Some enteric bacteria synthesize a pore-forming toxin, HlyE, which is cytolytic and cytotoxic to host cells. Measurement of HlyE binding to erythrocyte ghosts and the kinetics of HlyE-mediated erythrocyte lysis suggests that interaction with target membranes is not the rate-limiting step in the formation of HlyE pores, but that there is a temperature-dependent lag phase before a functional pore is formed. Circular dichroism and fluorescence energy transfer analyses show that HlyE protomers retain an a-helical structure when oligomerized to form a pore consisting of parallel HlyE protomers. Comparison of the proteolytic sensitivities of the water-soluble and oligomeric forms of HlyE identifies inner and outer surfaces of the pore. This new information has been used to constrain a model of the HlyE pore, which allows a more detailed interpretation of previous low-resolution 3D reconstructions and suggests a novel mechanism for insertion of HlyE into target membranes.
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University of California,Institute for Integrative Genome Biology and Department of Botany and Plant SciencesUniversity of California,Institute for Integrative Genome Biology and Department of Botany and Plant Sciences
Jingzhe Guo
Wilhelmina T Van De Ven
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University of California,Institute for Integrative Genome Biology and Department of Botany and Plant SciencesUniversity of California,Institute for Integrative Genome Biology and Department of Botany and Plant Sciences
Wilhelmina T Van De Ven
Aleksandra Skirycz
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Riverside,Institute for Integrative Genome Biology, Proteomics Core, University of CaliforniaUniversity of California,Institute for Integrative Genome Biology and Department of Botany and Plant Sciences
Aleksandra Skirycz
Venkatesh P. Thirumalaikumar
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Boyce Thompson Institute,Leibniz Institute of Plant BiochemistryUniversity of California,Institute for Integrative Genome Biology and Department of Botany and Plant Sciences
Venkatesh P. Thirumalaikumar
Liping Zeng
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Cornell University,Bindley Bioscience CenterUniversity of California,Institute for Integrative Genome Biology and Department of Botany and Plant Sciences
Liping Zeng
Quanqing Zhang
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Riverside,Institute for Integrative Genome Biology, Proteomics Core, University of CaliforniaUniversity of California,Institute for Integrative Genome Biology and Department of Botany and Plant Sciences
Quanqing Zhang
Gerd Ulrich Balcke
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Department of Cell and Metabolic Biology; Weinberg 3,undefinedUniversity of California,Institute for Integrative Genome Biology and Department of Botany and Plant Sciences
Gerd Ulrich Balcke
Alain Tissier
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University of California,Institute for Integrative Genome Biology and Department of Botany and Plant SciencesUniversity of California,Institute for Integrative Genome Biology and Department of Botany and Plant Sciences
Alain Tissier
Katayoon Dehesh
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Michigan State University,undefinedUniversity of California,Institute for Integrative Genome Biology and Department of Botany and Plant Sciences