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Conformational switches modulate protein interactions in peptide antibiotic synthetases.

机译:构象开关调节肽抗生素合成酶中的蛋白质相互作用。

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Protein dynamics plays an important role in protein function. Many functionally important motions occur on the microsecond and low millisecond time scale and can be characterized by nuclear magnetic resonance relaxation experiments. We describe the different states of a peptidyl carrier protein (PCP) that play a crucial role in its function as a peptide shuttle in the nonribosomal peptide synthetases of the tyrocidine A system. Both apo-PCP (without the bound 4'-phosphopantetheine cofactor) and holo-PCP exist in two different stable conformations. We show that one of the apo conformations and one of the holo conformations are identical, whereas the two remaining conformations are only detectable by nuclear magnetic resonance spectroscopy in either the apo or holo form. We further demonstrate that this conformational diversity is an essential prerequisite for the directed movement of the 4'-PP cofactor and its interaction with externally acting proteins such as thioesterases and 4'-PP transferase.
机译:蛋白质动力学在蛋白质功能中起重要作用。许多功能上重要的运动都在微秒和低毫秒的时间尺度上发生,并且可以通过核磁共振弛豫实验来表征。我们描述了肽基载体蛋白(PCP)在其作为酪氨酸A系统的非核糖体肽合成酶的肽穿梭功能中起关键作用的不同状态。 apo-PCP(无结合的4'-磷酸泛素碱辅因子)和holo-PCP均以两种不同的稳定构象存在。我们显示,载脂蛋白构象之一和完整的构象之一是相同的,而其余两个构象只能通过载脂蛋白或完整形式的核磁共振波谱进行检测。我们进一步证明,这种构象多样性是4'-PP辅因子的定向运动及其与外部作用蛋白(如硫酯酶和4'-PP转移酶)相互作用的必要先决条件。

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