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Hydrogen-bond network and pH sensitivity in human transthyretin

机译:人运甲状腺素蛋白中的氢键网络和pH敏感性

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摘要

Transthyretin (TTR) is a tetrameric protein. TTR misfolding and aggregation are associated with human amyloid diseases. Dissociation of the TTR tetramer is believed to be the rate-limiting step in the amyloid fibril formation cascade. Low pH is known to promote dissociation into monomer and the formation of amyloid fibrils. In order to reveal the molecular mechanisms underlying pH sensitivity and structural stabilities of TTR, neutron diffraction studies were conducted using the IBARAKI Biological Crystal Diffractometer with the time-of-flight method. Crystals for the neutron diffraction experiments were grown up to 2.5 mm3 for four months. The neutron crystal structure solved at 2.0 Å revealed the protonation states of His88 and the detailed hydrogen-bond network depending on the protonation states of His88. This hydrogen-bond network is involved in monomer–monomer and dimer–dimer interactions, suggesting that the double protonation of His88 by acidification breaks the hydrogen-bond network and causes the destabilization of the TTR tetramer. Structural comparison with the X-ray crystal structure at acidic pH identified the three amino acid residues responsible for the pH sensitivity of TTR. Our neutron model provides insights into the molecular stability related to amyloidosis.
机译:运甲状腺素蛋白(TTR)是一种四聚体蛋白。 TTR的错误折叠和聚集与人类淀粉样蛋白疾病有关。 TTR四聚体的解离被认为是淀粉样原纤维形成级联反应中的限速步骤。已知低pH值会促进离解成单体并形成淀粉样原纤维。为了揭示TTR的pH敏感性和结构稳定性的分子机制,使用IBARAKI生物晶体衍射仪和飞行时间方法进行了中子衍射研究。中子衍射实验的晶体长到2.5 mm 3 四个月。在2.0Å处溶解的中子晶体结构揭示了His88的质子化状态以及取决于His88质子化状态的详细氢键网络。这种氢键网络参与单体-单体和二聚体-二聚体的相互作用,这表明通过酸化His88的双质子化破坏了氢键网络并导致TTR四聚体的不稳定。在酸性pH下与X射线晶体结构的结构比较确定了三个氨基酸残基,这些氨基酸残基对TTR的pH敏感。我们的中子模型提供了与淀粉样变性有关的分子稳定性的见解。

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