Alov I A, Aspiz M E, Zapara O M
Biull Eksp Biol Med. 1976 Jul;82(7):874-6.
Restoration of the normal mitosis after its block by colchicine was due to the additional protein synthesis (reformation of the spindle microtubules). Studies of reversibility of the statmokinetic reaction induced by colcemid showed the block of the protein synthesis by puromycin to have no influence on the rate of restoration of the normal mitotic regimen, but copper ions delayed this process. On the basis of these results it is considered that restoration of the K-mitosis induced by colcemid was mainly due to the tubule reassembly. Probably the prevalence of the processes of reformation and reassembly of microtubules during the restoration depended on the extent of their destruction and the pattern of binding by the damaging agent of the tubular protein pool subunits.
秋水仙碱阻断后的正常有丝分裂恢复是由于额外的蛋白质合成(纺锤体微管的重新形成)。对秋水仙酰胺诱导的静止运动反应可逆性的研究表明,嘌呤霉素对蛋白质合成的阻断对正常有丝分裂模式的恢复速率没有影响,但铜离子会延迟这一过程。基于这些结果,可以认为秋水仙酰胺诱导的K-有丝分裂恢复主要是由于微管的重新组装。在恢复过程中,微管重新形成和重新组装过程的普遍程度可能取决于其破坏程度以及损伤剂与管状蛋白质库亚基的结合模式。