首页> 美国卫生研究院文献>Protein Science : A Publication of the Protein Society >Fluorescence energy transfer measurement of distances between ligand binding sites of tubulin and its implication for protein-protein interaction.
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Fluorescence energy transfer measurement of distances between ligand binding sites of tubulin and its implication for protein-protein interaction.

机译:微管蛋白配体结合位点之间距离的荧光能量转移测量及其对蛋白质-蛋白质相互作用的影响。

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摘要

9-(Dicyanovinyl) julolidine (DCVJ) is a fluorescent probe, which binds to a unique site on the tubulin dimer and exhibits different properties that are dependent upon its oligomeric state (Kung & Reed, 1989). DCVJ binds to tubulin, the tubulin-colchicine complex, and the tubulin-ruthenium red complex equally well, but binds tighter to the ANS-tubulin complex than to tubulin alone. The energy transfer studies indicate a small amount of energy transfer with colchicine, but a significant energy transfer with ANS. It was shown previously that ruthenium red binds near the C-terminal tail region of the alpha-subunit. Ruthenium red causes major quenching of fluorescence of the tubulin-DCVJ complex, suggesting proximity of binding sites. The derived distances are consistent with DCVJ binding near the alpha beta interface, but on the opposite face of the colchicine binding site. Location of the binding site correlates with the observed effect of a different polymerized state of tubulin on the DCVJ spectroscopic properties. The effect of dimer-dimer association on DCVJ binding, at high protein concentrations (Kung & Reed, 1989), suggests that such an association may occur through lateral contacts of the elongated tubulin dimer, at least in a significant fraction of the cases. Transmission of ANS-induced conformational change to the DCVJ binding site, which is near important dimer-dimer contact sites, makes it possible that such conformational changes may be responsible for polymerization inhibition by anilino-naphthalene sulfonates.
机译:9-(二氰基ovyl)聚四氢吡啶(DCVJ)是一种荧光探针,与微管蛋白二聚体上的唯一位点结合,并表现出取决于其寡聚状态的不同特性(Kung&Reed,1989)。 DCVJ与微管蛋白,微管蛋白-秋水仙碱复合物和微管蛋白-钌红复合物同样良好地结合,但与ANS-微管蛋白复合物的结合比与单独的微管蛋白的结合更紧密。能量转移研究表明秋水仙碱有少量能量转移,而ANS有大量能量转移。先前已经证明,钌红结合在α-亚基的C-末端尾部区域附近。钌红导致微管蛋白-DCVJ复合物的荧光发生重大淬灭,表明结合位点接近。得出的距离与DCVJ结合在alpha beta界面附近但在秋水仙碱结合位点的相反面上一致。结合位点的位置与微管蛋白不同聚合态对DCVJ光谱特性的观察到的影响相关。在高蛋白浓度下,二聚体-二聚体缔合对DCVJ结合的影响(Kung&Reed,1989)表明,至少在相当一部分病例中,这种缔合可能通过细长的微管蛋白二聚体的侧向接触发生。 ANS诱导的构象变化传递到DCVJ结合位点,该位点靠近重要的二聚体-二聚体接触位点,使得这种构象变化可能是苯胺-萘磺酸盐对聚合反应的抑制。

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