首页> 美国卫生研究院文献>other >(−)-RHAZINILAM AND THE DIPHENYLPYRIDAZINONE NSC 613241: TWO COMPOUNDS INDUCING THE FORMATION OF MORPHOLOGICALLY SIMILAR TUBULIN SPIRALS BUT BINDING APPARENTLY TO TWO DISTINCT SITES ON TUBULIN
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(−)-RHAZINILAM AND THE DIPHENYLPYRIDAZINONE NSC 613241: TWO COMPOUNDS INDUCING THE FORMATION OF MORPHOLOGICALLY SIMILAR TUBULIN SPIRALS BUT BINDING APPARENTLY TO TWO DISTINCT SITES ON TUBULIN

机译:(-)-RHAZINILAM和DIPHENYLPYRIDAZINONE NSC 613241:两种化合物引起形态相似的图布林螺旋桨的形成但它们在图布林上的两个不同位置明显结合

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摘要

The most potent microtubule assembly inhibitor of newer diphenylpyridazinone derivatives examined was NSC 613241. Because NSC 613241 and (−)-rhazinilam also induce the formation of similar 2-filament spirals, these aberrant reactions were compared. Spiral formation with both compounds was enhanced by GTP and inhibited by GDP and by 15 other inhibitors of microtubule assembly. Similarly, microtubule assembly induced by paclitaxel or laulimalide is enhanced by GTP and inhibited by GDP and assembly inhibitors, but neither [3H]NSC 613241 nor [3H](−)-rhazinilam bound to microtubules or inhibited the binding of [3H]paclitaxel or [3H]peloruside A to microtubules. Differences in the pitch of aberrant polymers were found: NSC 613241-induced and (−)-rhazinilam-induced spirals had average repeats of 85 and 79–80 nm, respectively. We found no binding of [3H]NSC 613241 or [3H](−)-rhazinilam to αβ-tubulin dimer, but both compounds were incorporated into the polymers they induced in substoichiometric reactions, with as little as 0.1–0.2 mol compound/mol of tubulin, and no cross-inhibition by NSC 613241 or (−)-rhazinilam into spirals occurred. Under reaction conditions where neither compound induced spiral formation, both compounds together synergistically induced substantial spiral formation. We conclude that (−)-rhazinilam and NSC 613241 bind to different sites on tubulin that differ from binding sites for other antitubulin agents.
机译:检查的较新的二苯基哒嗪酮衍生物最有效的微管组装抑制剂是NSC613241。由于NSC 613241和(-)-rhazinilam也诱导了类似的2丝螺旋形成,因此比较了这些异常反应。两种化合物的螺旋形成均通过GTP增强,并受到GDP和其他15种微管组装抑制剂的抑制。类似地,紫杉醇或劳力美利德诱导的微管组装可通过GTP增强,并受到GDP和组装抑制剂的抑制,但[ 3 H] NSC 613241和[ 3 H]都没有( )-rhazinilam结合至微管或抑制[ 3 H]紫杉醇或[ 3 H] peloruside A与微管的结合。发现异常聚合物的螺距存在差异:NSC 613241诱导的和(-)-rhazinilam诱导的螺线的平均重复数分别为85和79-80 nm。我们没有发现[ 3 H] NSC 613241或[ 3 H](-)-rhazinilam与αβ-微管蛋白二聚体的结合,但两种化合物均被掺入了它们的聚合物中在亚化学计量反应中诱导产生,每摩尔微管蛋白的化合物含量仅为0.1-0.2 mol / mol,并且没有被NSC 613241或(-)-rhazinilam交叉抑制成螺旋状。在两种化合物都不诱导螺旋形成的反应条件下,两种化合物一起协同诱导大量螺旋形成。我们得出的结论是(-)-rhazinilam和NSC 613241与微管蛋白上的不同位点结合,该位点与其他抗微管蛋白剂的结合位点不同。

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