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Interrogation of global active site occupancy of a fungal iterative polyketide synthase reveals strategies for maintaining biosynthetic fidelity.对真菌迭代聚酮合酶的全局活性位点占据情况的探究揭示了维持生物合成保真度的策略。
J Am Chem Soc. 2012 Apr 18;134(15):6865-77. doi: 10.1021/ja3016389. Epub 2012 Apr 9.
2
Starter unit flexibility for engineered product synthesis by the nonreducing polyketide synthase PksA.非还原型聚酮合酶PksA用于工程化产品合成的起始单元灵活性。
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3
Structure and function of an iterative polyketide synthase thioesterase domain catalyzing Claisen cyclization in aflatoxin biosynthesis.结构与功能的迭代聚酮合酶硫酯酶域催化克莱森环化在黄曲霉毒素生物合成。
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4
Identification of a starter unit acyl-carrier protein transacylase domain in an iterative type I polyketide synthase.在迭代型I聚酮合酶中鉴定起始单元酰基载体蛋白转酰酶结构域。
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Deconstruction of iterative multidomain polyketide synthase function.迭代多结构域聚酮合酶功能的解构
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Structural basis for biosynthetic programming of fungal aromatic polyketide cyclization.真菌芳香族聚酮环化生物合成编程的结构基础。
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8
Systematic domain swaps of iterative, nonreducing polyketide synthases provide a mechanistic understanding and rationale for catalytic reprogramming.迭代非还原型聚酮合酶的系统性结构域交换为催化重编程提供了机理理解和理论依据。
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Crystal structure of the acyltransferase domain of the iterative polyketide synthase in enediyne biosynthesis.烯二炔类聚酮合酶酰基转移酶结构域的晶体结构在烯二炔生物合成中。
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1
Basidiomycete non-reducing polyketide synthases function independently of SAT domains.担子菌非还原型聚酮合酶的功能独立于酰基载体蛋白结构域。
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The Ketosynthase Domain Controls Chain Length in Mushroom Oligocyclic Polyketide Synthases.酮合酶结构域控制蘑菇寡环聚酮合酶的链长。
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Docking analysis of hexanoic acid and quercetin with seven domains of polyketide synthase A provided insight into quercetin-mediated aflatoxin biosynthesis inhibition in .己酸和槲皮素与聚酮合酶A的七个结构域的对接分析为槲皮素介导的黄曲霉毒素生物合成抑制作用提供了深入了解。
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In trans hydrolysis of carrier protein-bound acyl intermediates by CitA during citrinin biosynthesis.在桔霉素生物合成过程中,CitA对载体蛋白结合的酰基中间体进行反式水解。
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Analysis of the Sequences, Structures, and Functions of Product-Releasing Enzyme Domains in Fungal Polyketide Synthases.真菌聚酮合酶中产物释放酶结构域的序列、结构及功能分析
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10
Polyketide mimetics yield structural and mechanistic insights into product template domain function in nonreducing polyketide synthases.聚酮类似物为非还原性聚酮合酶产物模板结构域功能提供了结构和机制方面的见解。
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本文引用的文献

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New insights into the formation of fungal aromatic polyketides.真菌芳香聚酮化合物形成的新见解。
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2
FT-ICR-MS characterization of intermediates in the biosynthesis of the α-methylbutyrate side chain of lovastatin by the 277 kDa polyketide synthase LovF.FT-ICR-MS 分析LovF 型 277 kDa 聚酮合酶生物合成洛伐他汀 α-甲基丁酰侧链的中间体。
Biochemistry. 2011 Jan 18;50(2):287-99. doi: 10.1021/bi1014776. Epub 2010 Dec 22.
3
Recognition of intermediate functionality by acyl carrier protein over a complete cycle of fatty acid biosynthesis.在脂肪酸生物合成的完整循环中,酰基载体蛋白对中间功能的识别。
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4
Surveys of non-ribosomal peptide and polyketide assembly lines in fungi and prospects for their analysis in vitro and in vivo.真菌中非核糖体肽和聚酮化合物装配线的调查及其在体外和体内分析的前景。
Fungal Genet Biol. 2011 Jan;48(1):49-61. doi: 10.1016/j.fgb.2010.06.012. Epub 2010 Jun 30.
5
HypC, the anthrone oxidase involved in aflatoxin biosynthesis.HypC,参与黄曲霉毒素生物合成的蒽酮氧化酶。
Appl Environ Microbiol. 2010 May;76(10):3374-7. doi: 10.1128/AEM.02495-09. Epub 2010 Mar 26.
6
Structure and function of an iterative polyketide synthase thioesterase domain catalyzing Claisen cyclization in aflatoxin biosynthesis.结构与功能的迭代聚酮合酶硫酯酶域催化克莱森环化在黄曲霉毒素生物合成。
Proc Natl Acad Sci U S A. 2010 Apr 6;107(14):6246-51. doi: 10.1073/pnas.0913531107. Epub 2010 Mar 23.
7
Solution structure of an acyl carrier protein domain from a fungal type I polyketide synthase.真菌型 I 聚酮合酶酰基载体蛋白结构域的溶液结构。
Biochemistry. 2010 Mar 16;49(10):2186-93. doi: 10.1021/bi902176v.
8
PKS and NRPS release mechanisms.聚酮合酶和非核糖体肽合成酶释放机制。
Nat Prod Rep. 2010 Feb;27(2):255-78. doi: 10.1039/b912037h. Epub 2009 Dec 4.
9
The changing patterns of covalent active site occupancy during catalysis on a modular polyketide synthase multienzyme revealed by ion-trap mass spectrometry.离子阱质谱揭示了模块化聚酮合酶多酶在催化过程中共价活性位点占据模式的变化。
FEBS J. 2009 Dec;276(23):7057-69. doi: 10.1111/j.1742-4658.2009.07418.x. Epub 2009 Oct 27.
10
Structural basis for biosynthetic programming of fungal aromatic polyketide cyclization.真菌芳香族聚酮环化生物合成编程的结构基础。
Nature. 2009 Oct 22;461(7267):1139-43. doi: 10.1038/nature08475.

对真菌迭代聚酮合酶的全局活性位点占据情况的探究揭示了维持生物合成保真度的策略。

Interrogation of global active site occupancy of a fungal iterative polyketide synthase reveals strategies for maintaining biosynthetic fidelity.

机构信息

Department of Chemistry, The Johns Hopkins University, Baltimore, Maryland, USA.

出版信息

J Am Chem Soc. 2012 Apr 18;134(15):6865-77. doi: 10.1021/ja3016389. Epub 2012 Apr 9.

DOI:10.1021/ja3016389
PMID:22452347
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3334285/
Abstract

Nonreducing iterative polyketide synthases (NR-PKSs) are responsible for assembling the core of fungal aromatic natural products with diverse biological properties. Despite recent advances in the field, many mechanistic details of polyketide assembly by these megasynthases remain unknown. To expand our understanding of substrate loading, polyketide elongation, cyclization, and product release, active site occupancy and product output were explored by Fourier transform mass spectrometry using the norsolorinic acid anthrone-producing polyketide synthase, PksA, from the aflatoxin biosynthetic pathway in Aspergillus parasiticus. Here we report the simultaneous observation of covalent intermediates from all catalytic domains of PksA from in vitro reconstitution reactions. The data provide snapshots of iterative catalysis and reveal an underappreciated editing function for the C-terminal thioesterase domain beyond its recently established synthetic role in Claisen/Dieckmann cyclization and product release. The specificity of thioesterase catalyzed hydrolysis was explored using biosynthetically relevant protein-bound and small molecule acyl substrates and demonstrated activity against hexanoyl and acetyl, but not malonyl. Processivity of polyketide extension was supported by the inability of a nonhydrolyzable malonyl analog to trap products of intermediate chain lengths and by the detection of only fully extended species observed covalently bound to, and as the predominant products released by, PksA. High occupancy of the malonyl transacylase domain and fast relative rate of malonyl transfer compared to starter unit transfer indicate that rapid loading of extension units onto the carrier domain facilitates efficient chain extension in a manner kinetically favorable to ultimate product formation.

摘要

非还原型聚酮合酶(NR-PKS)负责组装具有多种生物特性的真菌芳香天然产物的核心。尽管该领域最近取得了进展,但这些巨型合酶组装聚酮的许多机制细节仍不清楚。为了扩展我们对底物加载、聚酮延伸、环化和产物释放的理解,使用来自寄生曲霉黄曲霉毒素生物合成途径的诺索罗林酸蒽酮产生聚酮合酶 PksA,通过傅里叶变换质谱法探索了活性位点占据和产物输出。在这里,我们报告了来自体外重组反应的 PksA 所有催化结构域的共价中间体的同时观察。这些数据提供了迭代催化的快照,并揭示了 C 末端硫酯酶结构域除了其最近在 Claisen/Dieckmann 环化和产物释放中建立的合成作用之外的一个被低估的编辑功能。使用生物合成相关的蛋白结合和小分子酰基底物探索了硫酯酶催化水解的特异性,并证明了对己酰基和乙酰基的活性,但对丙二酰基没有活性。聚酮延伸的连续性得到了非水解性丙二酰基类似物不能捕获中间链长产物的支持,并且只检测到完全延伸的物种与 PksA 共价结合,并作为主要产物释放。由于丙二酰基转酰基酶结构域的高占据率和丙二酰基转移与起始单元转移的相对快速速率,表明快速将延伸单元加载到载体结构域上有利于以有利于最终产物形成的动力学方式有效地进行链延伸。