A unique dual acyltransferase system shared in the polyketide chain initiation of kidamycinone and rubiflavinone biosynthesis

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dc.contributor.authorKyung Taek Heo-
dc.contributor.authorByeong San Lee-
dc.contributor.authorGwi Ja Hwnag-
dc.contributor.authorBeomcheol Park-
dc.contributor.authorJun-Pil Jang-
dc.contributor.authorB Y Hwang-
dc.contributor.authorJae-Hyuk Jang-
dc.contributor.authorYoung-Soo Hong-
dc.date.accessioned2023-11-20T16:32:38Z-
dc.date.available2023-11-20T16:32:38Z-
dc.date.issued2023-
dc.identifier.issn1664-302x-
dc.identifier.urihttps://oak.kribb.re.kr/handle/201005/32991-
dc.description.abstractThe pluramycin family of natural products has diverse substituents at the C2 position, which are closely related to their biological activity. Therefore, it is important to understand the biosynthesis of C2 substituents. In this study, we describe the biosynthesis of C2 moieties in Streptomyces sp. W2061, which produces kidamycin and rubiflavinone C-1, containing anthrapyran aglycones. Sequence analysis of the loading module (Kid13) of the PKS responsible for the synthesis of these anthrapyran aglycones is useful for confirming the incorporation of atypical primer units into the corresponding products. Kid13 is a ketosynthase-like decarboxylase (KSQ)-type loading module with unusual dual acyltransferase (AT) domains (AT1-1 and AT1-2). The AT1-2 domain primarily loads ethylmalonyl-CoA and malonyl-CoA for rubiflavinone and kidamycinone and rubiflavinone, respectively; however, the AT1-1 domain contributed to the functioning of the AT1-2 domain to efficiently load ethylmalonyl-CoA for rubiflavinone. We found that the dual AT system was involved in the production of kidamycinone, an aglycone of kidamycin, and rubiflavinone C-1 by other shared biosynthetic genes in Streptomyces sp. W2061. This study broadens our understanding of the incorporation of atypical primer units into polyketide products.-
dc.publisherFrontiers Media Sa-
dc.titleA unique dual acyltransferase system shared in the polyketide chain initiation of kidamycinone and rubiflavinone biosynthesis-
dc.title.alternativeA unique dual acyltransferase system shared in the polyketide chain initiation of kidamycinone and rubiflavinone biosynthesis-
dc.typeArticle-
dc.citation.titleFrontiers in Microbiology-
dc.citation.number0-
dc.citation.endPage1274358-
dc.citation.startPage1274358-
dc.citation.volume14-
dc.contributor.affiliatedAuthorKyung Taek Heo-
dc.contributor.affiliatedAuthorByeong San Lee-
dc.contributor.affiliatedAuthorGwi Ja Hwnag-
dc.contributor.affiliatedAuthorBeomcheol Park-
dc.contributor.affiliatedAuthorJun-Pil Jang-
dc.contributor.affiliatedAuthorJae-Hyuk Jang-
dc.contributor.affiliatedAuthorYoung-Soo Hong-
dc.contributor.alternativeName허경택-
dc.contributor.alternativeName이병산-
dc.contributor.alternativeName황귀자-
dc.contributor.alternativeName박범철-
dc.contributor.alternativeName장준필-
dc.contributor.alternativeName황방연-
dc.contributor.alternativeName장재혁-
dc.contributor.alternativeName홍영수-
dc.identifier.bibliographicCitationFrontiers in Microbiology, vol. 14, pp. 1274358-1274358-
dc.identifier.doi10.3389/fmicb.2023.1274358-
dc.subject.keywordBiosynthesis-
dc.subject.keywordNatural products-
dc.subject.keywordPolyketide synthase-
dc.subject.keywordDual acyltransferase-
dc.subject.keywordStreptomyces-
dc.subject.localBiosynthesis-
dc.subject.localbiosynthesis-
dc.subject.localNatural product-
dc.subject.localNatural products-
dc.subject.localnatural product-
dc.subject.localnatural products-
dc.subject.localNatural Product-
dc.subject.localPolyketide synthase-
dc.subject.localpolyketide synthase-
dc.subject.localStreptomyces-
dc.subject.localstreptomyces-
dc.description.journalClassY-
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Ochang Branch Institute > Chemical Biology Research Center > 1. Journal Articles
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