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Crystal Structure of Thioesterase SgcE10 Supporting Common Polyene Intermediates in 9- and 10-Membered Enediyne Core Biosynthesis

[Image: see text] Enediynes are potent natural product anticancer antibiotics, and are classified as 9- or 10-membered according to the size of their enediyne core carbon skeleton. Both 9- and 10-membered enediyne cores are biosynthesized by the enediyne polyketide synthase (PKSE), thioesterase (TE)...

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Autores principales: Annaval, Thibault, Rudolf, Jeffrey D., Chang, Chin-Yuan, Lohman, Jeremy R., Kim, Youngchang, Bigelow, Lance, Jedrzejczak, Robert, Babnigg, Gyorgy, Joachimiak, Andrzej, Phillips, George N., Shen, Ben
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2017
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5579567/
https://www.ncbi.nlm.nih.gov/pubmed/28884166
http://dx.doi.org/10.1021/acsomega.7b00933
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author Annaval, Thibault
Rudolf, Jeffrey D.
Chang, Chin-Yuan
Lohman, Jeremy R.
Kim, Youngchang
Bigelow, Lance
Jedrzejczak, Robert
Babnigg, Gyorgy
Joachimiak, Andrzej
Phillips, George N.
Shen, Ben
author_facet Annaval, Thibault
Rudolf, Jeffrey D.
Chang, Chin-Yuan
Lohman, Jeremy R.
Kim, Youngchang
Bigelow, Lance
Jedrzejczak, Robert
Babnigg, Gyorgy
Joachimiak, Andrzej
Phillips, George N.
Shen, Ben
author_sort Annaval, Thibault
collection PubMed
description [Image: see text] Enediynes are potent natural product anticancer antibiotics, and are classified as 9- or 10-membered according to the size of their enediyne core carbon skeleton. Both 9- and 10-membered enediyne cores are biosynthesized by the enediyne polyketide synthase (PKSE), thioesterase (TE), and PKSE-associated enzymes. Although the divergence between 9- and 10-membered enediyne core biosynthesis remains unclear, it has been observed that nascent polyketide intermediates, tethered to the acyl carrier protein (ACP) domain of PKSE, could be released by TE in the absence of the PKSE-associated enzymes. In this study, we determined the crystal structure of SgcE10, the TE that participates in the biosynthesis of the 9-membered enediyne C-1027. Structural comparison of SgcE10 with CalE7 and DynE7, two TEs that participate in the biosynthesis of the 10-membered enediynes calicheamicin and dynemicin, respectively, revealed that they share a common α/β hot-dog fold. The amino acids involved in both substrate binding and catalysis are conserved among SgcE10, CalE7, and DynE7. The volume and the shape of the substrate-binding channel and active site in SgcE10, CalE7, and DynE7 confirm that TEs from both 9- and 10-membered enediyne biosynthetic machineries bind the linear form of similar ACP-tethered polyene intermediates. Taken together, these findings further support the proposal that the divergence between 9- and 10-membered enediyne core biosynthesis occurs beyond PKSE and TE catalysis.
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spelling pubmed-55795672017-09-05 Crystal Structure of Thioesterase SgcE10 Supporting Common Polyene Intermediates in 9- and 10-Membered Enediyne Core Biosynthesis Annaval, Thibault Rudolf, Jeffrey D. Chang, Chin-Yuan Lohman, Jeremy R. Kim, Youngchang Bigelow, Lance Jedrzejczak, Robert Babnigg, Gyorgy Joachimiak, Andrzej Phillips, George N. Shen, Ben ACS Omega [Image: see text] Enediynes are potent natural product anticancer antibiotics, and are classified as 9- or 10-membered according to the size of their enediyne core carbon skeleton. Both 9- and 10-membered enediyne cores are biosynthesized by the enediyne polyketide synthase (PKSE), thioesterase (TE), and PKSE-associated enzymes. Although the divergence between 9- and 10-membered enediyne core biosynthesis remains unclear, it has been observed that nascent polyketide intermediates, tethered to the acyl carrier protein (ACP) domain of PKSE, could be released by TE in the absence of the PKSE-associated enzymes. In this study, we determined the crystal structure of SgcE10, the TE that participates in the biosynthesis of the 9-membered enediyne C-1027. Structural comparison of SgcE10 with CalE7 and DynE7, two TEs that participate in the biosynthesis of the 10-membered enediynes calicheamicin and dynemicin, respectively, revealed that they share a common α/β hot-dog fold. The amino acids involved in both substrate binding and catalysis are conserved among SgcE10, CalE7, and DynE7. The volume and the shape of the substrate-binding channel and active site in SgcE10, CalE7, and DynE7 confirm that TEs from both 9- and 10-membered enediyne biosynthetic machineries bind the linear form of similar ACP-tethered polyene intermediates. Taken together, these findings further support the proposal that the divergence between 9- and 10-membered enediyne core biosynthesis occurs beyond PKSE and TE catalysis. American Chemical Society 2017-08-30 /pmc/articles/PMC5579567/ /pubmed/28884166 http://dx.doi.org/10.1021/acsomega.7b00933 Text en Copyright © 2017 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 Annaval, Thibault
Rudolf, Jeffrey D.
Chang, Chin-Yuan
Lohman, Jeremy R.
Kim, Youngchang
Bigelow, Lance
Jedrzejczak, Robert
Babnigg, Gyorgy
Joachimiak, Andrzej
Phillips, George N.
Shen, Ben
Crystal Structure of Thioesterase SgcE10 Supporting Common Polyene Intermediates in 9- and 10-Membered Enediyne Core Biosynthesis
title Crystal Structure of Thioesterase SgcE10 Supporting Common Polyene Intermediates in 9- and 10-Membered Enediyne Core Biosynthesis
title_full Crystal Structure of Thioesterase SgcE10 Supporting Common Polyene Intermediates in 9- and 10-Membered Enediyne Core Biosynthesis
title_fullStr Crystal Structure of Thioesterase SgcE10 Supporting Common Polyene Intermediates in 9- and 10-Membered Enediyne Core Biosynthesis
title_full_unstemmed Crystal Structure of Thioesterase SgcE10 Supporting Common Polyene Intermediates in 9- and 10-Membered Enediyne Core Biosynthesis
title_short Crystal Structure of Thioesterase SgcE10 Supporting Common Polyene Intermediates in 9- and 10-Membered Enediyne Core Biosynthesis
title_sort crystal structure of thioesterase sgce10 supporting common polyene intermediates in 9- and 10-membered enediyne core biosynthesis
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5579567/
https://www.ncbi.nlm.nih.gov/pubmed/28884166
http://dx.doi.org/10.1021/acsomega.7b00933
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