Palanivelu P, Ludueña R F
J Biol Chem. 1982 Jun 10;257(11):6311-5.
Microtubule assembly is inhibited by anti-mitotic drugs such as colchicine or podophyllotoxin and also by sulfhydryl-oxidizing reagents, but it is not known which tubulin-tubulin interactions are disrupted by these agents. We have studied the interactions of a complex of tubulin, vinblastine, and tau protein with these agents. This complex has the form of a spiral filament and may consist of tubulin dimers joined end to end as in a protofilament; presumably, therefore, the lateral interaction sites should be accessible in this structure but not in the intact microtubule. Unlike the microtubule, the complex binds to colchicine and podophyllotoxin with high affinity. Again, unlike intact microtubules, the complex reacts with N,N'-ethylene-bis(iodoacetamide) to generate an intra-chain cross-link in beta-tubulin. Tubulin molecules containing this cross-link are unable to polymerize, suggesting that formation of this cross-link involves sulfhydryl groups that are critical for assembly. These results are consistent with a model whereby colchicine-, podophyllotoxin-, and sulfhydryl-oxidizing agents inhibit microtubule assembly by preventing lateral interactions between tubulin molecules in adjacent protofilaments.
微管组装受到秋水仙碱或鬼臼毒素等抗有丝分裂药物以及巯基氧化试剂的抑制,但尚不清楚这些药物会破坏哪些微管蛋白 - 微管蛋白相互作用。我们研究了微管蛋白、长春碱和tau蛋白复合物与这些药物的相互作用。该复合物呈螺旋丝形式,可能由像原丝中那样首尾相连的微管蛋白二聚体组成;因此推测,在这种结构中横向相互作用位点应该是可及的,而在完整的微管中则不然。与微管不同,该复合物与秋水仙碱和鬼臼毒素具有高亲和力。同样,与完整微管不同,该复合物与N,N'-亚乙基双(碘乙酰胺)反应,在β-微管蛋白中产生链内交联。含有这种交联的微管蛋白分子无法聚合,这表明这种交联的形成涉及对组装至关重要的巯基。这些结果与一种模型一致,即秋水仙碱、鬼臼毒素和巯基氧化试剂通过阻止相邻原丝中微管蛋白分子之间的横向相互作用来抑制微管组装。