Structure of anthrax lethal toxin prepore complex suggests a pathway for efficient cell entry

Author:

Fabre Lucien12,Santelli Eugenio3,Mountassif Driss12,Donoghue Annemarie456,Biswas Aviroop12ORCID,Blunck Rikard456ORCID,Hanein Dorit3,Volkmann Niels3,Liddington Robert3,Rouiller Isabelle12

Affiliation:

1. Department of Anatomy and Cell Biology, McGill University, Montréal, Québec H3A 0C7, Canada

2. Groupe de Recherche Axé sur la Structure des Protéines (GRASP), Groupe d’Étude des Protéines Membranaires (GÉPROM), McGill University, Montréal, Québec H3A 0C7, Canada

3. Bioinformatics and Structural Biology Program, Sanford Burnham Prebys Medical Discovery Institute, La Jolla, CA 92037

4. Departments of Physics, Université de Montréal, Montréal, Québec H3T 1J4, Canada

5. Department of Physiology, Université de Montréal, Montréal, Québec H3T 1J4, Canada

6. Groupe d’Étude des Protéines Membranaires (GÉPROM), Université de Montréal, Montréal, Québec H3T 1J4, Canada

Abstract

Anthrax toxin comprises three soluble proteins: protective antigen (PA), lethal factor (LF), and edema factor (EF). PA must be cleaved by host proteases before it oligomerizes and forms a prepore, to which LF and EF bind. After endocytosis of this tripartite complex, the prepore transforms into a narrow transmembrane pore that delivers unfolded LF and EF into the host cytosol. Here, we find that translocation of multiple 90-kD LF molecules is rapid and efficient. To probe the molecular basis of this translocation, we calculated a three-dimensional map of the fully loaded (PA63)7–(LF)3 prepore complex by cryo–electron microscopy (cryo-EM). The map shows three LFs bound in a similar way to one another, via their N-terminal domains, to the surface of the PA heptamer. The model also reveals contacts between the N- and C-terminal domains of adjacent LF molecules. We propose that this molecular arrangement plays an important role in the maintenance of translocation efficiency through the narrow PA pore.

Funder

Canadian Foundation for Innovation

Canadian Institutes for Health Research

Natural Sciences and Engineering Research Council of Canada

US Department of Defense

National Institutes of Health

CIHR

Publisher

Rockefeller University Press

Subject

Physiology

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