

    Bacterial flagella are helical filaments, each with a rotary motor at its base which can turn clockwise or counterclockwise. [16] [17] [18] They provide two of several kinds of bacterial motility. [19] [20] Archaeal flagella are called archaella, and function in much the same way as bacterial flagella