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Structural Characterization of an ACP from Thermotoga maritima: Insights into Hyperthermal Adaptation

机译:滨海嗜热菌的ACP的结构表征:高温适应的见解。

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摘要

, a deep-branching hyperthermophilic bacterium, expresses an extraordinarily stable acyl carrier protein ( -ACP) that functions as a carrier in the fatty acid synthesis system at near-boiling aqueous environments. Here, to understand the hyperthermal adaptation of -ACP, we investigated the structure and dynamics of -ACP by nuclear magnetic resonance (NMR) spectroscopy. The melting temperature of -ACP (101.4 °C) far exceeds that of other ACPs, owing to extensive ionic interactions and tight hydrophobic packing. The D59 residue, which replaces Pro/Ser of other ACPs, mediates ionic clustering between helices III and IV. This creates a wide pocket entrance to facilitate the accommodation of long acyl chains required for hyperthermal adaptation of the cell membrane. -ACP is revealed to be the first ACP that harbor an amide proton hyperprotected against hydrogen/deuterium exchange for I15. The hydrophobic interactions mediated by I15 appear to be the key driving forces of the global folding process of -ACP. Our findings provide insights into the structural basis of the hyperthermal adaptation of ACP, which might have allowed to survive in hot ancient oceans.
机译:,一种深分支的超嗜热细菌,表达一种非常稳定的酰基载体蛋白(-ACP),该蛋白在接近沸腾的水环境中充当脂肪酸合成系统中的载体。在这里,为了了解-ACP的高温适应性,我们通过核磁共振(NMR)光谱研究了-ACP的结构和动力学。由于广泛的离子相互作用和紧密的疏水性堆积,-ACP的熔融温度(101.4°C)远远超过其他ACP。 D59残基取代了其他ACP的Pro / Ser,介导了螺旋III和IV之间的离子簇。这产生了宽的口袋入口,以促进容纳细胞膜的超高温适应所需的长酰基链。 -ACP被揭示为第一个具有酰胺质子的ACP,该酰胺对I15的氢/氘交换具有超强保护作用。由I15介导的疏水相互作用似乎是-ACP整体折叠过程的关键驱动力。我们的发现为ACP的高温适应的结构基础提供了见识,而ACP可能已经在古老的炎热海洋中生存了。

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