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Coordination and redox state–dependent structural changes of the heme-based oxygen sensor AfGcHK associated with intraprotein signal transduction

机译:血红素型氧传感器AfGcHK与蛋白内信号转导相关的协调和氧化还原状态依赖性结构变化

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摘要

The heme-based oxygen sensor histidine kinase AfGcHK is part of a two-component signal transduction system in bacteria. O2 binding to the Fe(II) heme complex of its N-terminal globin domain strongly stimulates autophosphorylation at His183 in its C-terminal kinase domain. The 6-coordinate heme Fe(III)-OH and -CN complexes of AfGcHK are also active, but the 5-coordinate heme Fe(II) complex and the heme-free apo-form are inactive. Here, we determined the crystal structures of the isolated dimeric globin domains of the active Fe(III)-CN and inactive 5-coordinate Fe(II) forms, revealing striking structural differences on the heme-proximal side of the globin domain. Using hydrogen/deuterium exchange coupled with mass spectrometry to characterize the conformations of the active and inactive forms of full-length AfGcHK in solution, we investigated the intramolecular signal transduction mechanisms. Major differences between the active and inactive forms were observed on the heme-proximal side (helix H5), at the dimerization interface (helices H6 and H7 and loop L7) of the globin domain and in the ATP-binding site (helices H9 and H11) of the kinase domain. Moreover, separation of the sensor and kinase domains, which deactivates catalysis, increased the solvent exposure of the globin domain-dimerization interface (helix H6) as well as the flexibility and solvent exposure of helix H11. Together, these results suggest that structural changes at the heme-proximal side, the globin domain-dimerization interface, and the ATP-binding site are important in the signal transduction mechanism of AfGcHK. We conclude that AfGcHK functions as an ensemble of molecules sampling at least two conformational states.
机译:基于血红素的氧传感器组氨酸激酶AfGcHK是细菌中两组分信号转导系统的一部分。 O2与其N末端球蛋白结构域的Fe(II)血红素复合物结合,强烈刺激其C末端激酶结构域中His 183 的自磷酸化。 AfGcHK的6坐标血红素Fe(III)-OH -和-CN -配合物也很活跃,但是5坐标血红素Fe(II)配合物和无血红素的脱辅基形式是不活跃的。在这里,我们确定了活跃的Fe(III)-CN -和非活跃的5坐标Fe(II)形式的分离的二聚体球蛋白结构域的晶体结构,揭示了血红素近端的显着结构差异球蛋白结构域的一侧。使用氢/氘交换结合质谱来表征全长AfGcHK在溶液中的活性形式和非活性形式的构象,我们研究了分子内信号转导机制。在血红素近端侧(螺旋H5),球蛋白结构域的二聚化界面(螺旋H6和H7和环L7)和ATP结合位点(螺旋H9和H11)观察到有活性和无活性形式之间的主要差异)。此外,传感器和激酶结构域的分离(这使催化失活)增加了球蛋白结构域-二聚界面(螺旋H6)的溶剂暴露,以及螺旋H11的柔韧性和溶剂暴露。总之,这些结果表明血红素近端侧的结构变化,球蛋白结构域二聚化界面和ATP结合位点在AfGcHK的信号转导机制中很重要。我们得出的结论是,AfGcHK充当至少采样两个构象状态的分子的集合。

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