首页> 外文OA文献 >Head and Rod 1 Interactions in Vimentin: IDENTIFICATION OF CONTACT SITES, STRUCTURE, AND CHANGES WITH PHOSPHORYLATION USING SITE-DIRECTED SPIN LABELING AND ELECTRON PARAMAGNETIC RESONANCE*
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Head and Rod 1 Interactions in Vimentin: IDENTIFICATION OF CONTACT SITES, STRUCTURE, AND CHANGES WITH PHOSPHORYLATION USING SITE-DIRECTED SPIN LABELING AND ELECTRON PARAMAGNETIC RESONANCE*

机译:头和杆1在波形蛋白中的相互作用:接触的鉴定 站点定向旋转使站点,结构和磷化发生变化 标签和电子顺磁性 谐振*

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摘要

We have used site-directed spin labeling (SDSL) and electron paramagnetic resonance (EPR) to identify residues 17 and 137 as sites of interaction between the head domain and rod domain 1A of the intermediate filament protein vimentin. This interaction was maximal when compared with the spin labels placed at up- and downstream positions in both head and rod regions, indicating that residues 17 and 137 were the closest point of interaction in this region. SDSL EPR characterization of residues 120-145, which includes the site of head contact with rod 1A, reveals that this region exhibits the heptad repeat pattern indicative of α-helical coiled-coil structure, but that this heptad repeat pattern begins to decay near residue 139, suggesting a transition out of coiled-coil structure. By monitoring the spectra of spin labels placed at the 17 and 137 residues during in vitro assembly, we show that 17-137 interaction occurs early in the assembly process. We also explored the effect of phosphorylation on the 17-137 interaction and found that phosphorylation-induced changes affected the head-head interaction (17-17) in the dimer, without significantly influencing the rod-rod (137-137) and head-rod (17-137) interactions in the dimer. These data provide the first direct evidence for, and location of, headrod interactions in assembled intermediate filaments, as well as direct evidence of coiled-coil structure in rod 1A. Finally, the data identify changes in the structure in this region following in vitro phosphorylation.
机译:我们已经使用了定点自旋标记(SDSL)和电子顺磁共振(EPR)来识别残基17和137作为中间丝蛋白波形蛋白的头部结构域和杆结构域1A之间相互作用的位点。与位于头部和杆状区域中上下游位置的旋转标记相比,这种相互作用最大,表明残基17和137是该区域中最接近的相互作用点。残基120-145的SDSL EPR表征(包括与杆1A头部接触的位置)表明,该区域显示出指示α-螺旋卷曲螺旋结构的七肽重复序列,但是该七肽重复序列在残基附近开始衰减139,表明从盘绕线圈结构过渡。通过监测在体外组装过程中置于17和137残基的自旋标记的光谱,我们显示17-137相互作用发生在组装过程的早期。我们还研究了磷酸化对17-137相互作用的影响,发现磷酸化诱导的变化影响了二聚体中的头-头相互作用(17-17),而没有显着影响杆-杆(137-137)和头-杆二聚体中的杆(17-137)相互作用。这些数据提供了组装中间丝中头杆相互作用的第一个直接证据和位置,以及棒1A中盘绕线圈结构的直接证据。最后,数据确定了体外磷酸化后该区域结构的变化。

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