A dual transacylation mechanism for polyketide synthase chain release in enacyloxin antibiotic biosynthesis

التفاصيل البيبلوغرافية
العنوان: A dual transacylation mechanism for polyketide synthase chain release in enacyloxin antibiotic biosynthesis
المؤلفون: Rhiannon Howe, Christian Hobson, Julian Parkhill, Zhong Ling Yap, Eshwar Mahenthiralingam, Cerith Jones, Joleen Masschelein, Douglas M. Roberts, Paulina K. Sydor, Gregory L. Challis
المساهمون: Masschelein, Joleen [0000-0003-4366-3675], Jones, Cerith [0000-0001-6275-0235], Parkhill, Julian [0000-0002-7069-5958], Mahenthiralingam, Eshwar [0000-0001-9014-3790], Challis, Gregory L [0000-0001-5976-3545], Apollo - University of Cambridge Repository
المصدر: Nature chemistry
بيانات النشر: Nature Research, 2019.
سنة النشر: 2019
مصطلحات موضوعية: Acinetobacter baumannii, Stereochemistry, Acylation, General Chemical Engineering, Chemistry, Multidisciplinary, Microbial Sensitivity Tests, Polyenes, 010402 general chemistry, Thioester, 01 natural sciences, Article, Condensation domain, chemistry.chemical_compound, Polyketide, Transacylation, Biosynthesis, Polyketide synthase, LOGIC, IIA, chemistry.chemical_classification, Science & Technology, Molecular Structure, biology, 010405 organic chemistry, Chemistry, ELONGATION-FACTOR TU, General Chemistry, QP, Anti-Bacterial Agents, 0104 chemical sciences, Acyl carrier protein, BOND FORMATION, KETOSYNTHASE, Physical Sciences, biology.protein, Polyketide Synthases
الوصف: Polyketide synthases assemble diverse natural products with numerous important applications. The thioester intermediates in polyketide assembly are covalently tethered to acyl carrier protein domains of the synthase. Several mechanisms for polyketide chain release are known, contributing to natural product structural diversification. Here, we report a dual transacylation mechanism for chain release from the enacyloxin polyketide synthase, which assembles an antibiotic with promising activity against Acinetobacter baumannii. A non-elongating ketosynthase domain transfers the polyketide chain from the final acyl carrier protein domain of the synthase to a separate carrier protein, and a non-ribosomal peptide synthetase condensation domain condenses it with (1S,3R,4S)-3,4-dihydroxycyclohexane carboxylic acid. Molecular dissection of this process reveals that non-elongating ketosynthase domain-mediated transacylation circumvents the inability of the condensation domain to recognize the acyl carrier protein domain. Several 3,4-dihydroxycyclohexane carboxylic acid analogues can be employed for chain release, suggesting a promising strategy for producing enacyloxin analogues. ispartof: Nature Chemistry vol:11 issue:10 pages:1-7 ispartof: location:England status: Published online
وصف الملف: Print-Electronic; application/vnd.openxmlformats-officedocument.wordprocessingml.document; application/pdf
اللغة: English
تدمد: 1755-4330
URL الوصول: https://explore.openaire.eu/search/publication?articleId=doi_dedup___::80d0a8a648f5dc0f167122c7a9f7afdf
https://lirias.kuleuven.be/handle/123456789/642742
حقوق: OPEN
رقم الأكسشن: edsair.doi.dedup.....80d0a8a648f5dc0f167122c7a9f7afdf
قاعدة البيانات: OpenAIRE