首页> 外文期刊>Journal of Molecular Biology >Crystal structures of the first condensation domain of CDA synthetase suggest conformational changes during the synthetic cycle of nonribosomal peptide synthetases
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Crystal structures of the first condensation domain of CDA synthetase suggest conformational changes during the synthetic cycle of nonribosomal peptide synthetases

机译:CDA合成酶的第一个缩合域的晶体结构表明非核糖体肽合成酶合成周期中的构象变化

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Nonribosomal peptide synthetases (NRPSs) are large modular macromolecular machines that produce small peptide molecules with wide-ranging biological activities, such as antibiotics and green chemicals. The condensation (C) domain is responsible for amide bond formation, the central chemical step in nonribosomal peptide synthesis. Here we present two crystal structures of the first condensation domain of the calcium-dependent antibiotic (CDA) synthetase (CDA-C1) from Streptomyces coelicolor, determined at resolutions 1.8 ? and 2.4 ?. The conformations adopted by CDA-C1 are quite similar in these two structures yet distinct from those seen in other NRPS C domain structures. HPLC-based reaction assays show that this CDA-C1 construct is catalytically active, and small-angle X-ray scattering experiments suggest that the conformation observed in these crystal structures could faithfully represent the conformation in solution. We have performed targeted molecular dynamics simulations, normal mode analyses and energy-minimized linear interpolation to investigate the conformational changes required to transition between the observed structures. We discuss the implications of these conformational changes in the synthetic cycle and of the observation that the "latch" that covers the active site is consistently formed in all studied C domains.
机译:非核糖体肽合成酶(NRPS)是大型模块化大分子机器,可产生具有广泛生物活性的小肽分子,例如抗生素和绿色化学品。缩合(C)域负责酰胺键的形成,这是非核糖体肽合成中的核心化学步骤。在这里,我们介绍了来自天蓝色链霉菌的钙依赖性抗生素(CDA)合成酶(CDA-C1)的第一个缩合结构域的两个晶体结构,在第1.8?和2.4?。 CDA-C1采用的构象在这两个结构中非常相似,但与其他NRPS C结构域结构中所见的构象不同。基于HPLC的反应分析表明,该CDA-C1构建体具有催化活性,小角度X射线散射实验表明,在这些晶体结构中观察到的构象可以忠实地代表溶液中的构象。我们已经进行了有针对性的分子动力学模拟,正常模式分析和能量最小化的线性插值,以研究在观察到的结构之间过渡所需的构象变化。我们讨论了合成周期中这些构象变化的含义,以及观察到的覆盖活性位点的“闩锁”在所有研究的C结构域中均形成的观察结果。

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