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BlmB and TlmB Provide Resistance to the Bleomycin Family of Antitumor Antibiotics by N-Acetylating Metal-Free Bleomycin, Tallysomycin, Phleomycin, and Zorbamycin
[Image: see text] The bleomycin (BLM) family of glycopeptide-derived antitumor antibiotics consists of BLMs, tallysomycins (TLMs), phleomycins (PLMs), and zorbamycin (ZBM). The self-resistant elements BlmB and TlmB, discovered from the BLM- and TLM-producing organisms Streptomyces verticillus ATCC15...
Autores principales: | , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
American
Chemical Society
2014
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Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4230324/ https://www.ncbi.nlm.nih.gov/pubmed/25299801 http://dx.doi.org/10.1021/bi501121e |
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author | Coughlin, Jane M. Rudolf, Jeffrey D. Wendt-Pienkowski, Evelyn Wang, Liyan Unsin, Claudia Galm, Ute Yang, Dong Tao, Meifeng Shen, Ben |
author_facet | Coughlin, Jane M. Rudolf, Jeffrey D. Wendt-Pienkowski, Evelyn Wang, Liyan Unsin, Claudia Galm, Ute Yang, Dong Tao, Meifeng Shen, Ben |
author_sort | Coughlin, Jane M. |
collection | PubMed |
description | [Image: see text] The bleomycin (BLM) family of glycopeptide-derived antitumor antibiotics consists of BLMs, tallysomycins (TLMs), phleomycins (PLMs), and zorbamycin (ZBM). The self-resistant elements BlmB and TlmB, discovered from the BLM- and TLM-producing organisms Streptomyces verticillus ATCC15003 and Streptoalloteichus hindustanus E465-94 ATCC31158, respectively, are N-acetyltransferases that provide resistance to the producers by disrupting the metal-binding domain of the antibiotics required for activity. Although each member of the BLM family of antibiotics possesses a conserved metal-binding domain, the structural differences between each member, namely, the bithiazole moiety and C-terminal amine of BLMs, have been suggested to instill substrate specificity within BlmB. Here we report that BlmB and TlmB readily accept and acetylate BLMs, TLMs, PLMs, and ZBM in vitro but only in the metal-free forms. Kinetic analysis of BlmB and TlmB reveals there is no strong preference or rate enhancement for specific substrates, indicating that the structural differences between each member of the BLM family play a negligible role in substrate recognition, binding, or catalysis. Intriguingly, the zbm gene cluster from Streptomyces flavoviridis ATCC21892 does not contain an N-acetyltransferase, yet ZBM is readily acetylated by BlmB and TlmB. We subsequently established that S. flavoviridis lacks the homologue of BlmB and TlmB, and ZbmA, the ZBM-binding protein, alone is sufficient to provide ZBM resistance. We further confirmed that BlmB can indeed confer resistance to ZBM in vivo in S. flavoviridis, introduction of which into wild-type S. flavoviridis further increases the level of resistance. |
format | Online Article Text |
id | pubmed-4230324 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2014 |
publisher | American
Chemical Society |
record_format | MEDLINE/PubMed |
spelling | pubmed-42303242015-10-09 BlmB and TlmB Provide Resistance to the Bleomycin Family of Antitumor Antibiotics by N-Acetylating Metal-Free Bleomycin, Tallysomycin, Phleomycin, and Zorbamycin Coughlin, Jane M. Rudolf, Jeffrey D. Wendt-Pienkowski, Evelyn Wang, Liyan Unsin, Claudia Galm, Ute Yang, Dong Tao, Meifeng Shen, Ben Biochemistry [Image: see text] The bleomycin (BLM) family of glycopeptide-derived antitumor antibiotics consists of BLMs, tallysomycins (TLMs), phleomycins (PLMs), and zorbamycin (ZBM). The self-resistant elements BlmB and TlmB, discovered from the BLM- and TLM-producing organisms Streptomyces verticillus ATCC15003 and Streptoalloteichus hindustanus E465-94 ATCC31158, respectively, are N-acetyltransferases that provide resistance to the producers by disrupting the metal-binding domain of the antibiotics required for activity. Although each member of the BLM family of antibiotics possesses a conserved metal-binding domain, the structural differences between each member, namely, the bithiazole moiety and C-terminal amine of BLMs, have been suggested to instill substrate specificity within BlmB. Here we report that BlmB and TlmB readily accept and acetylate BLMs, TLMs, PLMs, and ZBM in vitro but only in the metal-free forms. Kinetic analysis of BlmB and TlmB reveals there is no strong preference or rate enhancement for specific substrates, indicating that the structural differences between each member of the BLM family play a negligible role in substrate recognition, binding, or catalysis. Intriguingly, the zbm gene cluster from Streptomyces flavoviridis ATCC21892 does not contain an N-acetyltransferase, yet ZBM is readily acetylated by BlmB and TlmB. We subsequently established that S. flavoviridis lacks the homologue of BlmB and TlmB, and ZbmA, the ZBM-binding protein, alone is sufficient to provide ZBM resistance. We further confirmed that BlmB can indeed confer resistance to ZBM in vivo in S. flavoviridis, introduction of which into wild-type S. flavoviridis further increases the level of resistance. American Chemical Society 2014-10-09 2014-11-11 /pmc/articles/PMC4230324/ /pubmed/25299801 http://dx.doi.org/10.1021/bi501121e Text en Copyright © 2014 American Chemical Society This is an open access article published under an ACS AuthorChoice License (http://pubs.acs.org/page/policy/authorchoice_termsofuse.html) , which permits copying and redistribution of the article or any adaptations for non-commercial purposes. |
spellingShingle | Coughlin, Jane M. Rudolf, Jeffrey D. Wendt-Pienkowski, Evelyn Wang, Liyan Unsin, Claudia Galm, Ute Yang, Dong Tao, Meifeng Shen, Ben BlmB and TlmB Provide Resistance to the Bleomycin Family of Antitumor Antibiotics by N-Acetylating Metal-Free Bleomycin, Tallysomycin, Phleomycin, and Zorbamycin |
title | BlmB and TlmB Provide Resistance to the Bleomycin
Family of Antitumor Antibiotics by N-Acetylating
Metal-Free Bleomycin, Tallysomycin,
Phleomycin, and Zorbamycin |
title_full | BlmB and TlmB Provide Resistance to the Bleomycin
Family of Antitumor Antibiotics by N-Acetylating
Metal-Free Bleomycin, Tallysomycin,
Phleomycin, and Zorbamycin |
title_fullStr | BlmB and TlmB Provide Resistance to the Bleomycin
Family of Antitumor Antibiotics by N-Acetylating
Metal-Free Bleomycin, Tallysomycin,
Phleomycin, and Zorbamycin |
title_full_unstemmed | BlmB and TlmB Provide Resistance to the Bleomycin
Family of Antitumor Antibiotics by N-Acetylating
Metal-Free Bleomycin, Tallysomycin,
Phleomycin, and Zorbamycin |
title_short | BlmB and TlmB Provide Resistance to the Bleomycin
Family of Antitumor Antibiotics by N-Acetylating
Metal-Free Bleomycin, Tallysomycin,
Phleomycin, and Zorbamycin |
title_sort | blmb and tlmb provide resistance to the bleomycin
family of antitumor antibiotics by n-acetylating
metal-free bleomycin, tallysomycin,
phleomycin, and zorbamycin |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4230324/ https://www.ncbi.nlm.nih.gov/pubmed/25299801 http://dx.doi.org/10.1021/bi501121e |
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