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Structure-Guided Functional Characterization of Enediyne Self-Sacrifice Resistance Proteins, CalU16 and CalU19

[Image: see text] Calicheamicin γ(1)(I) (1) is an enediyne antitumor compound produced by Micromonospora echinospora spp. calichensis, and its biosynthetic gene cluster has been previously reported. Despite extensive analysis and biochemical study, several genes in the biosynthetic gene cluster of 1...

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Autores principales: Elshahawi, Sherif I., Ramelot, Theresa A., Seetharaman, Jayaraman, Chen, Jing, Singh, Shanteri, Yang, Yunhuang, Pederson, Kari, Kharel, Madan K., Xiao, Rong, Lew, Scott, Yennamalli, Ragothaman M., Miller, Mitchell D., Wang, Fengbin, Tong, Liang, Montelione, Gaetano T., Kennedy, Michael A., Bingman, Craig A., Zhu, Haining, Phillips, George N., Thorson, Jon S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2014
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4201346/
https://www.ncbi.nlm.nih.gov/pubmed/25079510
http://dx.doi.org/10.1021/cb500327m
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author Elshahawi, Sherif I.
Ramelot, Theresa A.
Seetharaman, Jayaraman
Chen, Jing
Singh, Shanteri
Yang, Yunhuang
Pederson, Kari
Kharel, Madan K.
Xiao, Rong
Lew, Scott
Yennamalli, Ragothaman M.
Miller, Mitchell D.
Wang, Fengbin
Tong, Liang
Montelione, Gaetano T.
Kennedy, Michael A.
Bingman, Craig A.
Zhu, Haining
Phillips, George N.
Thorson, Jon S.
author_facet Elshahawi, Sherif I.
Ramelot, Theresa A.
Seetharaman, Jayaraman
Chen, Jing
Singh, Shanteri
Yang, Yunhuang
Pederson, Kari
Kharel, Madan K.
Xiao, Rong
Lew, Scott
Yennamalli, Ragothaman M.
Miller, Mitchell D.
Wang, Fengbin
Tong, Liang
Montelione, Gaetano T.
Kennedy, Michael A.
Bingman, Craig A.
Zhu, Haining
Phillips, George N.
Thorson, Jon S.
author_sort Elshahawi, Sherif I.
collection PubMed
description [Image: see text] Calicheamicin γ(1)(I) (1) is an enediyne antitumor compound produced by Micromonospora echinospora spp. calichensis, and its biosynthetic gene cluster has been previously reported. Despite extensive analysis and biochemical study, several genes in the biosynthetic gene cluster of 1 remain functionally unassigned. Using a structural genomics approach and biochemical characterization, two proteins encoded by genes from the 1 biosynthetic gene cluster assigned as “unknowns”, CalU16 and CalU19, were characterized. Structure analysis revealed that they possess the STeroidogenic Acute Regulatory protein related lipid Transfer (START) domain known mainly to bind and transport lipids and previously identified as the structural signature of the enediyne self-resistance protein CalC. Subsequent study revealed calU16 and calU19 to confer resistance to 1, and reminiscent of the prototype CalC, both CalU16 and CalU19 were cleaved by 1in vitro. Through site-directed mutagenesis and mass spectrometry, we identified the site of cleavage in each protein and characterized their function in conferring resistance against 1. This report emphasizes the importance of structural genomics as a powerful tool for the functional annotation of unknown proteins.
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spelling pubmed-42013462015-07-31 Structure-Guided Functional Characterization of Enediyne Self-Sacrifice Resistance Proteins, CalU16 and CalU19 Elshahawi, Sherif I. Ramelot, Theresa A. Seetharaman, Jayaraman Chen, Jing Singh, Shanteri Yang, Yunhuang Pederson, Kari Kharel, Madan K. Xiao, Rong Lew, Scott Yennamalli, Ragothaman M. Miller, Mitchell D. Wang, Fengbin Tong, Liang Montelione, Gaetano T. Kennedy, Michael A. Bingman, Craig A. Zhu, Haining Phillips, George N. Thorson, Jon S. ACS Chem Biol [Image: see text] Calicheamicin γ(1)(I) (1) is an enediyne antitumor compound produced by Micromonospora echinospora spp. calichensis, and its biosynthetic gene cluster has been previously reported. Despite extensive analysis and biochemical study, several genes in the biosynthetic gene cluster of 1 remain functionally unassigned. Using a structural genomics approach and biochemical characterization, two proteins encoded by genes from the 1 biosynthetic gene cluster assigned as “unknowns”, CalU16 and CalU19, were characterized. Structure analysis revealed that they possess the STeroidogenic Acute Regulatory protein related lipid Transfer (START) domain known mainly to bind and transport lipids and previously identified as the structural signature of the enediyne self-resistance protein CalC. Subsequent study revealed calU16 and calU19 to confer resistance to 1, and reminiscent of the prototype CalC, both CalU16 and CalU19 were cleaved by 1in vitro. Through site-directed mutagenesis and mass spectrometry, we identified the site of cleavage in each protein and characterized their function in conferring resistance against 1. This report emphasizes the importance of structural genomics as a powerful tool for the functional annotation of unknown proteins. American Chemical Society 2014-07-31 2014-10-17 /pmc/articles/PMC4201346/ /pubmed/25079510 http://dx.doi.org/10.1021/cb500327m Text en Copyright © 2014 American Chemical Society Terms of Use (http://pubs.acs.org/page/policy/authorchoice_termsofuse.html)
spellingShingle Elshahawi, Sherif I.
Ramelot, Theresa A.
Seetharaman, Jayaraman
Chen, Jing
Singh, Shanteri
Yang, Yunhuang
Pederson, Kari
Kharel, Madan K.
Xiao, Rong
Lew, Scott
Yennamalli, Ragothaman M.
Miller, Mitchell D.
Wang, Fengbin
Tong, Liang
Montelione, Gaetano T.
Kennedy, Michael A.
Bingman, Craig A.
Zhu, Haining
Phillips, George N.
Thorson, Jon S.
Structure-Guided Functional Characterization of Enediyne Self-Sacrifice Resistance Proteins, CalU16 and CalU19
title Structure-Guided Functional Characterization of Enediyne Self-Sacrifice Resistance Proteins, CalU16 and CalU19
title_full Structure-Guided Functional Characterization of Enediyne Self-Sacrifice Resistance Proteins, CalU16 and CalU19
title_fullStr Structure-Guided Functional Characterization of Enediyne Self-Sacrifice Resistance Proteins, CalU16 and CalU19
title_full_unstemmed Structure-Guided Functional Characterization of Enediyne Self-Sacrifice Resistance Proteins, CalU16 and CalU19
title_short Structure-Guided Functional Characterization of Enediyne Self-Sacrifice Resistance Proteins, CalU16 and CalU19
title_sort structure-guided functional characterization of enediyne self-sacrifice resistance proteins, calu16 and calu19
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4201346/
https://www.ncbi.nlm.nih.gov/pubmed/25079510
http://dx.doi.org/10.1021/cb500327m
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