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Crystal structure of colicin Ia

Author

Listed:
  • Michael Wiener

    (University of California
    University of Virginia Health Sciences Center)

  • Douglas Freymann

    (University of California)

  • Partho Ghosh

    (University of California
    Harvard University)

  • Robert M. Stroud

    (University of California)

Abstract

The ion-channel forming colicins A, B, El, Ia, Ib and N all kill bacterial cells selectively by co-opting bacterial active-transport pathways and forming voltage-gated ion conducting channels across the plasma membrane of the target bacterium1,2. The crystal structure of colicin Ia reveals a molecule 210 Å long with three distinct functional domains arranged along a backbone of two extraordinarily long α-helices. A central domain at the bend of the hairpin-like structure mediates specific recognition and binding to an outer-membrane receptor3. A second domain mediates translocation across the outer membrane via the TonB transport pathway4; the TonB-box5 recognition element of colicin Ia is on one side of three 80 Å-long helices arranged as a helical sheet. A third domain is made up of 10 α-helices which form a voltage-activated and voltage-gated ion conducting channel across the plasma membrane of the target cell. The two 160 Å-long α-helices that link the receptor-binding domain to the other domains enable the colicin Ia molecule to span the periplasmic space and contact both the outer and plasma membranes simultaneously during function6,7.

Suggested Citation

  • Michael Wiener & Douglas Freymann & Partho Ghosh & Robert M. Stroud, 1997. "Crystal structure of colicin Ia," Nature, Nature, vol. 385(6615), pages 461-464, January.
  • Handle: RePEc:nat:nature:v:385:y:1997:i:6615:d:10.1038_385461a0
    DOI: 10.1038/385461a0
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