Cargando…

Reiterative Synthesis by the Ribosome and Recognition of the N-Terminal Formyl Group by Biosynthetic Machinery Contribute to Evolutionary Conservation of the Length of Antibiotic Microcin C Peptide Precursor

Microcin C (McC) is a peptide adenylate antibiotic produced by Escherichiacoli cells bearing a plasmid-borne mcc gene cluster. Most MccA precursors, encoded by validated mcc operons from diverse bacteria, are 7 amino acids long, but the significance of this precursor length conservation has remained...

Descripción completa

Detalles Bibliográficos
Autores principales: Zukher, Inna, Pavlov, Michael, Tsibulskaya, Darya, Kulikovsky, Alexey, Zyubko, Tatyana, Bikmetov, Dmitry, Serebryakova, Marina, Nair, Satish K., Ehrenberg, Måns, Dubiley, Svetlana, Severinov, Konstantin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6495379/
https://www.ncbi.nlm.nih.gov/pubmed/31040244
http://dx.doi.org/10.1128/mBio.00768-19
_version_ 1783415350161833984
author Zukher, Inna
Pavlov, Michael
Tsibulskaya, Darya
Kulikovsky, Alexey
Zyubko, Tatyana
Bikmetov, Dmitry
Serebryakova, Marina
Nair, Satish K.
Ehrenberg, Måns
Dubiley, Svetlana
Severinov, Konstantin
author_facet Zukher, Inna
Pavlov, Michael
Tsibulskaya, Darya
Kulikovsky, Alexey
Zyubko, Tatyana
Bikmetov, Dmitry
Serebryakova, Marina
Nair, Satish K.
Ehrenberg, Måns
Dubiley, Svetlana
Severinov, Konstantin
author_sort Zukher, Inna
collection PubMed
description Microcin C (McC) is a peptide adenylate antibiotic produced by Escherichiacoli cells bearing a plasmid-borne mcc gene cluster. Most MccA precursors, encoded by validated mcc operons from diverse bacteria, are 7 amino acids long, but the significance of this precursor length conservation has remained unclear. Here, we created derivatives of E. coli mcc operons encoding longer precursors and studied their synthesis and bioactivities. We found that increasing the precursor length to 11 amino acids and beyond strongly decreased antibiotic production. We found this decrease to depend on several parameters. First, reiterative synthesis of the MccA peptide by the ribosome was decreased at longer mccA open reading frames, leading to less efficient competition with other messenger RNAs. Second, the presence of a formyl group at the N-terminal methionine of the heptameric peptide had a strong stimulatory effect on adenylation by the MccB enzyme. No such formyl group stimulation was observed for longer peptides. Finally, the presence of the N-terminal formyl on the heptapeptide adenylate stimulated bioactivity, most likely at the uptake stage. Together, these factors should contribute to optimal activity of McC-like compounds as 7-amino-acid peptide moieties and suggest convergent evolution of several steps of the antibiotic biosynthesis pathway and their adjustment to sensitive cell uptake machinery to create a potent drug.
format Online
Article
Text
id pubmed-6495379
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher American Society for Microbiology
record_format MEDLINE/PubMed
spelling pubmed-64953792019-05-03 Reiterative Synthesis by the Ribosome and Recognition of the N-Terminal Formyl Group by Biosynthetic Machinery Contribute to Evolutionary Conservation of the Length of Antibiotic Microcin C Peptide Precursor Zukher, Inna Pavlov, Michael Tsibulskaya, Darya Kulikovsky, Alexey Zyubko, Tatyana Bikmetov, Dmitry Serebryakova, Marina Nair, Satish K. Ehrenberg, Måns Dubiley, Svetlana Severinov, Konstantin mBio Research Article Microcin C (McC) is a peptide adenylate antibiotic produced by Escherichiacoli cells bearing a plasmid-borne mcc gene cluster. Most MccA precursors, encoded by validated mcc operons from diverse bacteria, are 7 amino acids long, but the significance of this precursor length conservation has remained unclear. Here, we created derivatives of E. coli mcc operons encoding longer precursors and studied their synthesis and bioactivities. We found that increasing the precursor length to 11 amino acids and beyond strongly decreased antibiotic production. We found this decrease to depend on several parameters. First, reiterative synthesis of the MccA peptide by the ribosome was decreased at longer mccA open reading frames, leading to less efficient competition with other messenger RNAs. Second, the presence of a formyl group at the N-terminal methionine of the heptameric peptide had a strong stimulatory effect on adenylation by the MccB enzyme. No such formyl group stimulation was observed for longer peptides. Finally, the presence of the N-terminal formyl on the heptapeptide adenylate stimulated bioactivity, most likely at the uptake stage. Together, these factors should contribute to optimal activity of McC-like compounds as 7-amino-acid peptide moieties and suggest convergent evolution of several steps of the antibiotic biosynthesis pathway and their adjustment to sensitive cell uptake machinery to create a potent drug. American Society for Microbiology 2019-04-30 /pmc/articles/PMC6495379/ /pubmed/31040244 http://dx.doi.org/10.1128/mBio.00768-19 Text en Copyright © 2019 Zukher et al. https://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Zukher, Inna
Pavlov, Michael
Tsibulskaya, Darya
Kulikovsky, Alexey
Zyubko, Tatyana
Bikmetov, Dmitry
Serebryakova, Marina
Nair, Satish K.
Ehrenberg, Måns
Dubiley, Svetlana
Severinov, Konstantin
Reiterative Synthesis by the Ribosome and Recognition of the N-Terminal Formyl Group by Biosynthetic Machinery Contribute to Evolutionary Conservation of the Length of Antibiotic Microcin C Peptide Precursor
title Reiterative Synthesis by the Ribosome and Recognition of the N-Terminal Formyl Group by Biosynthetic Machinery Contribute to Evolutionary Conservation of the Length of Antibiotic Microcin C Peptide Precursor
title_full Reiterative Synthesis by the Ribosome and Recognition of the N-Terminal Formyl Group by Biosynthetic Machinery Contribute to Evolutionary Conservation of the Length of Antibiotic Microcin C Peptide Precursor
title_fullStr Reiterative Synthesis by the Ribosome and Recognition of the N-Terminal Formyl Group by Biosynthetic Machinery Contribute to Evolutionary Conservation of the Length of Antibiotic Microcin C Peptide Precursor
title_full_unstemmed Reiterative Synthesis by the Ribosome and Recognition of the N-Terminal Formyl Group by Biosynthetic Machinery Contribute to Evolutionary Conservation of the Length of Antibiotic Microcin C Peptide Precursor
title_short Reiterative Synthesis by the Ribosome and Recognition of the N-Terminal Formyl Group by Biosynthetic Machinery Contribute to Evolutionary Conservation of the Length of Antibiotic Microcin C Peptide Precursor
title_sort reiterative synthesis by the ribosome and recognition of the n-terminal formyl group by biosynthetic machinery contribute to evolutionary conservation of the length of antibiotic microcin c peptide precursor
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6495379/
https://www.ncbi.nlm.nih.gov/pubmed/31040244
http://dx.doi.org/10.1128/mBio.00768-19
work_keys_str_mv AT zukherinna reiterativesynthesisbytheribosomeandrecognitionofthenterminalformylgroupbybiosyntheticmachinerycontributetoevolutionaryconservationofthelengthofantibioticmicrocincpeptideprecursor
AT pavlovmichael reiterativesynthesisbytheribosomeandrecognitionofthenterminalformylgroupbybiosyntheticmachinerycontributetoevolutionaryconservationofthelengthofantibioticmicrocincpeptideprecursor
AT tsibulskayadarya reiterativesynthesisbytheribosomeandrecognitionofthenterminalformylgroupbybiosyntheticmachinerycontributetoevolutionaryconservationofthelengthofantibioticmicrocincpeptideprecursor
AT kulikovskyalexey reiterativesynthesisbytheribosomeandrecognitionofthenterminalformylgroupbybiosyntheticmachinerycontributetoevolutionaryconservationofthelengthofantibioticmicrocincpeptideprecursor
AT zyubkotatyana reiterativesynthesisbytheribosomeandrecognitionofthenterminalformylgroupbybiosyntheticmachinerycontributetoevolutionaryconservationofthelengthofantibioticmicrocincpeptideprecursor
AT bikmetovdmitry reiterativesynthesisbytheribosomeandrecognitionofthenterminalformylgroupbybiosyntheticmachinerycontributetoevolutionaryconservationofthelengthofantibioticmicrocincpeptideprecursor
AT serebryakovamarina reiterativesynthesisbytheribosomeandrecognitionofthenterminalformylgroupbybiosyntheticmachinerycontributetoevolutionaryconservationofthelengthofantibioticmicrocincpeptideprecursor
AT nairsatishk reiterativesynthesisbytheribosomeandrecognitionofthenterminalformylgroupbybiosyntheticmachinerycontributetoevolutionaryconservationofthelengthofantibioticmicrocincpeptideprecursor
AT ehrenbergmans reiterativesynthesisbytheribosomeandrecognitionofthenterminalformylgroupbybiosyntheticmachinerycontributetoevolutionaryconservationofthelengthofantibioticmicrocincpeptideprecursor
AT dubileysvetlana reiterativesynthesisbytheribosomeandrecognitionofthenterminalformylgroupbybiosyntheticmachinerycontributetoevolutionaryconservationofthelengthofantibioticmicrocincpeptideprecursor
AT severinovkonstantin reiterativesynthesisbytheribosomeandrecognitionofthenterminalformylgroupbybiosyntheticmachinerycontributetoevolutionaryconservationofthelengthofantibioticmicrocincpeptideprecursor