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Temperature Dependence of the Far InfraredSignature of Internal Hydrogen Bonds inProteins as Probed for Integrins

机译:对于整联蛋白探测,内氢粘合剂的远红外标菌的温度依赖性

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The basic motions and the conformational flexibility of a protein have a strong impact on its molecular recognition properties and ultimately on its function. In the far infrared (or THz) spectral range the breathing of the hydrogen bonds can be monitored, providing essential information on local dynamics and mechanism. The use of this spectral range is rapidly evolving and a number of IR synchrotron beamlines are available for this research. Here we present a study on the I-domain of the integrin LFA-1, an allosteric receptor that transmits signals across the plasma membrane in a bi-directional way. The I-domain contains the principal binding site for extracellular ligands and thus crucial for the signaling and the integrin-mediated cell adhesion. We measured the temperature dependence of the conformational dynamics of the I-domain bound to four different divalent metal ions (Mg~(2+), Ca~(2+), Mn~(2+) and Fe~(2+)) in the range 10-300 K. The H-bonding vibrations show distinct temperature dependences for the different samples.
机译:蛋白质的基本运动和构象灵活性对其分子识别性质的强烈影响并最终对其功能作用。在远红外(或THz)光谱范围内,可以监测氢键的呼吸,提供有关局部动力学和机制的基本信息。使用该光谱范围是快速发展的,并且可以使用许多IR同步rotron束束线。在这里,我们介绍了整合蛋白LFA-1的I-域的研究,一种颠覆性受体,其以双向方式将信号透射两端的血浆膜。 I结构域含有细胞外配体的主要结合位点,因此对信号传导和整联蛋白介导的细胞粘附至关重要。我们测量了与四种不同二价金属离子结合的I域的构象动态的温度依赖性(Mg〜(2+),Ca〜(2+),Mn〜(2+)和Fe〜(2+))在10-300k的范围内。H键合振动显示出不同样品的不同温度依赖性。

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