Literature DB >> 7833808

Refined structure of monomeric diphtheria toxin at 2.3 A resolution.

M J Bennett1, D Eisenberg.   

Abstract

The structure of toxic monomeric diphtheria toxin (DT) was determined at 2.3 A resolution by molecular replacement based on the domain structures in dimeric DT and refined to an R factor of 20.7%. The model consists of 2 monomers in the asymmetric unit (1,046 amino acid residues), including 2 bound adenylyl 3'-5' uridine 3' monophosphate molecules and 396 water molecules. The structures of the 3 domains are virtually identical in monomeric and dimeric DT; however, monomeric DT is compact and globular as compared to the "open" monomer within dimeric DT (Bennett MJ, Choe S, Eisenberg D, 1994b, Protein Sci 3:0000-0000). Detailed differences between monomeric and dimeric DT are described, particularly (1) changes in main-chain conformations of 8 residues acting as a hinge to "open" or "close" the receptor-binding (R) domain, and (2) a possible receptor-docking site, a beta-hairpin loop protruding from the R domain containing residues that bind the cell-surface DT receptor. Based on the monomeric and dimeric DT crystal structures we have determined and the solution studies of others, we present a 5-step structure-based mechanism of intoxication: (1) proteolysis of a disulfide-linked surface loop (residues 186-201) between the catalytic (C) and transmembrane (T) domains; (2) binding of a beta-hairpin loop protruding from the R domain to the DT receptor, leading to receptor-mediated endocytosis; (3) low pH-triggered open monomer formation and exposure of apolar surfaces in the T domain, which insert into the endosomal membrane; (4) translocation of the C domain into the cytosol; and (5) catalysis by the C domain of ADP-ribosylation of elongation factor 2.

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Year:  1994        PMID: 7833808      PMCID: PMC2142954          DOI: 10.1002/pro.5560030912

Source DB:  PubMed          Journal:  Protein Sci        ISSN: 0961-8368            Impact factor:   6.725


  30 in total

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Journal:  Bacteriol Rev       Date:  1975-03

2.  Studies on the virulence of bacteriophage-infected strains of Corynebacterium diphtheriae.

Authors:  V J FREEMAN
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Journal:  J Mol Biol       Date:  1968-04-28       Impact factor: 5.469

4.  Refined structure of dimeric diphtheria toxin at 2.0 A resolution.

Authors:  M J Bennett; S Choe; D Eisenberg
Journal:  Protein Sci       Date:  1994-09       Impact factor: 6.725

5.  The three-dimensional profile method using residue preference as a continuous function of residue environment.

Authors:  K Y Zhang; D Eisenberg
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Authors:  T J Richmond; F M Richards
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7.  pH-dependent insertion of proteins into membranes: B-chain mutation of diphtheria toxin that inhibits membrane translocation, Glu-349----Lys.

Authors:  D O O'Keefe; V Cabiaux; S Choe; D Eisenberg; R J Collier
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8.  Expression cloning of a diphtheria toxin receptor: identity with a heparin-binding EGF-like growth factor precursor.

Authors:  J G Naglich; J E Metherall; D W Russell; L Eidels
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9.  The mechanism of ADP-ribosylation of elongation factor 2 catalyzed by fragment A from diphtheria toxin.

Authors:  D W Chung; R J Collier
Journal:  Biochim Biophys Acta       Date:  1977-08-11

10.  Structure-function relationships in diphtheria toxin channels: I. Determining a minimal channel-forming domain.

Authors:  J A Silverman; J A Mindell; H Zhan; A Finkelstein; R J Collier
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Review 6.  Immunotoxins for targeted cancer therapy.

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7.  Oligomerization of membrane-bound diphtheria toxin (CRM197) facilitates a transition to the open form and deep insertion.

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8.  The transmembrane domain of diphtheria toxin improves molecular conjugate gene transfer.

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9.  The pH-Dependent Trigger in Diphtheria Toxin T Domain Comes with a Safety Latch.

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10.  Biophysical comparison of diphtheria and tetanus toxins with the formaldehyde-detoxified toxoids, the main components of diphtheria and tetanus vaccines.

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