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The Origins of Specificity in the Microcin-Processing Protease TldD/E

TldD and TldE proteins are involved in the biosynthesis of microcin B17 (MccB17), an Escherichia coli thiazole/oxazole-modified peptide toxin targeting DNA gyrase. Using a combination of biochemical and crystallographic methods we show that E. coli TldD and TldE interact to form a heterodimeric meta...

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Autores principales: Ghilarov, Dmitry, Serebryakova, Marina, Stevenson, Clare E.M., Hearnshaw, Stephen J., Volkov, Dmitry S., Maxwell, Anthony, Lawson, David M., Severinov, Konstantin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cell Press 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5810440/
https://www.ncbi.nlm.nih.gov/pubmed/28943336
http://dx.doi.org/10.1016/j.str.2017.08.006
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author Ghilarov, Dmitry
Serebryakova, Marina
Stevenson, Clare E.M.
Hearnshaw, Stephen J.
Volkov, Dmitry S.
Maxwell, Anthony
Lawson, David M.
Severinov, Konstantin
author_facet Ghilarov, Dmitry
Serebryakova, Marina
Stevenson, Clare E.M.
Hearnshaw, Stephen J.
Volkov, Dmitry S.
Maxwell, Anthony
Lawson, David M.
Severinov, Konstantin
author_sort Ghilarov, Dmitry
collection PubMed
description TldD and TldE proteins are involved in the biosynthesis of microcin B17 (MccB17), an Escherichia coli thiazole/oxazole-modified peptide toxin targeting DNA gyrase. Using a combination of biochemical and crystallographic methods we show that E. coli TldD and TldE interact to form a heterodimeric metalloprotease. TldD/E cleaves the N-terminal leader sequence from the modified MccB17 precursor peptide, to yield mature antibiotic, while it has no effect on the unmodified peptide. Both proteins are essential for the activity; however, only the TldD subunit forms a novel metal-containing active site within the hollow core of the heterodimer. Peptide substrates are bound in a sequence-independent manner through β sheet interactions with TldD and are likely cleaved via a thermolysin-type mechanism. We suggest that TldD/E acts as a “molecular pencil sharpener”: unfolded polypeptides are fed through a narrow channel into the active site and processively truncated through the cleavage of short peptides from the N-terminal end.
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spelling pubmed-58104402018-02-15 The Origins of Specificity in the Microcin-Processing Protease TldD/E Ghilarov, Dmitry Serebryakova, Marina Stevenson, Clare E.M. Hearnshaw, Stephen J. Volkov, Dmitry S. Maxwell, Anthony Lawson, David M. Severinov, Konstantin Structure Article TldD and TldE proteins are involved in the biosynthesis of microcin B17 (MccB17), an Escherichia coli thiazole/oxazole-modified peptide toxin targeting DNA gyrase. Using a combination of biochemical and crystallographic methods we show that E. coli TldD and TldE interact to form a heterodimeric metalloprotease. TldD/E cleaves the N-terminal leader sequence from the modified MccB17 precursor peptide, to yield mature antibiotic, while it has no effect on the unmodified peptide. Both proteins are essential for the activity; however, only the TldD subunit forms a novel metal-containing active site within the hollow core of the heterodimer. Peptide substrates are bound in a sequence-independent manner through β sheet interactions with TldD and are likely cleaved via a thermolysin-type mechanism. We suggest that TldD/E acts as a “molecular pencil sharpener”: unfolded polypeptides are fed through a narrow channel into the active site and processively truncated through the cleavage of short peptides from the N-terminal end. Cell Press 2017-10-03 /pmc/articles/PMC5810440/ /pubmed/28943336 http://dx.doi.org/10.1016/j.str.2017.08.006 Text en © 2017 The Authors http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Ghilarov, Dmitry
Serebryakova, Marina
Stevenson, Clare E.M.
Hearnshaw, Stephen J.
Volkov, Dmitry S.
Maxwell, Anthony
Lawson, David M.
Severinov, Konstantin
The Origins of Specificity in the Microcin-Processing Protease TldD/E
title The Origins of Specificity in the Microcin-Processing Protease TldD/E
title_full The Origins of Specificity in the Microcin-Processing Protease TldD/E
title_fullStr The Origins of Specificity in the Microcin-Processing Protease TldD/E
title_full_unstemmed The Origins of Specificity in the Microcin-Processing Protease TldD/E
title_short The Origins of Specificity in the Microcin-Processing Protease TldD/E
title_sort origins of specificity in the microcin-processing protease tldd/e
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5810440/
https://www.ncbi.nlm.nih.gov/pubmed/28943336
http://dx.doi.org/10.1016/j.str.2017.08.006
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