Molecular basis for disruption of E-cadherin adhesion by botulinum neurotoxin A complex.

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Bibliographic Details
Title: Molecular basis for disruption of E-cadherin adhesion by botulinum neurotoxin A complex.
Authors: Kwangkook Lee, Xiaofen Zhong, Shenyan Gu, Kruel, Anna Magdalena, Dorner, Martin B., Perry, Kay, Rummel, Andreas, Min Dong, Rongsheng Jin
Source: Science (pre-March 2025). 6/20/2014, Vol. 344 Issue 6190, p1405-1410. 6p.
Subjects: Botulinum toxin, Hemagglutinin -- Structure, Serotypes, Cadherins, Molecular cell adhesion, Botulism, Molecular structure of complex compounds
Abstract: How botulinum neurotoxins (BoNTs) cross the host intestinal epithelial barrier in foodborne botulism is poorly understood. Here, we present the crystal structure of a clostridial hemagglutinin (HA) complex of serotype BoNT/A bound to the cell adhesion protein E-cadherin at 2.4 angstroms. The HA complex recognizes E-cadherin with high specificity involving extensive intermolecular interactions and also binds to carbohydrates on the cell surface. Binding of the HA complex sequesters E-cadherin in the monomeric state, compromising the E-cadherin-mediated intercellular barrier and facilitating paracellular absorption of BoNT/A. We reconstituted the complete 14-subunit BoNT/A complex using recombinantly produced components and demonstrated that abolishing either E-cadherin- or carbohydrate-binding of the HA complex drastically reduces oral toxicity of BoNT/A complex in vivo. Together, these studies establish the molecular mechanism of how HAs contribute to the oral toxicity of BoNT/A. [ABSTRACT FROM AUTHOR]
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Database: Psychology and Behavioral Sciences Collection
Description
Abstract:How botulinum neurotoxins (BoNTs) cross the host intestinal epithelial barrier in foodborne botulism is poorly understood. Here, we present the crystal structure of a clostridial hemagglutinin (HA) complex of serotype BoNT/A bound to the cell adhesion protein E-cadherin at 2.4 angstroms. The HA complex recognizes E-cadherin with high specificity involving extensive intermolecular interactions and also binds to carbohydrates on the cell surface. Binding of the HA complex sequesters E-cadherin in the monomeric state, compromising the E-cadherin-mediated intercellular barrier and facilitating paracellular absorption of BoNT/A. We reconstituted the complete 14-subunit BoNT/A complex using recombinantly produced components and demonstrated that abolishing either E-cadherin- or carbohydrate-binding of the HA complex drastically reduces oral toxicity of BoNT/A complex in vivo. Together, these studies establish the molecular mechanism of how HAs contribute to the oral toxicity of BoNT/A. [ABSTRACT FROM AUTHOR]
ISSN:00368075
DOI:10.1126/science.1253823