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Insights into diphthamide, key diphtheria toxin effector

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posted on 2015-07-21, 09:13 authored by W. Abdel-Fattah, V. Scheidt, Shanow Uthman, M. J. Stark, Raffael Schaffrath
Diphtheria toxin (DT) inhibits eukaryotic translation elongation factor 2 (eEF2) by ADP-ribosylation in a fashion that requires diphthamide, a modified histidine residue on eEF2. In budding yeast, diphthamide formation involves seven genes, DPH1-DPH7. In an effort to further study diphthamide synthesis and interrelation among the Dph proteins, we found, by expression in E. coli and co-immune precipitation in yeast, that Dph1 and Dph2 interact and that they form a complex with Dph3. Protein-protein interaction mapping shows that Dph1-Dph3 complex formation can be dissected by progressive DPH1 gene truncations. This identifies N- and C-terminal domains on Dph1 that are crucial for diphthamide synthesis, DT action and cytotoxicity of sordarin, another microbial eEF2 inhibitor. Intriguingly, dph1 truncation mutants are sensitive to overexpression of DPH5, the gene necessary to synthesize diphthine from the first diphthamide pathway intermediate produced by Dph1-Dph3. This is in stark contrast to dph6 mutants, which also lack the ability to form diphthamide but are resistant to growth inhibition by excess Dph5 levels. As judged from site-specific mutagenesis, the amidation reaction itself relies on a conserved ATP binding domain in Dph6 that, when altered, blocks diphthamide formation and confers resistance to eEF2 inhibition by sordarin.

History

Citation

Toxins (Basel), 2013, 5 (5) (Special Issue Diphtheria Toxin), pp. 958-968

Author affiliation

/Organisation/COLLEGE OF MEDICINE, BIOLOGICAL SCIENCES AND PSYCHOLOGY/School of Biological Sciences/Department of Genetics

Version

  • VoR (Version of Record)

Published in

Toxins (Basel)

Publisher

MDPI, Basel, Switzerland

eissn

2072-6651

Acceptance date

2013-04-26

Copyright date

2013

Available date

2015-07-21

Publisher version

http://www.mdpi.com/2072-6651/5/5/958

Language

en

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