All major cholesterol-dependent cytolysins use glycans as cellular receptors

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Shewell, Lucy K
Day, Christopher J
Jen, Freda E-C
Haselhorst, Thomas
Atack, John M
Reijneveld, Josephine F
Everest-Dass, Arun
James, David BA
Boguslawski, Kristina M
Brouwer, Stephan
Gillen, Christine M
Luo, Zhenyao
Kobe, Bostjan
von Itzstein, Mark
Jennings, Michael P
et al.
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2020
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Abstract

Cholesterol-dependent cytolysins (CDCs) form pores in cholesterol-rich membranes, but cholesterol alone is insufficient to explain their cell and host tropism. Here, we show that all eight major CDCs have high-affinity lectin activity that identifies glycans as candidate cellular receptors. Streptolysin O, vaginolysin, and perfringolysin O bind multiple glycans, while pneumolysin, lectinolysin, and listeriolysin O recognize a single glycan class. Addition of exogenous carbohydrate receptors for each CDC inhibits toxin activity. We present a structure for suilysin domain 4 in complex with two distinct glycan receptors, P1 antigen and ?Gal/Galili. We report a wide range of binding affinities for cholesterol and for the cholesterol analog pregnenolone sulfate and show that CDCs bind glycans and cholesterol independently. Intermedilysin binds to the sialyl-TF O-glycan on its erythrocyte receptor, CD59. Removing sialyl-TF from CD59 reduces intermedilysin binding. Glycan-lectin interactions underpin the cellular tropism of CDCs and provide molecular targets to block their cytotoxic activity.

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Science Advances

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6

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21

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© 2020 The Authors, some rights reserved; exclusive licensee American Association for the Advancement of Science. No claim to original U.S. Government Works. Distributed under a Creative Commons Attribution NonCommercial License 4.0 (CC BY-NC), which permits unrestricted, non-commercial use, distribution and reproduction in any medium, providing that the work is properly cited.

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Biological sciences

Science & Technology

Multidisciplinary Sciences

Science & Technology - Other Topics

SIALYL-LEWIS-X

LISTERIOLYSIN-O

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Shewell, LK; Day, CJ; Jen, FE-C; Haselhorst, T; Atack, JM; Reijneveld, JF; Everest-Dass, A; James, DBA; Boguslawski, KM; Brouwer, S; Gillen, CM; Luo, Z; Kobe, B; Nizet, V; von Itzstein, M; Walker, MJ; Paton, AW; Paton, JC; Torres, VJ; Jennings, MP, All major cholesterol-dependent cytolysins use glycans as cellular receptors, Science Advances, 2020, 6 (21), pp. eaaz4926

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